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1

Narita, Y., E. Marsch, C. Perschke, K. H. Glassmeier, U. Motschmann, and H. Comişel. "Wave–particle resonance condition test for ion-kinetic waves in the solar wind." Annales Geophysicae 34, no. 4 (2016): 393–98. http://dx.doi.org/10.5194/angeo-34-393-2016.

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Abstract. Conditions for the Landau and cyclotron resonances are tested for 543 waves (identified as local peaks in the energy spectra) in the magnetic field fluctuations of the solar wind measured by the Cluster spacecraft on a tetrahedral scale of 100 km. The resonance parameters are evaluated using the frequencies in the plasma rest frame, the parallel components of the wavevectors, the ion cyclotron frequency, and the ion thermal speed. The observed waves show a character of the sideband waves associated with the ion Bernstein mode, and are in a weak agreement with the fundamental electron
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2

ZHAO, X. D., H. YAMAMOTO, and K. TANIGUCHI. "UNITY RESONANCE AND UNDER-UNITY RESONANCE CONDITIONS IN ASYMMETRICAL DOUBLE-BARRIER STRUCTURES." International Journal of Modern Physics B 09, no. 17 (1995): 2119–37. http://dx.doi.org/10.1142/s0217979295000847.

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Resonant tunneling is studied theoretically in asymmetrical double-barrier structures with arbitrary potential profile. Analytical expressions of the transmission coefficient and resonance condition are derived by taking into account the mass difference between the well and barrier layers. It is confirmed that resonant tunneling with unity resonant transmission or under-unity resonant transmission may occur in asymmetrical double-barrier structures. Two independent conditions are required for unity resonant transmission: one is the Phase Difference Condition for Resonance (PDCR) and the other
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3

Batkhin, Alexander Borisovich, and Zafar Khaydar Ugli Khaydarov. "Symbolic Computation of an Arbitrary-Order Resonance Condition in a Hamiltonian System." Proceedings of the Institute for System Programming of the RAS 35, no. 4 (2023): 197–218. http://dx.doi.org/10.15514/ispras-2023-35(4)-12.

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The study of formal stability of equilibrium positions of a multiparametric Hamiltonian system in a generic case is traditionally carried out using its normal form under the condition of the absence of resonances of small orders. In this paper we propose a method of symbolic computation of the condition of existence of a resonance of arbitrary order for a system with three degrees of freedom. It is shown that this condition for each resonant vector can be represented as a rational algebraic curve. By methods of computer algebra the rational parametrization of this curve for the case of an arbi
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4

Trapanese, Marco. "Magnetostochastic resonance under colored noise condition." Journal of Applied Physics 111, no. 7 (2012): 07E148. http://dx.doi.org/10.1063/1.3680083.

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5

Sun, Jianglong, Jifeng Cui, Zihan He, and Zeng Liu. "On Steady-State Multiple Resonances for a Modified Bretherton Equation." Zeitschrift für Naturforschung A 72, no. 5 (2017): 487–91. http://dx.doi.org/10.1515/zna-2017-0047.

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AbstractIn this article, a modified Bretherton equation is considered to further check if steady-state multiple resonances exist not only for water waves but also for other dispersive medium. The linear resonance condition analysis shows that different components may interact with each other so multiple resonances may happen. Convergent steady-state solutions are obtained by solution procedure based on the homotopy analysis method (HAM) and the collocation method. Amplitude spectrum analysis confirms that more components indeed join the resonance as the nonlinearity increases. This article sug
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6

Goto, N. "Dependence of resonance condition on pressure in an RF resonance method." IEEE Transactions on Plasma Science 27, no. 5 (1999): 1353–57. http://dx.doi.org/10.1109/27.799812.

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7

Lee, Won Kyoung, and Cheol Hong Kim. "Combination Resonances of a Circular Plate With Three-Mode Interaction." Journal of Applied Mechanics 62, no. 4 (1995): 1015–22. http://dx.doi.org/10.1115/1.2896037.

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A nonlinear analysis is presented for combination resonances in the symmetric responses of a clamped circular plate with the internal resonance, ω3≈ω1+2ω2. The combination resonances occur when the frequency of the excitation are near a combination of the natural frequencies, that is, when Ω≈2ω1+ω2. By means of the internal resonance condition, the frequency of the excitation is also near another combination of the natural frequencies, that is, Ω≈ω1−ω2+ω3. The effect of two near combination resonance frequencies on the response of the plate is examined. The method of multiple scales is used to
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8

Li, Jing, Yan Ping Ran, Xiao Na Yin, and Li Hua Chen. "The Periodic Solution and Numerical Simulations for Iced Cable System." Applied Mechanics and Materials 394 (September 2013): 144–49. http://dx.doi.org/10.4028/www.scientific.net/amm.394.144.

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In this paper, the periodic behavior of iced cable in the case of the in-plane fundamental parametric resonance-principal resonance, out-of-plane principal parametric resonance-principal resonance, and in 1:2 internal resonances is investigated. The sufficient condition for the existence of the periodic solutions about the system is obtained through using Melnikov function and Poincare mapping, then the stability of periodic solution is investigated by using blow-up transformations and the average method. Numerical simulations are performed to verify the analytical predictions and get three gr
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9

Walbrecker, Jan O., Marian Hertrich, and Alan G. Green. "Off-resonance effects in surface nuclear magnetic resonance." GEOPHYSICS 76, no. 2 (2011): G1—G12. http://dx.doi.org/10.1190/1.3535414.

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Surface nuclear magnetic resonance (NMR) is a noninvasive geophysical tool used to investigate groundwater reservoirs. The relevant physical process in surface NMR is the nuclear spin of hydrogen protons in liquid water. Standard single-pulse surface NMR experiments provide estimates of water content in the shallow subsurface. Under favorable conditions, pore-structure and even hydraulic-conductivity information can be extracted from double-pulse surface NMR data. One crucial issue in surface NMR experiments is the resonance condition: the frequency of the excitation field should closely match
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10

Mohanty, S., and S. K. Dwivedy. "Active Vibration Absorber for Superharmonic Resonance Condition." Journal of Physics: Conference Series 1706 (December 2020): 012102. http://dx.doi.org/10.1088/1742-6596/1706/1/012102.

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11

Zhao, X. D., H. Yamamoto, Y. Nakano, and K. Taniguchi. "Resonance condition for asymmetrical triple-barrier structures." Superlattices and Microstructures 23, no. 6 (1998): 1273–83. http://dx.doi.org/10.1006/spmi.1996.0163.

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12

Pareek, T. P., Mangal C. Mahato, and A. M. Jayannavar. "Dynamical Hysteresis and Stochastic Resonance in Driven Dissipative Quantum Two-State System." Modern Physics Letters B 11, no. 20 (1997): 861–66. http://dx.doi.org/10.1142/s0217984997001067.

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We study the dynamics of a periodically driven two-state system coupled to thermal environment. In the high temperature limit we have obtained analytic expressions for the average position of the particle and hysteresis loop area. Both these quantities exhibit stochastic resonance behavior as a function of various parameters of the problem. These two resonances, however, occur at different values of the parameters. The resonance condition obtained from the study of phase delay exhibits resonance at a fixed frequency independent of other physical parameters.
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13

Liu, Xiaohui, Shuguang Yang, Chuan Wu, et al. "Planar Nonlinear Galloping of Iced Transmission Lines under Forced Self-Excitation Conditions." Discrete Dynamics in Nature and Society 2021 (March 22, 2021): 1–20. http://dx.doi.org/10.1155/2021/6686028.

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In order to study the influence of dynamic wind on the nonlinear galloping characteristics of iced transmission lines, an external excitation load is added to the governing equation of iced transmission lines under the condition of stable wind, and a new forced self-excited system has been established. The frequency-amplitude relationship of the forced self-excited system under weak excitation and strong excitation is obtained by using the multiple-scale method. The principal resonances and superharmonic and subharmonic resonances of the forced self-excited system have also been analyzed. The
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14

ALAM, MOHAMMAD-REZA, YUMING LIU, and DICK K. P. YUE. "Bragg resonance of waves in a two-layer fluid propagating over bottom ripples. Part I. Perturbation analysis." Journal of Fluid Mechanics 624 (April 10, 2009): 191–224. http://dx.doi.org/10.1017/s0022112008005478.

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We investigate, via perturbation analyses, the mechanisms of nonlinear resonant interaction of surface-interfacial waves with a rippled bottom in a two-layer density-stratified fluid. As in a one-layer fluid, three classes of Bragg resonances are found to exist if nonlinear interactions up to the third order in the wave/ripple steepness are considered. As expected, the wave system associated with the resonances is more complicated than that in a one-layer fluid. Depending on the specifics of the resonance condition, the resonance-generated wave may be a surface or internal mode and may be tran
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15

Soroka, V. I. "Elastic nuclear resonance backscattering spectrometry (broad resonances)." Nuclear Physics and Atomic Energy 2, no. 8 (2007): 147–54. https://doi.org/10.15407/jnpae2007.02.147.

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The possibilities of using of the elastic nuclear resonance backscattering of ions for the investigation of materials are analyzed. Broad resonances having the cross-section varying smoothly in large energy range are considered. Under this condition the simplicity of information extraction inherent in the Rutherford backscattering technique is retained. Concurrently, the detection sensitivity for low-mass impurities is improved. The elastic nuclear resonance scattering reaction is always accompanied by the Coulomb and potential scatterings. The above components of the elastic scattering are co
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16

Huang, Xue Liang, Lin Lin Tan, Hui Li, and Hao Qiang. "Frequency Splitting and Distance Boundary Condition in Magnetic Resonance Coupled Wireless Power Transfer System." Advanced Materials Research 308-310 (August 2011): 1349–52. http://dx.doi.org/10.4028/www.scientific.net/amr.308-310.1349.

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In this paper, a magnetic resonance coupled wireless power transfer system(MRCWPTS) with series capacitor compensation is studied in order to investigate resonance frequency, and then the system transfer model is presented. Research results show that system resonance frequency is likely to occur splitting and maybe appear two or three resonance frequencies(odd /even mode resonance frequency and nature resonance frequency) in close distance under small load, which increases the system instable, and makes the system difficult to control in resonance frequency. By analyzing of the system, the dis
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17

Aprilia, Lia, Ratno Nuryadi, Dwi Gustiono, et al. "CO Gas-Induced Resonance Frequency Shift of ZnO-Functionalized Microcantilever in Humid Air." Journal of Nanomaterials 2017 (2017): 1–7. http://dx.doi.org/10.1155/2017/4824607.

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Resonance frequency shift of a zinc oxide- (ZnO-) functionalized microcantilever as a response to carbon monoxide (CO) gas has been investigated. Here, ZnO microrods were grown on the microcantilever surface by a hydrothermal method. The measurement of resonance frequency of the microcantilever vibrations due to the gas was carried out in two conditions, that is, gas flow with and without air pumping into an experiment chamber. The results show that the resonance frequency of the ZnO-functionalized microcantilever decreases because of CO in air pumping condition, while it increases when CO is
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18

Xiaopo, Wang. "Quasilinear fractional differential equation with resonance boundary condition." Journal of Progressive Research in Mathematics 3, no. 2 (2015): 175–85. https://doi.org/10.5281/zenodo.3980679.

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In this paper, we consider quasilinear fractional differential equation with resonance boundary condition. After translating the quasilinear equation into the linear fractional differential system, by using coincidence degree theory, the existence result is established.
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19

Ahn, Sukjin, Changhoon Lee, Hyen-cheol Jung, and Hyukjin Choi. "Analysis of Resonance Efficiency According to Length and Entrance Depth of Channel Resonance Part of Multi-Resonance Wave Energy Converter." Journal of Korean Society of Coastal and Ocean Engineers 36, no. 4 (2024): 138–48. http://dx.doi.org/10.9765/kscoe.2024.36.4.138.

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Multi-resonance wave energy converter can generate efficient power generation by complexly utilizing the resonance phenomenon of waves even when waves propagate normally. As the wave is amplified by resonance, the power generation efficiency of the multi-resonance wave energy converter increases, and the shape of the resonance part needs to be optimized to maximize power generation efficiency. The multi-resonance wave energy converter amplifies waves in the seiche resonance part and the channel resonance part. In this study, CFD numerical experiments were performed under various conditions suc
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20

Popov, I. P. "Anti-Resonance — Velocity Resonance." Mekhatronika, Avtomatizatsiya, Upravlenie 20, no. 6 (2019): 362–66. http://dx.doi.org/10.17587/mau.20.362-366.

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The task of the study is to establish the nature of mechanical resonance, namely, it is a resonance of forces or speeds. Two definitions are introduced. Definition 1. Resonance of forces is a resonance arising at a frequency ω = (k/m)0,5 in a mechanical system including an inert body and an elastic element, at which the reactive forces developed by them are maximal and opposite. Definition 2. The velocity resonance is a resonance arising at a frequency ω = (k/m)0,5 in a mechanical system, including an inert body and an elastic element, at which the speeds developed by them are maximum and oppo
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21

Yang, Y. B., Mei Li, Bin Zhang, Yuntian Wu, and Judy P. Yang. "Resonance and Cancellation in Torsional Vibration of Monosymmetric I-Sections Under Moving Loads." International Journal of Structural Stability and Dynamics 18, no. 09 (2018): 1850111. http://dx.doi.org/10.1142/s0219455418501110.

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This paper is concerned with the lateral and torsional coupled vibration of monosymmetric I-beams under moving loads. To this end, a train is modeled as two subsystems of eccentric wheel loads of constant intervals to account for the front and rear wheels. By assuming the lateral and torsional displacements to be restrained at the two ends of the beam, both the lateral and torsional displacements are approximated by a series of sine functions. The method of variation of constants is adopted to derive the closed-form solution. For the most severe condition when the last wheel load is acting on
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22

King, A. R. "Accretion Disc Instabilities." Symposium - International Astronomical Union 151 (1992): 195–203. http://dx.doi.org/10.1017/s0074180900122193.

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I give a brief discussion of accretion disc instabilities, concentrating mainly on tidal instabilities caused by the presence of a binary companion. The superhumps observed in superoutbursts of SU UMa dwarf novae probably result from the excitation of a resonance in the accretion disc near the 3:1 commensurability with the binary orbit. This resonance can only appear for mass ratios q = M2/M1 < qerit ≃ 0.25 – 0.33: for larger mass ratios the available resonances are considerably weaker. Application of this picture to other types of binary suggests that the condition q < qerit may be nece
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23

Xu, Shanshan, and Frédéric Dias. "Long Wave Run-Up Resonance in a Multi-Reflection System." Applied Sciences 10, no. 18 (2020): 6172. http://dx.doi.org/10.3390/app10186172.

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Wave reflection and wave trapping can lead to long wave run-up resonance. After reviewing the theory of run-up resonance in the framework of the linear shallow water equations, we perform numerical simulations of periodic waves incident on a linearly sloping beach in the framework of the nonlinear shallow water equations. Three different types of boundary conditions are tested: fully reflective boundary, relaxation zone, and influx transparent boundary. The effect of the boundary condition on wave run-up is investigated. For the fully reflective boundary condition, it is found that resonant re
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24

Chen, Hua-Jun, Peng-Jie Zhu, Yong-Lei Chen, and Bao-Cheng Hou. "Majorana fermions induced fast- and slow-light in a hybrid semiconducting nanowire/superconductor device." Chinese Physics B 31, no. 2 (2022): 027802. http://dx.doi.org/10.1088/1674-1056/ac3221.

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We investigate theoretically Rabi-like splitting and Fano resonance in absorption spectra of quantum dots (QDs) based on a hybrid QD-semiconducting nanowire/superconductor (SNW/SC) device mediated by Majorana fermions (MFs). Under the condition of pump on-resonance and off-resonance, the absorption spectrum experiences the conversion from Fano resonance to Rabi-like splitting in different parametric regimes. In addition, the Fano resonances are accompanied by the rapid normal phase dispersion, which will indicate the coherent optical propagation. The results indicate that the group velocity in
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25

Samarbakhsh, A., and J. Tuszynski. "Resonance Condition in Microtubules Using Ultrasound Plane Waves." Journal of Computational and Theoretical Nanoscience 9, no. 1 (2012): 67–71. http://dx.doi.org/10.1166/jctn.2012.1997.

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26

Chandia, K. J., and J. C. Flores. "Kicked quantum circuits with charge discreteness: Resonance condition." Physics Letters A 372, no. 42 (2008): 6453–55. http://dx.doi.org/10.1016/j.physleta.2008.09.005.

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27

Archana, Ray* Anjana Acharya. "TRANSITION PROBABILITY IN RESONANCE CONDITION FOR Z=110." INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY 6, no. 6 (2017): 51–57. https://doi.org/10.5281/zenodo.802809.

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28

Someda, Kiyohiko, Hiroki Nakamura, and Frederick H. Mies. "Competition Between Intramolecular Vibrational Energy Re-Distribution and Unimolecular Dissociation: A Scattering Theoretical Point of View." Laser Chemistry 15, no. 2-4 (1995): 145–56. http://dx.doi.org/10.1155/1995/59696.

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Systematic behavior of decay rates of resonances above dissociation threshold is investigated by using the theory of resonance scattering. The condition for the Rice-Ramsperger-Kassel-Marcus (RRKM) rate formula to be valid is clarified by analyzing the random model of unimolecular dissociation. The decay rate averaged over many resonances agrees with the RRKM rate when the mean spacing and the mean width of the resonance states coincide with each other. On the other hand, auto- and mutual-correlation functions of the non-stationary wave functions indicate a rather paradoxical and intriguing ph
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29

Mabey, D. G. "Homogeneous wall boundary condition for oscillatory flow in slotted tunnels." Aeronautical Journal 101, no. 1003 (1997): 99–110. http://dx.doi.org/10.1017/s0001924000066574.

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Abstract The aerodynamic interference between oscillating models and the walls of slotted windtunnels is controlled by the homogeneous wall boundary condition, which has hitherto been uncertain. In this report a new homogeneous boundary condition for slotted tunnels is suggested which incorporates the important effects of plenum chamber depth and slot parameter.In particular, this new boundary condition controls the transverse resonance frequencies of the tunnel, which represent a severe form of wall interference. Hence a comparison of measured resonance frequencies with predictions based on s
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30

Zhang, Li-Na, Feng-Chen Li, Xiao-Yong Wang, and Peng-Fei Cui. "Theoretical and Numerical Analysis of 1 : 1 Main Parametric Resonance of Stayed Cable Considering Cable-Beam Coupling." Advances in Materials Science and Engineering 2017 (2017): 1–10. http://dx.doi.org/10.1155/2017/6948081.

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For the 1 : 1 main parametric resonances problems of cable-bridge coupling vibration, a main parametric resonances model considering cable-beam coupling is developed and dimensionless parametric resonances differential equations are derived. The main parametric resonances characteristics are discussed by means of multiscale approximation solution methods. Using an actual cable of cable-stayed bridge project for research object, numerical simulation analysis under a variety of conditions is illustrated. The results show that when the coupling system causes 1 : 1 parametric resonance, nonlinear
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31

Sinha, Bhawna. "Terahertz Sensing with Extraordinary Optical Transmission Hole Arrays." Journal of Technology and Systems 6, no. 7 (2024): 1–12. http://dx.doi.org/10.47941/jts.2291.

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Purpose: The purpose of this paper is to substantiate the enhanced performance of hyperbolic anisotropic (HA) meta-surfaces at anomalous extraordinary optical transmission (EOT) resonances. These resonances exhibit distinct transmission peaks highly sensitive to environmental changes, making them particularly valuable for sensing applications. By demonstrating improved transmission efficiency and sensitivity, this study aims to contribute to developing advanced sensing technologies that leverage the unique properties of HA meta-surfaces in detecting minute variations in their surroundings. Met
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32

Zhang, Dayong, Li Cheng, and Zuochun Shen. "Formation Laws of Direction of Fano Line-Shape in a Ring MIM Plasmonic Waveguide Side-Coupled with a Rectangular Resonator and Nano-Sensing Analysis of Multiple Fano Resonances." Crystals 11, no. 7 (2021): 819. http://dx.doi.org/10.3390/cryst11070819.

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Plasmonic MIM (metal-insulator-metal) waveguides based on Fano resonance have been widely researched. However, the regulation of the direction of the line shape of Fano resonance is rarely mentioned. In order to study the regulation of the direction of the Fano line-shape, a Fano resonant plasmonic system, which consists of a MIM waveguide coupled with a ring resonator and a rectangle resonator, is proposed and investigated numerically via FEM (finite element method). We find the influencing factors and formation laws of the ‘direction’ of the Fano line-shape, and the optimal condition for the
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33

Lipovský, J. "Pseudo-Orbit Expansion for the Resonance Condition on Quantum Graphs and the Resonance Asymptotics." Acta Physica Polonica A 128, no. 6 (2015): 968–73. http://dx.doi.org/10.12693/aphyspola.128.968.

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34

Chen, Ying, Jian Zhou, Zhi-Xin Ding, Min Zhang, and Qi-Guang Zhu. "Analysis of formation and evolution of double Fano resonances in sub-wavelength dielectric grating/MDM waveguide/periodic photonic crystal." Acta Physica Sinica 71, no. 3 (2022): 034202. http://dx.doi.org/10.7498/aps.71.20211491.

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Based on the diffraction principle and the mode coupling theory, a composite micro-nano structure of sub-wavelength dielectric grating/metal-dielectric-metal (MDM) waveguide/periodic photonic crystal is proposed. Combined with the angle spectrum of reflection, the transmission characteristics of the surface plasmon polaritons and the generation mechanism of double Fano resonances at different incident angles and fixed wavelength are analyzed. The studies show that the physical mechanism of double Fano resonances is that the surface plasmon resonance generated at the interface of sub-wavelength
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35

V, Sakhno, Poliakov V, Sakno O, and Kolesnikova T. "FUNCTIONAL RESONANCE ANALYSIS METHOD MODELLING OF THE CAR SAFETY CONTROL." National Transport University Bulletin 1, no. 46 (2020): 293–303. http://dx.doi.org/10.33744/2308-6645-2020-1-46-293-303.

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In the article, the car safety control is simulated because of the change of its technical condition during operation using the functional resonance analysis method. The object of the study is car safety control because of the change of its technical condition during operation using the functional resonance analysis method. The purpose of the article, based on the method of functional resonance analysis, is to simulate the car safety control because of the change of its technical condition, which affects the deterioration of steerability, stability, smoothness and unning characteristics during
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36

Radhika, B., and Vishala Pannala. "Study of dynamic characteristics of air cavity resonances from tyre-pavement interaction noise using single frequency filtering." Journal of the Acoustical Society of America 153, no. 5 (2023): 2985. http://dx.doi.org/10.1121/10.0019496.

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Air cavities in the tyre tread and the gap formed between tyre and pavement are excited during vehicle movement on a pavement. The former results in pipe resonance, and the latter results in horn resonance. These effects will be varying with speed of the vehicle and also because of conditions of tyre, pavement and, tyre-pavement interaction (TPI). The objective of this paper is to study the dynamic characteristics of air cavity resonances from the signals of the tyre-pavement interaction noise, which was collected by a pair of microphones, when a two wheeler is driven on a pavement at differen
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37

Li, Xiaohao, and Tao Shen. "Dynamic performance analysis of nonlinear anti-resonance vibrating machine with the fluctuation of material mass." Journal of Vibroengineering 18, no. 2 (2016): 978–88. http://dx.doi.org/10.21595/jve.2016.16559.

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Aimed to solve the problem of weak anti-resonance performance and poor working stability in current anti-resonance vibrating machines, this paper presents a nonlinear dynamic model that reflects the actual working state of the anti-resonance machine. Under the material mass fluctuation condition, the dynamic response of the anti-resonance vibrating system has been discussed, and the dynamic parameters selection problem of the anti-resonance vibrating system has been analyzed which could be used to improve working performance stability. In the paper, the influence of nonlinear factors of the an
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38

Qi, Zheng, and Jian Jun Wang. "Excitation Order Research in Bladed-Disk Coupling Resonance Condition." Applied Mechanics and Materials 472 (January 2014): 31–35. http://dx.doi.org/10.4028/www.scientific.net/amm.472.31.

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In order to define the factors of excitation order in bladed-disk coupling resonance condition which affects the working life of the bladed-disk, a more accurate formula of excitation order is proposed. The graph of excitation order applied to a bladed-disk structure is given firstly considering rotor-stator interaction. Then the formula of excitation order is developed according to the similarity of graph between aliasing and excitation order. Finally the formula verification of excitation order is given both numerically and experimentally using a typical bladed-disk model. The study shows th
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39

Chen, Xinqi, Sulin Zhang, Gregory J. Wagner, Weiqiang Ding, and Rodney S. Ruoff. "Mechanical resonance of quartz microfibers and boundary condition effects." Journal of Applied Physics 95, no. 9 (2004): 4823–28. http://dx.doi.org/10.1063/1.1697635.

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40

Liberman, Ya L., and O. A. Lukashuk. "On preventing resonance condition in operation of rotary excavators." IOP Conference Series: Materials Science and Engineering 862 (May 28, 2020): 032030. http://dx.doi.org/10.1088/1757-899x/862/3/032030.

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41

Fei, Guihua. "On resonance Hamiltonian systems without the Palais–Smale condition." Nonlinear Analysis: Theory, Methods & Applications 61, no. 6 (2005): 1041–56. http://dx.doi.org/10.1016/j.na.2002.11.001.

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42

Maryško, M., L. Baselgia, M. Warden, et al. "NOTE ON ENERGY FORMULATION OF THE FMR RESONANCE CONDITION." Le Journal de Physique Colloques 49, no. C8 (1988): C8–905—C8–906. http://dx.doi.org/10.1051/jphyscol:19888411.

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43

Kordi, Zeinab, Saeed Ghanbari, and Mohammad Mahmoudi. "Atom–photon entanglement beyond the multi-photon resonance condition." Quantum Information Processing 15, no. 1 (2015): 199–213. http://dx.doi.org/10.1007/s11128-015-1168-9.

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44

De, A., and A. Puri. "Kerr-resonance-condition-coupled enhancement in magneto-optic media." Journal of Applied Physics 93, no. 2 (2003): 1120–26. http://dx.doi.org/10.1063/1.1523141.

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SUZUTA, Shohei, Hiroki SAKAMOTO, Norihisa ANEGAWA, and Osami MATSUSHITA. "Study on Resonance Condition of Electromagnetic Force in IPMSM." Proceedings of the Dynamics & Design Conference 2019 (2019): 609. http://dx.doi.org/10.1299/jsmedmc.2019.609.

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Li, Guanling, and Wenlei Zhao. "Quadratic Growth of Out-of-Time-Ordered Correlators in Quantum Kicked Rotor Model." Entropy 26, no. 3 (2024): 229. http://dx.doi.org/10.3390/e26030229.

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We investigate both theoretically and numerically the dynamics of out-of-time-ordered correlators (OTOCs) in quantum resonance conditions for a kicked rotor model. We employ various operators to construct OTOCs in order to thoroughly quantify their commutation relation at different times, therefore unveiling the process of quantum scrambling. With the help of quantum resonance condition, we have deduced the exact expressions of quantum states during both forward evolution and time reversal, which enables us to establish the laws governing OTOCs’ time dependence. We find interestingly that the
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Chen, Xiaojie, and Yu-Sheng Lin. "Polarization-Sensitive Metamaterials with Tunable Multi-Resonance in the Terahertz Frequency Range." Crystals 10, no. 7 (2020): 611. http://dx.doi.org/10.3390/cryst10070611.

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We propose two designs of polarization-sensitive metamaterials (PSMs), which are composed of face-to-face spilt-ring resonators (SRRs) and a cut-wire resonator (CWR) sandwiched by two face-to-face SRRs. For convenient description, they are denoted as PSM_1 and PSM_2, respectively. PSM_1 and PSM_2 are fabricated by tailoring Au layers with periodic configurations on silicon-on-insulator (SOI) substrates. By changing the incident polarization light, the electromagnetic responses of PSM_1 can be manipulated between single-resonance and dual-resonance, while those of PSM_2 exhibit switching behavi
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Duan, Yunsuo, Tamer S. Ibrahim, Bradley S. Peterson, Feng Liu, and Alayar Kangarlu. "Assessment of a PML Boundary Condition for Simulating an MRI Radio Frequency Coil." International Journal of Antennas and Propagation 2008 (2008): 1–10. http://dx.doi.org/10.1155/2008/563196.

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Computational methods such as the finite difference time domain (FDTD) play an important role in simulating radiofrequency (RF) coils used in magnetic resonance imaging (MRI). The choice of absorbing boundary conditions affects the final outcome of such studies. We have used FDTD to assess the Berenger's perfectly matched layer (PML) as an absorbing boundary condition for computation of the resonance patterns and electromagnetic fields of RF coils. We first experimentally constructed a high-pass birdcage head coil, measured its resonance pattern, and used it to acquire proton phantom MRI image
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Xing, Jiaojiao, Hao Li, Shilin Yu, Yan Shi, and Tonggang Zhao. "Multiple Fano resonances driven by bound states in the continuum in an all-dielectric nanoarrays system." AIP Advances 13, no. 3 (2023): 035212. http://dx.doi.org/10.1063/5.0134810.

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Fano resonance with high Q-factor can greatly enhance the light–matter interaction in all-dielectric metasurface, which is an important condition for developing high-performance micro-/nano-photonics devices. In this paper, we present an all-dielectric metasurface structure composed of nanoarrays to investigate the properties of BIC realization and Fano resonance in the near-infrared spectral region. Four Fano profiles are generated, and two quasi-BIC resonance modes excited by MD appear when the structural symmetry is broken. All the Fano resonances modulation depth close to 100%. The spectra
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Raj, Raunak, and Anirban Guha. "On Bragg resonances and wave triad interactions in two-layered shear flows." Journal of Fluid Mechanics 867 (March 25, 2019): 482–515. http://dx.doi.org/10.1017/jfm.2019.155.

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The standard resonance conditions for Bragg scattering as well as weakly nonlinear wave triads have been traditionally derived in the absence of any background velocity. In this paper, we have studied how these resonance conditions get modified when uniform, as well as various piecewise linear velocity profiles, are considered for two-layered shear flows. Background velocity can influence the resonance conditions in two ways: (i) by causing Doppler shifts, and (ii) by changing the intrinsic frequencies of the waves. For Bragg resonance, even a uniform velocity field changes the resonance condi
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