Academic literature on the topic 'Non-local thermoelastic peak of ion'

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Journal articles on the topic "Non-local thermoelastic peak of ion"

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Kalinichenko, A. I., S. S. Perepelkin, and V. E. Strel'nitskij. "Dependence of intrinsic stress and structure of ta-C film on ion energy and substrate temperature in model of the non-local thermoelastic peak." Diamond and Related Materials 19, no. 7-9 (2010): 996–98. http://dx.doi.org/10.1016/j.diamond.2010.03.001.

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Thejappa, G., and R. J. MacDowall. "High frequency ion sound waves associated with Langmuir waves in type III radio burst source regions." Nonlinear Processes in Geophysics 11, no. 3 (2004): 411–20. http://dx.doi.org/10.5194/npg-11-411-2004.

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Abstract. Short wavelength ion sound waves (2-4kHz) are detected in association with the Langmuir waves (~15-30kHz) in the source regions of several local type III radio bursts. They are most probably not due to any resonant wave-wave interactions such as the electrostatic decay instability because their wavelengths are much shorter than those of Langmuir waves. The Langmuir waves occur as coherent field structures with peak intensities exceeding the Langmuir collapse thresholds. Their scale sizes are of the order of the wavelength of an ion sound wave. These Langmuir wave field characteristic
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Mazalski, Piotr, Iosif Sveklo, Zbigniew Kurant, et al. "XAS and XMCD studies of magnetic properties modifications of Pt/Co/Au and Pt/Co/Pt trilayers induced by Ga+ions irradiation." Journal of Synchrotron Radiation 22, no. 3 (2015): 753–59. http://dx.doi.org/10.1107/s1600577515002933.

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Magnetic and magneto-optical properties of Pt/Co/Au and Pt/Co/Pt trilayers subjected to 30 keV Ga+ion irradiation are compared. In two-dimensional maps of these properties as a function of cobalt thickness and ion fluence, two branches with perpendicular magnetic anisotropy (PMA) for Pt/Co/Pt trilayers are well distinguished. The replacement of the Pt capping layer with Au results in the two branches still being visible but the in-plane anisotropy for the low-fluence branch is suppressed whereas the high-fluence branch displays PMA. The X-ray absorption spectra and X-ray magnetic circular dich
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Рягузов, А. П., Р. Р. Немкаева, О. И. Юхновец та ін. "Влияние неравновесных условий синтеза на структуру и оптические свойства аморфных углеродных пленок". Журнал технической физики 127, № 8 (2019): 251. http://dx.doi.org/10.21883/os.2019.08.48037.33-19.

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Amorphous carbon (a-C) thin films were synthesized by non-equilibrium method of ion-plasma sputtering of graphite target in Ar atmosphere at constant value of plasma current. Studies of the local structure of the carbon films were carried out using Raman spectroscopy method. Using normal distribution for Raman spectra decomposition it was revealed that at synthesis temperatures below 150 C a peak at about 1260 cm-1 occurred, which is characteristic for phonon density of states with sp3-hybridized bonds. In addition, it was shown the dependence of the optical bandgap on the sizes of sp2-site na
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Runov, A., V. A. Sergeev, R. Nakamura, et al. "Local structure of the magnetotail current sheet: 2001 Cluster observations." Annales Geophysicae 24, no. 1 (2006): 247–62. http://dx.doi.org/10.5194/angeo-24-247-2006.

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Abstract. Thirty rapid crossings of the magnetotail current sheet by the Cluster spacecraft during July-October 2001 at a geocentric distance of 19 RE are examined in detail to address the structure of the current sheet. We use four-point magnetic field measurements to estimate electric current density; the current sheet spatial scale is estimated by integration of the translation velocity calculated from the magnetic field temporal and spatial derivatives. The local normal-related coordinate system for each case is defined by the combining Minimum Variance Analysis (MVA) and the curlometer te
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Li, J., X. Liao, Z. Meng, and Y. Jiang. "Method for efficient excitation of selective vibration modes in pulsed laser photothermal actuation." Journal of Applied Physics 133, no. 11 (2023): 114501. http://dx.doi.org/10.1063/5.0140358.

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Photothermal excitation based on thermoelastic mechanisms is widely used in non-destructive testing, precision operations, and driving micro-resonators. The narrow drive bandwidth of the high vibration mode in photothermal excitation limits its application to multi-mode drives. Controlling the laser’s irradiation position is an effective solution. In this study, we build a theoretical model to achieve selective and efficient excitation of different flexural vibration modes of beams with different supports. The model can be extended to other thermal and physical boundaries, which is validated b
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Chatterjee, A., A. K. Nayak, and B. Weigand. "Effect of electromigration dispersion and non-Newtonian rheology of a charged solute in a microcapillary." Physics of Fluids 34, no. 11 (2022): 112011. http://dx.doi.org/10.1063/5.0110118.

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The present work is concerned with the electromigration interaction of non-Newtonian fluid in a rectangular micro-capillary under the influence of an external electric field to predict the spatiotemporal dynamics of the solute concentration due to an effective dispersion and migration velocity. The solute concentration is optimized by dispersion and a driving force exploiting the interplay between the sequential ionic distribution and the local electrical conductivity coupled with the characteristics of the fluid. The incompressible Navier–Stokes equation combined with the Poisson equation for
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Lee, Changmin, Dongho Kim, Youngjae Hong, Younghwan Lim, Chang Hyun Park, and Sung-Yoon Chung. "Comprehensive Study on the Role of Proton in the Insertion Chemistry of Aqueous Zn-Ion Batteries." ECS Meeting Abstracts MA2024-02, no. 67 (2024): 4459. https://doi.org/10.1149/ma2024-02674459mtgabs.

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Li-ion rechargeable batteries played a major role in the present revolution of portable devices since Goodenough's group switched from sulfide to oxide cathode materials in the 1980s. However, the safety of explosive organic electrolytes, rising demand-driven costs, and even geopolitical concerns over lithium minerals have prompted scientists to seek alternate systems. Due to their enormous capacity, Zn-ion rechargeable batteries with a non-explosive aqueous electrolyte have garnered significant attention among the candidates. Especially the newly demonstrated capacity over 300 mAh/g in the V2
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Sanchez, Javier, David J. Tanner, Dexian Chen, L. Gregory Huey, and Nga L. Ng. "A new technique for the direct detection of HO<sub>2</sub> radicals using bromide chemical ionization mass spectrometry (Br-CIMS): initial characterization." Atmospheric Measurement Techniques 9, no. 8 (2016): 3851–61. http://dx.doi.org/10.5194/amt-9-3851-2016.

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Abstract. Hydroperoxy radicals (HO2) play an important part in tropospheric photochemistry, yet photochemical models do not capture ambient HO2 mixing ratios consistently. This is likely due to a combination of uncharacterized chemical pathways and measurement limitations. The indirect nature of current HO2 measurements introduces challenges in accurately measuring HO2; therefore a direct technique would help constrain HOx chemistry in the atmosphere. In this work we evaluate the feasibility of using chemical ionization mass spectrometry (CIMS) and propose a direct HO2 detection scheme using b
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Zani, Veronica, Danilo Pedron, Roberto Pilot, and Raffaella Signorini. "Contactless Temperature Sensing at the Microscale Based on Titanium Dioxide Raman Thermometry." Biosensors 11, no. 4 (2021): 102. http://dx.doi.org/10.3390/bios11040102.

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The determination of local temperature at the nanoscale is a key point to govern physical, chemical and biological processes, strongly influenced by temperature. Since a wide range of applications, from nanomedicine to nano- or micro-electronics, requires a precise determination of the local temperature, significant efforts have to be devoted to nanothermometry. The identification of efficient materials and the implementation of detection techniques are still a hot topic in nanothermometry. Many strategies have been already investigated and applied to real cases, but there is an urgent need to
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Dissertations / Theses on the topic "Non-local thermoelastic peak of ion"

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Kalinichenko, A. I., V. E. Strel'nitskij, and V. V. Vasyliev. "Characteristics of DLC Coating Prepared by Pulse Biasing: Analysis in Model of Thermoelastic Peak of Ion." Thesis, Sumy State University, 2012. http://essuir.sumdu.edu.ua/handle/123456789/35398.

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A mode of pulse biasing of DLC coating deposition is theoretically investigated. In this mode a deposited ion flow of plasma with energy of E0 (20 200) eV is modified by superimposing of pulse potential ~ 1000 V. It was shown that intrinsic stress in a DLC coating can be decreased in several times without of essential decrease of sp3-bonded carbon concentration compared with DLC made in stationary mode deposition at E0 ion energy. A method of optimization of pulse mode parameters is proposed which is based on analysis of location of thermoelastic peaks of ions on phase P, T-diagram of car
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