Academic literature on the topic 'Dimensional quantum system'

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Journal articles on the topic "Dimensional quantum system"

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Wang, Hefeng, and Sabre Kais. "Quantum teleportation in one-dimensional quantum dots system." Chemical Physics Letters 421, no. 4-6 (2006): 338–42. http://dx.doi.org/10.1016/j.cplett.2006.01.093.

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GARCÍA, MARCOS A. G., and ALEXANDER V. TURBINER. "THE QUANTUM H3 INTEGRABLE SYSTEM." International Journal of Modern Physics A 25, no. 30 (2010): 5567–94. http://dx.doi.org/10.1142/s0217751x10050597.

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The quantum H3 integrable system is a three-dimensional system with rational potential related to the noncrystallographic root system H3. It is shown that the gauge-rotated H3 Hamiltonian as well as one of the integrals, when written in terms of the invariants of the Coxeter group H3, is in algebraic form: it has polynomial coefficients in front of derivatives. The Hamiltonian has infinitely-many finite-dimensional invariant subspaces in polynomials, they form the infinite flag with the characteristic vector [Formula: see text]. One among possible integrals is found (of the second order) as we
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Shao, Shuanglin, Chi-Kun Lin, and Jin-Cheng Jiang. "On one dimensional quantum Zakharov system." Discrete and Continuous Dynamical Systems 36, no. 10 (2016): 5445–75. http://dx.doi.org/10.3934/dcds.2016040.

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RANGAN, C. "THE TRAPPED-ION QUBIT: COHERENT CONTROL IN INFINITE-DIMENSIONAL QUANTUM SYSTEMS." Modern Physics Letters A 24, no. 32 (2009): 2565–78. http://dx.doi.org/10.1142/s0217732309032022.

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Theories of quantum control have, until recently, made the assumption that the Hilbert space of a quantum system can be truncated to finite dimensions. Such truncations, which can be achieved for most quantum systems via bandwidth restrictions, have enabled the development of a rich variety of quantum control and optimal control schemes. Recent studies in quantum information processing have addressed the control of infinite-dimensional quantum systems such as the quantum states of a trapped-ion. Controllability in an infinite-dimensional quantum system is hard to prove with conventional method
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Huang, Zhiming, Dongwu Wu, Tianqing Wang, Yungang Bian, and Wei Zhang. "Steering entropic uncertainty of qutrit system." Modern Physics Letters A 35, no. 16 (2020): 2050127. http://dx.doi.org/10.1142/s0217732320501278.

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High-dimensional quantum system plays an important role in quantum information tasks. However, the interaction between quantum system and environment would give rise to decoherence. In this paper, we examine the quantum-memory-assisted entropic uncertainty relation under amplitude damping (AD) decoherence. It is found that entropic uncertainty first inflates and then reduces to a nonzero value with the growing decoherence strength. In addition, it is revealed that the mixedness is not closely associated with entropic uncertainty which is different from the previous result. Furthermore, we cons
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Zhang, Yongmei, Junjie Xiao, and Dongsheng Hu. "Quantum Walk of Two Quantum Particles on One Dimensional System." Journal of Quantum Information Science 03, no. 04 (2013): 138–42. http://dx.doi.org/10.4236/jqis.2013.34018.

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Yeon, Kyu Hwang. "Three-dimensional Quantum System Constrained within a One Dimensional Curve." New Physics: Sae Mulli 62, no. 1 (2012): 19. http://dx.doi.org/10.3938/npsm.62.19.

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Shon, Nguyen Hong, and Tsuneya Ando. "Quantum Transport in Two-Dimensional Graphite System." Journal of the Physical Society of Japan 67, no. 7 (1998): 2421–29. http://dx.doi.org/10.1143/jpsj.67.2421.

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Yang, Ciann-Dong, and Chia-Hung Wei. "Strong chaos in one-dimensional quantum system." Chaos, Solitons & Fractals 37, no. 4 (2008): 988–1001. http://dx.doi.org/10.1016/j.chaos.2008.01.017.

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KVON, Z. D., E. B. OLSHANETSKY, D. A. KOZLOV, N. N. MIKHAILOV, and S. A. DVORETSKII. "A NEW TWO-DIMENSIONAL ELECTRON-HOLE SYSTEM." International Journal of Modern Physics B 23, no. 12n13 (2009): 2888–92. http://dx.doi.org/10.1142/s0217979209062499.

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A two-dimensional electron-hole system consisting of light high-mobility electrons with a density of Ns = (4 - 7) × 1010 cm -2 and heavier lower-mobility holes with a density Ps = (0.7 - 1.6) × 1011 cm -2 has been discovered in a quantum well based on mercury telluride with the (013) surface orientation. The system exhibits a number of specific magnetotransport properties in both the classical magnetotransport (positive magnetoresistance and sign-variable Hall effect) and the quantum Hall effect regime. These properties are associated with the coexistence of two-dimensional electrons and holes
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Dissertations / Theses on the topic "Dimensional quantum system"

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Johansson, Bergholtz Emil. "One-dimensional theory of the quantum Hall system." Doctoral thesis, Stockholms universitet, Fysikum, 2008. http://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-7545.

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The quantum Hall (QH) system---cold electrons in two dimensions in a perpendicular magnetic field---is a striking example of a system where unexpected phenomena emerge at low energies. The low-energy physics of this system is effectively one-dimensional due to the magnetic field. We identify an exactly solvable limit of this interacting many-body problem, and provide strong evidence that its solutions are adiabatically connected to the observed QH states in a similar manner as the free electron gas is related to real interacting fermions in a metal according to Landau's Fermi liquid theory. Th
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NAVA, MARCO. "TWO DIMENSIONAL AND NOVEL QUASI TWO DIMENSIONAL QUANTUM LIQUIDS." Doctoral thesis, Università degli Studi di Milano, 2013. http://hdl.handle.net/2434/216307.

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In this thesis we have used Quantum Monte Carlo techniques to study two systems that can be regarded as the archetype for neutral strongly interacting systems: 4He, and its fermionic counterpart 3He.More specifically, we have used the Path Integral Ground State and the Path Integral Monte Carlo methods to study a system of two dimensional 3He (2d-3He) and a system of 4He adsorbed on Graphene-Fluoride (GF) and Graphane (GH) at both zero and finite temperature. The purpose of the study of 4He on GF (GH) was the research of new physical phenomena, whereas in the case of 2d-3He it was the a
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Bhatti, Arshad Saleem. "Light scattering studies of the plasmon modes of two-dimensional electron gases." Thesis, University of Cambridge, 1995. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.388821.

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Wright, Philippa Anne. "Radiofrequency and optical studies of a quantum two dimensional electron system." Thesis, University of Oxford, 1991. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.308672.

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Li, Ling Feng. "An image encryption system based on two-dimensional quantum random walks." Thesis, University of Macau, 2018. http://umaclib3.umac.mo/record=b3950660.

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Radu, Maria Teodora. "Thermodynamic characterization of heavy fermion systems and low dimensional quantum magnets near a quantum critical point." Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2005. http://nbn-resolving.de/urn:nbn:de:swb:14-1130403549184-89465.

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We report experimentally results on the low temperature properties of two classes of materials with a special emphasizes near the QCP induced by substitution and magnetic 1.field: (1) the HF systems YbRh2(Si0.95Ge0.05)2, Yb1-yLayRh2Si2 (y = 0.05, 0.1),and YbIr2Si2 with tetragonal structures and CeIn3-xSnx (x = 0.55, 0.6, 0.65, 0.7, 0.8) with cubic structure; (2) the quantum spin systems: Cs2CuCl4 and Cs2CoCl4. In all the HF compounds we have observed NFL behavior in zero magnetic field close to the QCP. The La substituted system does not show an antiferromagnetic (AFM) transition down to the l
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Combes, Joshua Leo Alfred. "Rapid measurement and purification using quantum feedback control." Thesis, Griffith University, 2010. http://hdl.handle.net/10072/366812.

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I study the rate at which information can be extracted from a finite-dimensional open quantum system using the quantum trajectory description of a continuous measurement. I derive the rate at which information is extracted for a measurement without any control; this sets the benchmark to which the subsequent control protocols are compared. Next I consider control protocols that increase the rate of information extraction. The first such protocol applies feedback so the state and the measurement basis are unbiased at all times. The use of unbiased bases means that this protocol is essentially q
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Brand, Janetta Debora. "A quantum hall effect without landau levels in a quasi one dimensional system." Thesis, Stellenbosch : Stellenbosch University, 2012. http://hdl.handle.net/10019.1/71643.

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Thesis (MSc)--Stellenbosch University, 2012.<br>ENGLISH ABSTRACT: The experimental observation of the quantum Hall effect in a two-dimensional electron gas posed an intriguing question to theorists: Why is the quantization of conductance so precise, given the imperfections of the measured samples? The question was answered a few years later, when a connection was uncovered between the quantum Hall effect and topological quantities associated with the band structure of the material in which it is observed. The Hall conductance was revealed to be an integer topological invariant, implying i
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Ko, Hyun Chul. "Fabrication and Optical Properties of Low-Dimensional Quantum Structures in ZnCdSe Semiconductor System." Kyoto University, 1998. http://hdl.handle.net/2433/182308.

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Crivelli, Dawid Wiesław. "Particle and energy transport in strongly driven one-dimensional quantum systems." Doctoral thesis, Katowice: Uniwersytet Śląski, 2016. http://hdl.handle.net/20.500.12128/5879.

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This Dissertation concerns the transport properties of a strongly–correlated one–dimensional system of spinless fermions, driven by an external electric field which induces the flow of charges and energy through the system. Since the system does not exchange information with the environment, the evolution can be accurately followed to arbitrarily long times by solving numerically the time–dependent Schrödinger equation, going beyond Kubo’s linear response theory. The thermoelectric response of the system is here characterized, using the ratio of the induced energy and particle currents,
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Books on the topic "Dimensional quantum system"

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Zeng, Yihang. Study of Two-dimensional Correlated Quantum Fluid in Multi-layer graphene system. [publisher not identified], 2021.

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Živković, Tomislav P. Exact treatment of finite-dimensional and infinite-dimensional quantum systems. Nova Science Publishers, 2009.

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Kulish, Petr P., Nenad Manojlovich, and Henning Samtleben, eds. Infinite Dimensional Algebras and Quantum Integrable Systems. Birkhäuser-Verlag, 2005. http://dx.doi.org/10.1007/b137651.

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1944-, Kulish P. P., Manojlovic Nenad 1962-, and Samtleben Henning, eds. Infinite dimensional algebras and quantum integrable systems. Birkhäuser Verlag, 2005.

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Hayward, Carol Ann. Quantum mechanics in low-dimensional spin systems. University of Birmingham, 1994.

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Islam, Nurul T. High-Rate, High-Dimensional Quantum Key Distribution Systems. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-98929-7.

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Bauer, Günther. Low-Dimensional Electronic Systems: New Concepts. Springer Berlin Heidelberg, 1992.

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NATO Advanced Research Workshop on Optical Switching in Low-Dimensional Systems (1988 Marbella, Spain). Optical switching in low-dimensional systems. Plenum Press, 1989.

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Ha, Zachary Nyong-Chol. Quantum many-body systems in one dimension. World Scientific, 1996.

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Kloss, Benedikt. Numerically exact quantum dynamics of low-dimensional lattice systems. [publisher not identified], 2021.

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Book chapters on the topic "Dimensional quantum system"

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Haas, Fernando. "The One-Dimensional Quantum Zakharov System." In Quantum Plasmas. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-8201-8_7.

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Haas, Fernando. "The Three-Dimensional Quantum Zakharov System." In Quantum Plasmas. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-8201-8_8.

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Frieß, Benedikt. "The Two-Dimensional Electron System." In Spin and Charge Ordering in the Quantum Hall Regime. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-33536-0_2.

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Ando, Tsuneya, Yukio Matsumoto, and Yasutada Uemura. "Theory of Hall Effect in a Two-Dimensional Electron System." In Quantum Hall Effect: A Perspective. Springer Netherlands, 1989. http://dx.doi.org/10.1007/978-94-010-9709-3_9.

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Nicholas, R. J., G. M. Summers, M. Watts, et al. "Cyclotron Resonance of Mixed Phases of a 2-D System in the Ultra-Quantum Limit." In Low-Dimensional Electronic Systems. Springer Berlin Heidelberg, 1992. http://dx.doi.org/10.1007/978-3-642-84857-5_23.

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Schreiber, Katherine A. "The Quantum Hall Effect." In Ground States of the Two-Dimensional Electron System at Half-Filling under Hydrostatic Pressure. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-26322-5_1.

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Shastry, B. S. "The 1/r 2 Integrable System: The Universal Hamiltonian for Quantum Chaos." In Correlation Effects in Low-Dimensional Electron Systems. Springer Berlin Heidelberg, 1994. http://dx.doi.org/10.1007/978-3-642-85129-2_2.

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Wang, Ming-Ming, Lu-Ting Tian, and Zhi-Guo Qu. "Efficient Multiparty Quantum Secret Sharing Scheme in High-Dimensional System." In Cloud Computing and Security. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-030-00012-7_3.

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Nagaosa, N., and M. Kohmoto. "Chern-Simons Ginzburg-Landau Theory of the Fractional Quantum Hall System with Edges." In Correlation Effects in Low-Dimensional Electron Systems. Springer Berlin Heidelberg, 1994. http://dx.doi.org/10.1007/978-3-642-85129-2_18.

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Schreiber, Katherine A. "The Quantum Hall Nematic Phase." In Ground States of the Two-Dimensional Electron System at Half-Filling under Hydrostatic Pressure. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-26322-5_2.

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Conference papers on the topic "Dimensional quantum system"

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Jiang, Zhen, Hongwei Wang, Yikai Su, Chun Jiang, and Guangqiang He. "Topological Protected Transport of Broadband Quantum Frequency Comb in Valley Photonic Crystals." In CLEO: Fundamental Science. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/cleo_fs.2024.fw3m.6.

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We propose on-chip topological transport of quantum frequency comb (10 THz) with frequency entanglement in valley photonic crystals. Our proposal could open new avenues for high-dimensional information processing utilizing topology in quantum system.
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Tang, Haoning, Yiting Wang, Xueqi Ni, et al. "An on-chip platform for multi-degree-of-freedom control of two-dimensional quantum and nonlinear materials." In CLEO: Science and Innovations. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/cleo_si.2024.sth4r.4.

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We introduce the first on-chip, microelectromechanical system for the in situ tuning of twisted 2D materials, enabling tunable interfacial properties, synthetic topological singularities, and adjustable-polarization light sources for advanced quantum material manipulation in 2D-3D devices.
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Sulimany, Kfir, Rom Dudkiewicz, Simcha Korenblit, Hagai S. Eisenberg, Yaron Bromberg, and Michael Ben-Or. "High-Dimensional Quantum Key Distribution with Scrambled Time-Bin Encoding." In Quantum 2.0. Optica Publishing Group, 2022. http://dx.doi.org/10.1364/quantum.2022.qm3b.7.

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We propose and analyze a high-dimensional cryptographic protocol relying on a coherent-one-way quantum key distribution system. We demonstrate it over a 40km fiber link and observe a twofold enhancement in the secure key rate.
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Somaraju, Ram, Mazyar Mirrahimi, and Pierre Rouchon. "Approximate stabilization of an infinite dimensional quantum stochastic system." In 2011 50th IEEE Conference on Decision and Control and European Control Conference (CDC-ECC 2011). IEEE, 2011. http://dx.doi.org/10.1109/cdc.2011.6160560.

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Malossi, N., M. Viteau, M. G. Bason, et al. "Rydberg excitation in one dimensional system and optical lattices." In 12th European Quantum Electronics Conference CLEO EUROPE/EQEC. IEEE, 2011. http://dx.doi.org/10.1109/cleoe.2011.5943292.

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Fukuzawa, T., S. Y. Kim, T. K. Gustafson, E. E. Haller, and E. Yamada. "Anomalous Diffusion of Repulsive Bosons in a Two-Dimensional Random Potential." In Quantum Optoelectronics. Optica Publishing Group, 1997. http://dx.doi.org/10.1364/qo.1997.qthb.2.

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Two-dimensional (2D) bosons can undergo a Kosterlitz-Thouless transition[1], which does not involve macroscopic occupation of a single quantum state, but which can still result in superfluidity. In addition, strongly interacting bosons subject to a random potential can also exhibit superfluidity, as in the case of charged superfluidity that occurs in high-T c superconductors. Competition between the strength of the interaction and the degree of potential disorder are among the many complicated and competing factors which determine whether superfluidity is promoted or supressed in a Bose system
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Liu, Jingyuan, Zhihao Lin, Dongning Liu, et al. "Long-Distance High-Dimensional Quantum Key Distribution Field Test Using Energy-Time Entanglement." In Quantum 2.0. Optica Publishing Group, 2023. http://dx.doi.org/10.1364/quantum.2023.qw3a.3.

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We present a high-dimensional quantum key distribution field test using energy-time entangled photon pairs over 242 km partially deployed fiber. We demonstrate system stability and robustness over 7 days with a fully passive experimental setup.
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Hase, Masashi, Masanori Kohno, Hideaki Kitazawa, et al. "Magnetic Properties Of The Low-Dimensional Quantum Spin System Cu2CdB2O6." In LOW TEMPERATURE PHYSICS: 24th International Conference on Low Temperature Physics - LT24. AIP, 2006. http://dx.doi.org/10.1063/1.2355059.

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Long, Marshall B. "Imaging System Requirements for Turbulence and Combustion Diagnostics." In Quantum-Limited Imaging and Image Processing. Optica Publishing Group, 1986. http://dx.doi.org/10.1364/qlip.1986.tub3.

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During the past several years, two-dimensional imaging techniques have become widely used as a diagnostic tool for studying turbulence and combustion. The reason for this increased interest in simultaneous multipoint mapping techniques has been due largely to the realization that the large-scale structures play an important role in these flows and the availability of quantitative data on the spatial characteristics of the structures allows greater understanding of their role. Many different light scattering mechanisms have been used for these studies including Lorenz/Mie,1 Rayleigh,2 fluoresce
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Fukui, T., S. Ando, Y. Tokura, and T. Toriyama. "GaAs Tetrahedral Quantum Dots: Towards a Zero-Dimensional Electron-Hole System." In 1990 International Conference on Solid State Devices and Materials. The Japan Society of Applied Physics, 1990. http://dx.doi.org/10.7567/ssdm.1990.b-4-1.

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Reports on the topic "Dimensional quantum system"

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Perdigão, Rui A. P., and Julia Hall. Empowering Next-Generation Synergies among Models and Data with Information Physical Quantum Technological Intelligence. Synergistic Manifolds, 2024. https://doi.org/10.46337/241209.

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We present and deploy our methodological and technological framework of Information Physical Quantum Technological Intelligence (IPQuTI), to empower next-generation mathematically robust, physically consistent, computationally efficient and operationally scalable synergies among models and data across multisectoral theoretical and applied workflows. Going beyond digital computing platforms, IPQuTI encompasses a richer basis alphabet of fundamental quantum states (information building blocks) and a high-order set of superposition and entanglement functionals (grammar) beyond the state of the ar
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Krelina, Michal. Military and Security Dimensions of Quantum Technologies. Stockholm International Peace Research Institute, 2025. https://doi.org/10.55163/zvtl1529.

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Quantum technologies are advancing rapidly from experimental research into strategic defence and security applications, fundamentally altering how information is sensed, shared and secured. Ground- and satellite-based quantum key distribution networks are already being deployed by China and the European Union, promising virtually unbreakable communication. Quantum sensing systems, capable of precise navigation without a global navigation satellite system as well as subterranean and underwater detection, are nearing operational use. In computing, there are expectations that within one to three
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Pasupuleti, Murali Krishna. Quantum-Enhanced Machine Learning: Harnessing Quantum Computing for Next-Generation AI Systems. National Education Services, 2025. https://doi.org/10.62311/nesx/rrv125.

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Abstract Quantum-enhanced machine learning (QML) represents a paradigm shift in artificial intelligence by integrating quantum computing principles to solve complex computational problems more efficiently than classical methods. By leveraging quantum superposition, entanglement, and parallelism, QML has the potential to accelerate deep learning training, optimize combinatorial problems, and enhance feature selection in high-dimensional spaces. This research explores foundational quantum computing concepts relevant to AI, including quantum circuits, variational quantum algorithms, and quantum k
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Harel, Elad. Ultrabroadband Two-Dimensional Coherent Optical Spectrometer for Directed Energy Trapping in Quantum Dynamical Systems. Defense Technical Information Center, 2015. http://dx.doi.org/10.21236/ad1008614.

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Mani, R. G., V. Narayanamurti, V. Privman, and Y. Zhang. Measurement and Manipulation of Nuclear Spins Embedded in Low Dimensional Quantum Hall Electronic Semiconductor Systems: A Novel Experimental Approach to Quantum Computation. Defense Technical Information Center, 2005. http://dx.doi.org/10.21236/ada433744.

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Goldhaber, Alfred S. An Elementary Aharonov-Bohm System in Three Space Dimensions: Quantum Attraction With No Classical Force. Office of Scientific and Technical Information (OSTI), 2003. http://dx.doi.org/10.2172/812603.

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O'Connell, R. F. Quantum Transport, Noise and Non-Linear Dissipative Effects in One- and Two-Dimensional Systems and Associated Sub-Micron and Nanostructure Devices. Defense Technical Information Center, 1992. http://dx.doi.org/10.21236/ada250895.

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