Visualization of the interaction dynamics between a two-level atom and a graphene sheet covered by a laser field
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[1] M. Y. Abd-Rabbou,et al. Entanglement of a cavity with a three-level atom and a graphene membrane in the presence of a laser field , 2023, Alexandria Engineering Journal.
[2] Saeed Haddadi,et al. Local quantum Fisher information and local quantum uncertainty for general X states , 2023, Physics Letters A.
[3] Saeed Haddadi,et al. Generating non-classical correlations in two-level atoms , 2023, Alexandria Engineering Journal.
[4] M. Y. Abd-Rabbou,et al. Two‐Qubit Steerability, Nonlocality, and Average Steered Coherence under Classical Dephasing Channels , 2023, Annalen der Physik.
[5] M. Y. Abd-Rabbou,et al. The Classicality and Quantumness of the Driven Qubit–Photon–Magnon System , 2022, Mathematics.
[6] Saeed Haddadi,et al. Entanglement witness and linear entropy in an open system influenced by FG noise , 2022, Quantum Information Processing.
[7] J. Fuentes,et al. Rényi Entropy in Statistical Mechanics , 2022, Entropy.
[8] M. Y. Abd-Rabbou,et al. Enhancing the information of nonlinear SU(1, 1) quantum systems interacting with a two-level atom , 2022, Optical and Quantum Electronics.
[9] M. Y. Abd-Rabbou,et al. Robustness of a teleported state influenced by dipole interaction and magnetic field under intrinsic decoherence , 2022, Optik.
[10] M. Y. Abd-Rabbou,et al. Influence of an External Classical Field on a ♢ Four-Level Atom Inside a Quantized Field , 2022, Symmetry.
[11] Mohammad Reza Pourkarimi,et al. Tripartite Quantum Correlations under Power‐Law and Random Telegraph Noises: Collective Effects of Markovian and Non‐Markovian Classical Fields , 2022, Annalen der Physik.
[12] M. Y. Abd-Rabbou,et al. Effects of the Vibrating Graphene Membrane and the Driven Classical Field on an Atomic System Coupled to a Cavity Field , 2021, SSRN Electronic Journal.
[13] P. Schmelcher,et al. Spectral properties of a three-body atom-ion hybrid system , 2021, Physical Review A.
[14] G. Agarwal,et al. Experimental study of decoherence of the two-mode squeezed vacuum state via second harmonic generation , 2020, 2012.11839.
[15] Yongmei Huang,et al. Entanglement-based secure quantum cryptography over 1,120 kilometres , 2020, Nature.
[16] K. Berrada,et al. Entanglement and photon statistics of two dipole–dipole coupled superconducting qubits with Kerr-like nonlinearities , 2020, Results in Physics.
[17] A. Dehghani,et al. Interaction of a para-Bose state with two two-level atoms: control of dissipation by a local classical field , 2020 .
[18] Qinghong Liao,et al. Maximal entanglement and switch squeezing with atom coupled to cavity field and graphene membrane , 2020, Quantum Inf. Process..
[19] M. Schlosshauer. Quantum decoherence , 2019, Physics Reports.
[20] S. Luo,et al. Quantifying nonclassicality via Wigner-Yanase skew information , 2019, Physical Review A.
[21] M. Y. Abd-Rabbou,et al. Restraining the decoherence of accelerated qubit–qutrit system via local Markovian channels , 2019, Physica Scripta.
[22] J. Koski,et al. Strong photon coupling to the quadrupole moment of an electron in a solid-state qubit , 2019, 1905.00846.
[23] Ryuji Takagi,et al. Skew informations from an operational view via resource theory of asymmetry , 2018, Scientific Reports.
[24] Silvia Pappalardi,et al. Origin of the slow growth of entanglement entropy in long-range interacting spin systems , 2018, Physical Review Research.
[25] Weijing Li. Monotonicity of skew information and its applications in quantum resource theory , 2018, Quantum Inf. Process..
[26] E. Khalil,et al. Influence of an External Classical Field on the Interaction Between a Field and an Atom in Presence of Intrinsic Damping , 2018, International Journal of Theoretical Physics.
[27] M. S. Abdalla,et al. Linear entropy and squeezing of the interaction between two quantum system described by su (1, 1) and su(2) Lie group in presence of two external terms , 2017 .
[28] N. Metwally,et al. Enhancing entanglement, local and non-local information of accelerated two-qubit and two-qutrit systems via weak-reverse measurements , 2016, 1607.04916.
[29] M. S. Abdalla,et al. Interaction between two SU(1,1) quantum systems and a two-level atom , 2016 .
[30] Matthew Rispoli,et al. Quantum thermalization through entanglement in an isolated many-body system , 2016, Science.
[31] M. L. Wall,et al. Quantum spin dynamics and entanglement generation with hundreds of trapped ions , 2015, Science.
[32] N. Laflorencie,et al. Quantum entanglement in condensed matter systems , 2015, 1512.03388.
[33] M. Rispoli,et al. Measuring entanglement entropy in a quantum many-body system , 2015, Nature.
[34] H. Iguchi,et al. Rényi Entropy and the Thermodynamic Stability of Black Holes , 2015, 1511.06963.
[35] Jeong San Kim,et al. Negativity and strong monogamy of multiparty quantum entanglement beyond qubits , 2015, 1508.07673.
[36] B. Spagnolo,et al. Quantum control and long-range quantum correlations in dynamical Casimir arrays , 2015, 1501.07536.
[37] I. V. Inlek,et al. Modular entanglement of atomic qubits using photons and phonons , 2014, Nature Physics.
[38] A. Dehghani,et al. Generalized su(1,1) coherent states for pseudo harmonic oscillator and their nonclassical properties , 2013, 1404.3277.
[39] I. Chuang,et al. Quantum computation and quantum information , 2020 .
[40] A S Sørensen,et al. Optomechanical transducers for long-distance quantum communication. , 2010, Physical review letters.
[41] A. Pinzul,et al. Thermodynamics of the quantum su(1, 1) Landau–Lifshitz model , 2010, 1001.5450.
[42] A. Dehghani,et al. Approach of the associated Laguerre functions to the su(1,1) coherent states for some quantum solvable models , 2009 .
[43] M. Plenio. Logarithmic negativity: a full entanglement monotone that is not convex. , 2005, Physical review letters.
[44] S. Luo. Wigner-Yanase skew information vs. quantum Fisher information , 2003 .
[45] E. Wigner,et al. INFORMATION CONTENTS OF DISTRIBUTIONS. , 1963, Proceedings of the National Academy of Sciences of the United States of America.
[46] William K. Wootters,et al. Entanglement of formation and concurrence , 2001, Quantum Inf. Comput..