Evolution of the entanglement, photon statistics and quantum Fisher information of a single qubit parity deformed JCM
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[1] Jun Li,et al. Entanglement-Enhanced Quantum Metrology in Colored Noise by Quantum Zeno Effect. , 2022, Physical review letters.
[2] W. Ye,et al. Improving Entanglement of Even Entangled Coherent States Via Superposition of Number-Conserving Operations , 2022, SSRN Electronic Journal.
[3] M. Y. Abd-Rabbou,et al. The orthogonality speed of two-qubit state interacts locally with spin chain in the presence of Dzyaloshinsky–Moriya interaction , 2021, 2102.03196.
[4] H. Vinck-Posada,et al. Entanglement generation between two solid-state qubits mediated by microwave photons , 2020 .
[5] T. Ozawa,et al. Quantum Fisher information measurement and verification of the quantum Cramér–Rao bound in a solid-state qubit , 2020, npj Quantum Information.
[6] S. Luo,et al. Converting nonclassicality to quantum correlations via beamsplitters , 2020, EPL (Europhysics Letters).
[7] M. Y. Abd-Rabbou,et al. Suppressing the information losses of accelerated qubit–qutrit system , 2019, International Journal of Quantum Information.
[8] M. Y. Abd-Rabbou,et al. Restraining the decoherence of accelerated qubit–qutrit system via local Markovian channels , 2019, Physica Scripta.
[9] H. Ng,et al. Quantum Fisher Information and Tomographic Entropy of a Single Qubit in Excited Binomial and Negative Binomial Distributions , 2019, Journal of Russian Laser Research.
[10] S. Abdel-Khalek,et al. Entanglement and physical attributes of the interaction between two SC-qubits and thermal field in the presence of a magnetic field , 2019, Microelectron. J..
[11] S. Abdel-Khalek,et al. Effect of Time Dependent Coupling on the Dynamical Properties of the Nonlocal Correlation Between Two Three-Level Atoms , 2017 .
[12] T. Ralph,et al. Quantum correlations and global coherence in distributed quantum computing , 2017, Physical Review A.
[13] 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 .
[14] A. Dehghani,et al. Parity Deformed Jaynes-Cummings Model: “Robust Maximally Entangled States” , 2016, Scientific Reports.
[15] A. Dehghani,et al. Even and odd Wigner negative binomial states: Nonclassical properties , 2015 .
[16] Sayed Abdel-Khalek,et al. Quantum Entanglement and Geometric Phase of Two Moving Two-Level Atoms , 2015, Open Syst. Inf. Dyn..
[17] Lorenzo Maccone,et al. Using entanglement against noise in quantum metrology. , 2014, Physical review letters.
[18] David Jennings,et al. Description of quantum coherence in thermodynamic processes requires constraints beyond free energy , 2014, Nature Communications.
[19] Sayed Abdel-Khalek,et al. Quantum Fisher information for moving three-level atom , 2013, Quantum Inf. Process..
[20] J. Åberg. Catalytic coherence. , 2013, Physical review letters.
[21] F. F. Fanchini,et al. Quantum correlations between each qubit in a two-atom system and the environment in terms of interatomic distance , 2012, 1205.1021.
[22] F. Nori,et al. From blockade to transparency: Controllable photon transmission through a circuit-QED system , 2012, 1203.6419.
[23] K. Berrada,et al. Quantum Fisher information for a single qubit system , 2012 .
[24] K. Berrada,et al. Quantum Fisher information for a single qubit system , 2012, The European Physical Journal D.
[25] A. Houck,et al. Dispersive photon blockade in a superconducting circuit. , 2010, Physical review letters.
[26] Franco Nori,et al. Testing nonclassicality in multimode fields: A unified derivation of classical inequalities , 2010, 1004.3182.
[27] Vlatko Vedral,et al. Quantifying entanglement in macroscopic systems , 2008, Nature.
[28] Thierry Paul,et al. Quantum computation and quantum information , 2007, Mathematical Structures in Computer Science.
[29] S. Lloyd,et al. Quantum-Enhanced Measurements: Beating the Standard Quantum Limit , 2004, Science.
[30] O. Barndorff-Nielsen,et al. On quantum statistical inference , 2003, quant-ph/0307189.
[31] P. Knight,et al. Preparation of nonclassical states in cavities with a moving mirror , 1997, quant-ph/9708002.
[32] Jeffrey S. Haight,et al. Nonclassical effects in the photon-added thermal state , 1997 .
[33] M. Plenio,et al. Quantifying Entanglement , 1997, quant-ph/9702027.
[34] V. Man'ko,et al. Properties of squeezed-state excitations , 1996, quant-ph/9612008.
[35] V. Man'ko,et al. Non-classical properties of states generated by the excitations of even/odd coherent states of light , 1996 .
[36] A. Vidiella-Barranco,et al. Quantum Superpositions of Binomial States of Light , 1995 .
[37] Si-cong,et al. Connection of a type of q-deformed binomial state with q-spin coherent states. , 1994, Physical review. A, Atomic, molecular, and optical physics.
[38] S. Braunstein,et al. Statistical distance and the geometry of quantum states. , 1994, Physical review letters.
[39] Si-cong,et al. q-deformed binomial state. , 1994, Physical review. A, Atomic, molecular, and optical physics.
[40] A. Joshi,et al. Effects of Atomic Coherence on Collapses and Revivals in the Binomial State of the Field , 1989 .
[41] Peter L. Knight,et al. Fluctuations and entropy in models of quantum optical resonance , 1988 .
[42] M. Teich,et al. Binomial States of the Quantized Radiation Field , 1985 .
[43] Anthony J Leggett,et al. Macroscopic Quantum Systems and the Quantum Theory of Measurement (Progress in Statistical and Solid State Physics--In Commemoration of the Sixtieth Birthday of Ryogo Kubo) -- (Statistical Physics) , 1980 .
[44] A. Perelomov. Generalized coherent states and some of their applications , 1977 .
[45] R. Glauber. Coherent and incoherent states of the radiation field , 1963 .
[46] Konrad Lehnert,et al. Quantum-Enhanced Measurements: Beating the Standard Quantum Limit , 2004 .
[47] Friedrich-Schiller-Universität Jena Theoretisch-Physikalisches. Photon-added state preparation via conditional measurement on a beam splitter , 1997 .
[48] Agarwal,et al. Nonclassical properties of states generated by the excitations on a coherent state. , 1991, Physical review. A, Atomic, molecular, and optical physics.