熵和纠缠度参考文献

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1、1S. Abe, et al, Physica A, 289, 157(2001)2C. Tsallis, et al., Phys.Rev.A, 63, 042104, 20013 Naudts J, Van der Straeten EA generalized quantum microcanonical ensemble JOURNAL OF STATISTICAL MECHANICS-THEORY AND EXPERIMENT : Art. No. P06015 JUN 20064 Zheng YQEntropy of Dirac field in a generalized non

2、-stationary spherically symmetric black hole with charge ACTA PHYSICA SINICA 55 (7): 3272-3276 JUL 20065 Abe STemperature of nonextensive systems: Tsallis entropy as Clausius entropy PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS 368 (2): 430-434 AUG 15 20066 Scarfone AMThermal and mechanical

3、equilibrium among weakly interacting systems in generalized thermostatistics framework PHYSICS LETTERS A 355 (4-5): 404-412 JUL 10 20067 Figueiredo A, Amato MA, da Rocha TMOn the statistical interpretation of generalized entropies PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS 367: 191-206 JUL

4、 15 20068 Suyari HMathematical structures derived from the q-multinomial coefficient in Tsallis statistics PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS 368 (1): 63-82 AUG 1 20069 Tsallis COn the extensivity of the entropy S-q, the q-generalized central limit theorem and the q-triplet PROGRES

5、S OF THEORETICAL PHYSICS SUPPLEMENT (162): 1-9 200610 Suyari HThe unique non self-referential q-canonical distribution and the physical temperature derived from the maximum entropy principle in Tsallis statistics PROGRESS OF THEORETICAL PHYSICS SUPPLEMENT (162): 79-86 200611 Bagci GB, Arda A, Sever

6、ROn the problem of constraints in nonextensive formalism: A quantum mechanical treatment INTERNATIONAL JOURNAL OF MODERN PHYSICS B 20 (14): 2085-2092 JUN 10 200612 Santamaria-Holek I, Rodriguez RFA nonequilibrium thermodynamic approach to generalized statistics for Brownian motion PHYSICA A-STATISTI

7、CAL MECHANICS AND ITS APPLICATIONS 366 (1): 141-148 JUL 1 200613 Simovici DA, Jaroszewicz SGeneralized conditional entropy and a metric splitting criterion for decision trees LECTURE NOTES IN ARTIFICIAL INTELLIGENCE 3918: 35-44 200614 Emparan RBlack hole entropy as entanglement entropy: a holographi

8、c derivation JOURNAL OF HIGH ENERGY PHYSICS (6): Art. No. 012 JUN 200615 Das S, Shankaranarayanan SHow robust is the entanglement entropy-area relation? PHYSICAL REVIEW D 73 (12): Art. No. 121701 JUN 200616 Fursaev DVEntanglement entropy in critical phenomena and analog models of quantum gravity PHY

9、SICAL REVIEW D 73 (12): Art. No. 124025 JUN 200617 Ryu S, Hatsugai YEntanglement entropy and the Berry phase in the solid state PHYSICAL REVIEW B 73 (24): Art. No. 245115 JUN 200618 Hostens E, Dehaene J, De Moor BAsymptotic adaptive bipartite entanglement-distillation protocol PHYSICAL REVIEW A 73 (

10、6): Art. No. 062337 JUN 200619 Fursaev DVEntanglement and gravitational physics JOURNAL OF PHYSICS A-MATHEMATICAL AND GENERAL 39 (21): 6385-6391 MAY 26 2006Abstract. It is argued that the entanglement entropy in condensed matter systems can be used to study different aspects of quantum gravity, such

11、 as universality of the low-energy physics, the renormalization group behaviour of the gravitational coupling and the statistical meaning of the BekensteinHawking entropy.20 Xiong HN, Hong G, Jian J, et al.The relation between the entanglement of two atoms and the entanglement of two-mode fields ACT

12、A PHYSICA SINICA 55 (6): 2720-2725 JUN 200621 Abd Al-Kader GMEntropy and entanglement of the superpositions of displaced Fock states with a two-level atom INTERNATIONAL JOURNAL OF MODERN PHYSICS B 20 (11-13): 1269-1279 Part 1 Sp. Iss. SI MAY 20 200622 Zukarnain ZA, Konstadopoulou A, Vourdas AMeasure

13、ments and correlations in tri-partite systems INTERNATIONAL JOURNAL OF MODERN PHYSICS B 20 (11-13): 1551-1563 Part 1 Sp. Iss. SI MAY 20 200623 Myung YSEntanglement system, Casimir energy and black hole PHYSICS LETTERS B 636 (6): 324-329 MAY 25 200624 Liao XP, Fang MF, Zhou QPQuantum entanglement in

14、the SU(1,1)-related coherent fields interacting with a moving atom PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS 365 (2): 351-359 JUN 15 200625 Sharma SS, Sharma NKDynamics of tripartite entanglement PHYSICA SCRIPTA T118: 272-275 2005Maximally entangled states are of utmost importance to quan

15、tum communication, dense coding, and quantum teleportation. With a trapped ion placed inside a high finesse optical cavity, interacting with field of an external laser and quantized cavity field, a scheme to generate a maximally entangled three qubit GHZ state, is proposed. The dynamics of tripartit

16、e entanglement is investigated, using negativity as an entanglement measure and linear entropy as a measure of mixedness of a state. It is found that (a) the number of modes available to the subsystem determines the maximum entanglement of a subsystem, b) at entanglement maxima and minima, linear entropy and negativity uniquely determine the nature of state, but the two measures do not induce the same ordering of states, and c) for a s

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