Quantum Correlations, Nuclearity, and Spacetime Curvature

被引:0
作者
R. Schumann
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来源
Letters in Mathematical Physics | 1999年 / 47卷
关键词
quantum field theory; gravitation; Bell's inequalities; nuclearity.;
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摘要
It is proved for a Haag–Araki–Kastler quantum field theory, that gravitation reduces the correlations in the vacuum state. Secondly, we prove Bell's inequalities by nuclearity assumptions. The so-called ε-content of certain compact mappings restricts the size of the set of measurements which violate Bell's inequalities.
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页数:16
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[1]  
Summers S. J.(1995)On Bell's inequalities and algebraic invariants Lett. Math. Phys. 33 321-334
[2]  
Werner R. F.(1985)The vacuum violates Bell's inequalities Phys. Lett. A 110 257-259
[3]  
Summers S. J.(1988)A remark on Bell's inequality and decomposable normal states Lett. Math. Phys. 15 27-29
[4]  
Werner R. F.(1985)A remark on the cluster property Comm. Math. Phys. 97 461-464
[5]  
Raggio G. A.(1991)Generalized nuclearity conditions and the split property in quantum field theory Lett. Math. Phys. 23 159-167
[6]  
Fredenhagen K.(1975)Particle creation by black holes Comm. Math. Phys. 43 199-220
[7]  
Buchholz D.(1993)Modular inclusion, the Hawking temperature, and quantum field theory in a curved spacetime Lett. Math. Phys. 37 145-158
[8]  
Yngvason Y.(1986)Causal independence and energy level density of states in quantum field theory Comm. Math. Phys. 106 321-343
[9]  
Hawking S. W.(1990)How small is the phase space in quantum field theory? Anal. Inst. H. Poincare 52 237-257
[10]  
Summers S. J.(1996)Operator ideals and the statistical independence in quantum field theory Lett. Math. Phys. 27 159-271