Paper
1 July 1997 Relative-phase interactions and decoherence of quantum states in thermal equilibriums
Tsunehiro Kobayashi
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Abstract
A decoherence mechanism in the transition from pure quantum- mechanical systems to thermodynamical systems is proposed. We see that a quantum-mechanical expression of temperature is derived and the expression for boson systems and that for fermion systems are different. An application to the calculation of change of temperatures is investigated in a quasi-static process and numerical analyses for mixing of two gases with different temperatures are carried out. Considerations in terms of ultra-power representations of nonstandard-analysis are also presented.
© (1997) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Tsunehiro Kobayashi "Relative-phase interactions and decoherence of quantum states in thermal equilibriums", Proc. SPIE 3076, Photonic Quantum Computing, (1 July 1997); https://doi.org/10.1117/12.277662
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KEYWORDS
Niobium

Oscillators

Fermions

Bosons

Temperature metrology

Mendelevium

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