dorsal/arxiv
View SchemaQuantum decoherence and an adiabatic process in macroscopic and mesoscopic systems
| Authors | Stefan V. Mashkevich, Vladimir S. Mashkevich |
|---|---|
| Categories | |
| ArXiv ID | quant-ph/9510026 |
| URL | https://arxiv.org/abs/quant-ph/9510026 |
Abstract
Quantum decoherence is of primary importance for relaxation to an equilibrium distribution and, accordingly, for equilibrium processes. We demonstrate how coherence breaking implies evolution to a microcanonical distribution (``microcanonical postulate'') and, on that ground, consider an adiabatic process, in which there is no thermostat. We stress its difference from a zero-polytropic process, i.e., a process with zero heat capacity but involving a thermostat. We find the distribution for the adiabatic process and show that (i) in the classical limit this distribution is canonical, (ii) for macroscopic systems, the mean values of energy for adiabatic and zero-polytropic processes are the same, but its fluctuations are different, and (iii) in general, adiabatic and zero-polytropic processes are different, which is particularly essential for mesoscopic systems; for those latter, an adiabatic process is in general irreversible.
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"abstract": "Quantum decoherence is of primary importance for relaxation to an equilibrium\ndistribution and, accordingly, for equilibrium processes. We demonstrate how\ncoherence breaking implies evolution to a microcanonical distribution\n(``microcanonical postulate\u0027\u0027) and, on that ground, consider an adiabatic\nprocess, in which there is no thermostat. We stress its difference from a\nzero-polytropic process, i.e., a process with zero heat capacity but involving\na thermostat. We find the distribution for the adiabatic process and show that\n(i) in the classical limit this distribution is canonical, (ii) for macroscopic\nsystems, the mean values of energy for adiabatic and zero-polytropic processes\nare the same, but its fluctuations are different, and (iii) in general,\nadiabatic and zero-polytropic processes are different, which is particularly\nessential for mesoscopic systems; for those latter, an adiabatic process is in\ngeneral irreversible.",
"arxiv_id": "quant-ph/9510026",
"authors": [
"Stefan V. Mashkevich",
"Vladimir S. Mashkevich"
],
"categories": [
"quant-ph",
"adap-org",
"nlin.AO"
],
"title": "Quantum decoherence and an adiabatic process in macroscopic and mesoscopic systems",
"url": "https://arxiv.org/abs/quant-ph/9510026"
},
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