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Trapped Ion Quantum Computing Quantum Thermodynamics

Heat flow and noncommutative quantum mechanics in phase-space

arXiv
Authors: Jonas F. G. Santos

Year

2019

Paper ID

39587

Status

Preprint

Abstract Read

~2 min

Abstract Words

83

Citations

N/A

Abstract

In this work, we investigate the heat flow of two interacting quantum systems on the perspective of noncommutativity phase-space effects and show that by controlling the new constants introduced in the quantum theory, due to a deformed Heisenberg-Weyl algebra, the heat flow from the hot to the cold system may be enhanced, thus decreasing the time required to reach thermal equilibrium. We also give a brief discussion on the robustness of the second law of thermodynamics in the context of noncommutative quantum mechanics

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  • In this work, we investigate the heat flow of two interacting quantum systems on the perspective of noncommutativity phase-space effects and show that by controlling the new...

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