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Open Quantum Systems Decoherence
Quantum Thermodynamics
Indistinguishability of thermal and quantum fluctuations
arXiv
Authors: Sanved Kolekar, T. Padmanabhan
Year
2013
Paper ID
33008
Status
Preprint
Abstract Read
~2 min
Abstract Words
178
Citations
N/A
Abstract
The existence of Davies-Unruh temperature in a uniformly accelerated frame shows that quantum fluctuations of the inertial vacuum state appears as thermal fluctuations in the accelerated frame. Hence thermodynamic experiments cannot distinguish between phenomena occurring in a thermal bath of temperature T in the inertial frame from those in a frame accelerating through inertial vacuum with the acceleration a=2πT. We show that this indisguishability between quantum fluctuations and thermal fluctuations goes far beyond the fluctuations in the vacuum state. We show by an exact calculation, that the reduced density matrix for a uniformly accelerated observer when the quantum field is in a thermal state of temperature Tprime is symmetric between acceleration temperature T = a/(2π) and the thermal bath temperature Tprime. Thus thermal phenomena cannot distinguish whether (i) one is accelerating with a = 2πT through a bath of temperature Tprime or (ii) accelerating with a=2πTprime through a bath of temperature T. This shows that thermal and quantum fluctuations in an accelerated frame affect the observer in a symmetric manner. The implications are discussed.
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- The existence of Davies-Unruh temperature in a uniformly accelerated frame shows that quantum fluctuations of the inertial vacuum state appears as thermal fluctuations in the...
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