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Fluctuation theorem between non-equilibrium states in an RC circuit.

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Granger, Leo and Mehlis, J. and Roldan, E and Ciliberto, S. and Kantz, H. (2015) Fluctuation theorem between non-equilibrium states in an RC circuit. New journal of physics, 17 . ISSN 1367-2630

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Official URL: http://dx.doi.org/10.1088/1367-2630/17/6/065005




Abstract

Fluctuation theorems impose constraints on the probability of observing negative entropy production in small systems driven out of equilibrium. The range of validity of fluctuation theorems has been extensively tested for transitions between equilibrium and non-equilibrium stationary states, but not between general non-equilibrium states. Here we report an experimental verification of the detailed fluctuation theorem for the total amount of entropy produced in the isothermal transition between two non-equilibrium states. The experimental setup is a parallel RC circuit driven by an alternating current. We investigate the statistics of the heat released, of the variation of the entropy of the system, and of the entropy produced for processes of different durations. We show that the fluctuation theorem is satisfied with high accuracy for current drivings at different frequencies and different amplitudes.


Item Type:Article
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©2015 IOP Publishing Ltd.
LG acknowledges the Max-Planck-Institut fur Physik komplexer Systeme for its hospitality. LG and ER acknowledge financial support from Grant ENFASIS (FIS2011-22644) and TerMic (FIS2014-52486-R) from the Spanish Government. SC also acknowledges financial support from ERC project OUTEFLUCOP.

Uncontrolled Keywords:Free-energy differences; Entropy production; 2nd law; Systems; Thermodynamics; Equality; Equilibrium; Violations
Subjects:Sciences > Physics > Nuclear physics
ID Code:33924
Deposited On:05 Nov 2015 18:27
Last Modified:10 Dec 2018 14:57

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