We analyze heat and work fluctuations in the gravitational wave detector AURIGA, modeled as a macroscopic electromechanical oscillator in contact with a thermostat and cooled by an active feedback system. The oscillator is driven to a steady state by the feedback cooling, equivalent to a viscous force. The experimentally measured fluctuations are in agreement with our theoretical analysis based on a stochastically driven Langevin system. The asymmetry of the fluctuations of the absorbed heat characterizes the oscillator’s nonequilibrium steady state and reveals the extent to which a feedback cooled system departs from equilibrium in a statistical mechanics perspective.

Nonequilibrium steady state fluctuations in actively cooled resonators

M Bonaldi;A Vinante;P Falferi;
2009

Abstract

We analyze heat and work fluctuations in the gravitational wave detector AURIGA, modeled as a macroscopic electromechanical oscillator in contact with a thermostat and cooled by an active feedback system. The oscillator is driven to a steady state by the feedback cooling, equivalent to a viscous force. The experimentally measured fluctuations are in agreement with our theoretical analysis based on a stochastically driven Langevin system. The asymmetry of the fluctuations of the absorbed heat characterizes the oscillator’s nonequilibrium steady state and reveals the extent to which a feedback cooled system departs from equilibrium in a statistical mechanics perspective.
2009
Istituto di fotonica e nanotecnologie - IFN
103
010601
010604
AURIGA
electromechanical oscillator
feedback cooling
nonequilibrium steady state
statistical mechanics
DOI: 10.1103/PhysRevLett.103.010601
3
info:eu-repo/semantics/article
262
M. Bonaldi; L. Conti; P. De Gregorio; L. Rondoni; G. Vedovato; A. Vinante; M. Bignotto; M. Cerdonio; P. Falferi; N. Liguori; S. Longo; R. Mezzena; A. ...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/153770
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