Injected Power Fluctuations in 1D Dissipative Systems

Physics – Condensed Matter – Statistical Mechanics

Scientific paper

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18 pages, 8 figures

Scientific paper

10.1007/s10955-007-9380-3

Using fermionic techniques, we compute exactly the large deviation function (ldf) of the time-integrated injected power in several one-dimensional dissipative systems of classical spins. The dynamics are T=0 Glauber dynamics supplemented by an injection mechanism, which is taken as a Poissonian flipping of one particular spin. We discuss the physical content of the results, specifically the influence of the rate of the Poisson process on the properties of the ldf.

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