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Generalised Einstein Relation for Hot Brownian Motion

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arxiv 1110.3734 v2 pith:E5UV5VWV submitted 2011-10-17 cond-mat.soft

Generalised Einstein Relation for Hot Brownian Motion

classification cond-mat.soft
keywords mathrmbrownianeffectiveeinsteingeneralisedmotionnanoparticlerelation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

The Brownian motion of a hot nanoparticle is described by an effective Markov theory based on fluctuating hydrodynamics. Its predictions are scrutinized over a wide temperature range using large-scale molecular dynamics simulations of a hot nanoparticle in a Lennard-Jones fluid. The particle positions and momenta are found to be Boltzmann distributed according to distinct effective temperatures $T_\mathrm{HBM}$ and $T_\mathrm{k}$ . For $T_\mathrm{HBM}$ we derive a formally exact theoretical prediction and establish a generalised Einstein relation that links it to directly measurable quantities.

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