Confinement accelerates wall-normal first-passage times for colloids by increasing the chance of large non-Gaussian displacements.
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A unified geometric variational formulation based on nonlinear nonholonomic constraints derives a thermodynamically consistent stochastic thermodynamics with entropy as a dynamical variable and naturally emerging fluctuation theorems.
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First-passage statistics of confined colloids
Confinement accelerates wall-normal first-passage times for colloids by increasing the chance of large non-Gaussian displacements.
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Variational formulation of stochastic thermodynamics: Finite-dimensional systems
A unified geometric variational formulation based on nonlinear nonholonomic constraints derives a thermodynamically consistent stochastic thermodynamics with entropy as a dynamical variable and naturally emerging fluctuation theorems.