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Published on: December 4, 2017
Dynamics of a metastable state nonlinearly coupled to a heat bath driven by external noise
Jyotipratim Ray Chaudhuri1, Debashis Barik, Suman Kumar Banik
1Department of Physics, Katwa College, Katwa, Burdwan 713130, West Bengal, India. jprc_8@yahoo.com
Abstract:
Based on a system-reservoir model, where the system is nonlinearly coupled to a heat bath and the heat bath is modulated by an external stationary Gaussian noise, we derive the generalized Langevin equation with space-dependent friction and multiplicative noise and construct the corresponding Fokker-Planck equation, valid for short correlation time, with space-dependent diffusion coefficient to study the escape rate from a metastable state in the moderate- to large-damping regime. By considering the dynamics in a model cubic potential we analyze the results numerically which are in good agreement with theoretical predictions. It has been shown numerically that enhancement of the rate is possible by properly tuning the correlation time of the external noise.
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