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Cooling an Optically Trapped Ultracold Fermi Gas by Periodical Driving
Published on: March 30, 2017
Escape rate from a metastable state weakly interacting with 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 reservoir is driven by an external stationary, Gaussian noise with arbitrary decaying correlation function, we study the escape rate from a metastable state in the energy diffusion regime. For the open system we derive the Fokker-Planck equation in the energy space and subsequently calculate the generalized non-Markovian escape rate from a metastable well in the energy diffusion domain. By considering the dynamics in a model cubic potential we show that the results obtained from numerical simulation are in good agreement with the theoretical prediction. It has been also shown numerically that the well-known turnover feature can be restored from our model.
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