Controlling Tunneling Oscillation and Quantum Localization in an Asymmetric Double-Well Potential: A Bohmian Perspective

Chakraborty, Bhrigu ; Jha, Ruchi ; Kar, Susmita ; Chattaraj, Pratim Kumar (2022) Controlling Tunneling Oscillation and Quantum Localization in an Asymmetric Double-Well Potential: A Bohmian Perspective The Journal of Physical Chemistry A, 126 (29). pp. 4834-4847. ISSN 1089-5639

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Official URL: http://doi.org/10.1021/acs.jpca.2c03049

Related URL: http://dx.doi.org/10.1021/acs.jpca.2c03049

Abstract

The roles of spatial symmetry and strength of external time-dependent perturbation on the dynamics of a quantum particle, initially localized in one of the wells of an asymmetric double-well potential are studied using the recently developed techniques incorporating quantum theory of motion and time-dependent Fourier grid Hamiltonian methods. The model used here includes a mimic of the related experimental situations which is considered as a perturbation to the static double-well potential. Analysis of localized and delocalized phase space structures and corresponding time-profile of tunneling probability reveal the recipe toward controlling the tunneling oscillations by modulating the parameters of applied perturbation. A study on a stochastic pulsating potential also reveals the root to the quantum localization, even in moderate field strength.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society
ID Code:133262
Deposited On:27 Dec 2022 09:53
Last Modified:27 Dec 2022 09:53

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