Optimal control of vibrational transitions of HCl

Nandipati, Krishna Reddy ; Kanakati, Arun Kumar (2016) Optimal control of vibrational transitions of HCl Pramana - Journal of Physics, 87 (4). Article ID 50. ISSN 0304-4289

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Official URL: http://www.ias.ac.in/describe/article/pram/087/04/...

Related URL: http://dx.doi.org/10.1007/s12043-016-1240-8

Abstract

Control of fundamental and overtone transitions of a vibration are studied for the diatomic molecule, HCl. Specifically, the results of the effect of variation of the penalty factor on the physical attributes of the system (i.e., probabilities) and pulse (i.e., amplitudes) considering three different pulse durations for each value of the penalty factor are shown and discussed. We have employed the optimal control theory to obtain infrared pulses for selective vibrational transitions. The optimization of initial guess field with Gaussian envelope, phrased as maximization of cost functional, is done using the conjugate gradient method. The interaction of the field with the molecule is treated within the semiclassical dipole approximation. The potential and the dipole moment functions used in the calculations of control dynamics are obtained from high level ab-initio calculations.

Item Type:Article
Source:Copyright of this article belongs to Indian Academy of Sciences.
Keywords:Optimal Control; HCl; Vibration Control; Laser Control
ID Code:103006
Deposited On:01 Feb 2018 12:19
Last Modified:01 Feb 2018 12:19

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