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JOURNALS // Regular and Chaotic Dynamics // Archive

Regul. Chaotic Dyn., 2021 Volume 26, Issue 2, Pages 165–182 (Mi rcd1109)

This article is cited in 5 papers

Special Issue: Nonlinear Dynamics in Chemical Sciences: Part II

Classical and Quantum Dynamical Manifestations of Index-2 Saddles: Concerted Versus Sequential Reaction Mechanisms

Priyanka Pandeya, Shibabrat Naikb, Srihari Keshavamurthya

a Department of Chemistry, Indian Institute of Technology, Kanpur, 208016 Uttar Pradesh, India
b School of Mathematics, University of Bristol, Fry Building, Woodland Road, BS8 1UG Bristol, United Kingdom

Abstract: The presence of higher-index saddles on a multidimensional potential energy surface is usually assumed to be of little significance in chemical reaction dynamics. Such a viewpoint requires careful reconsideration, thanks to elegant experiments and novel theoretical approaches that have come about in recent years. In this work, we perform a detailed classical and quantum dynamical study of a model two-degree-of-freedom Hamiltonian, which captures the essence of the debate regarding the dominance of a concerted or a stepwise reaction mechanism. We show that the ultrafast shift of the mechanism from a concerted to a stepwise one is essentially a classical dynamical effect. In addition, due to the classical phase space being a mixture of regular and chaotic dynamics, it is possible to have a rich variety of dynamical behavior, including a Murrell – Laidler type mechanism, even at energies sufficiently above that of the index-2 saddle. We rationalize the dynamical results using an explicit construction of the classical invariant manifolds in the phase space.

Keywords: reaction mechanisms, index-2 saddles, classical-quantum correspondence, dynamic Murrell-Laidler, invariant manifolds, concerted and sequential reactions.

MSC: 37J15, 37J45, 37M05, 37N20, 81-08, 81V55, 81Q05, 92E20

Received: 10.09.2020
Accepted: 28.10.2020

Language: English

DOI: 10.1134/S1560354721020052



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