Issue 7, 2018

Detecting reactive islands using Lagrangian descriptors and the relevance to transition path sampling

Abstract

It has been known for sometime now that isomerization reactions, classically, are mediated by phase space structures called reactive islands (RI). RIs provide one possible route to correct for the nonstatistical effects in the reaction dynamics. In this work, we map out the reactive islands for the two dimensional Müller–Brown model potential and show that the reactive islands are intimately linked to the issue of rare event sampling. In particular, we establish the sensitivity of the so called committor probabilities, useful quantities in the transition path sampling technique, to the hierarchical RI structures. Mapping out the RI structure for high dimensional systems, however, is a challenging task. Here, we show that the technique of Lagrangian descriptors is able to effectively identify the RI hierarchy in the model system. Based on our results, we suggest that the Lagrangian descriptors can be useful for detecting RIs in high dimensional systems.

Graphical abstract: Detecting reactive islands using Lagrangian descriptors and the relevance to transition path sampling

Article information

Article type
Paper
Submitted
30 Aug 2017
Accepted
16 Jan 2018
First published
18 Jan 2018

Phys. Chem. Chem. Phys., 2018,20, 4970-4981

Detecting reactive islands using Lagrangian descriptors and the relevance to transition path sampling

S. Patra and S. Keshavamurthy, Phys. Chem. Chem. Phys., 2018, 20, 4970 DOI: 10.1039/C7CP05912D

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