Finding NHIM: identifying high dimensional phase space structures in reaction dynamics using Lagrangian descriptors

From MaRDI portal
Publication:2207083

DOI10.1016/j.cnsns.2019.104907OpenAlexW2924656406WikidataQ127574890 ScholiaQ127574890MaRDI QIDQ2207083

Víctor J. García-Garrido, Stephen Wiggins, Shibabrat Naik

Publication date: 22 October 2020

Published in: Communications in Nonlinear Science and Numerical Simulation (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/1903.10264




Related Items (15)

Lagrangian descriptors and the action integral of classical mechanicsTilting and Squeezing: Phase Space Geometry of Hamiltonian Saddle-Node Bifurcation and its Influence on Chemical Reaction DynamicsGeometric Parametrisation of Lagrangian Descriptors for 1 Degree-of-Freedom SystemsAn Extension of Discrete Lagrangian Descriptors for Unbounded MapsUsing Lagrangian Descriptors to Uncover Invariant Structures in Chesnavich’s Isokinetic Model with Application to RoamingDetection of Dynamical Matching in a Caldera Hamiltonian System Using Lagrangian DescriptorsExploring isomerization dynamics on a potential energy surface with an index-2 saddle using Lagrangian descriptorsVisualizing the phase space of the HeI\(_2\) van der Waals complex using Lagrangian descriptorsPainting the phase space of dissipative systems with Lagrangian descriptorsDifferential correction and arc-length continuation applied to boundary value problems: examples based on snap-through of circular archesTransport and roaming on the double van der Waals potential energy surfaceInvestigating the stability and accuracy of a classical mapping variable Hamiltonian for nonadiabatic quantum dynamicsBifurcation study on a degenerate double van der Waals cirque potential energy surface using Lagrangian descriptorsControlling reaction dynamics in chemical model systems through external drivingReactive islands for three degrees-of-freedom Hamiltonian systems



Cites Work


This page was built for publication: Finding NHIM: identifying high dimensional phase space structures in reaction dynamics using Lagrangian descriptors