Nudged Elastic Membranes for Constructing Reduced Two-Dimensional Potential Energy Surfaces

Fuente: arXiv
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Autores principales: Manoj, Uday Sankar, Drew, Nicole, Dabo, Ismaila, Muechler, Lukas
Formato: Preprint
Publicado: 2026
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author Manoj, Uday Sankar
Drew, Nicole
Dabo, Ismaila
Muechler, Lukas
author_facet Manoj, Uday Sankar
Drew, Nicole
Dabo, Ismaila
Muechler, Lukas
contents Path optimization methods have been widely used and highly successful for the analysis of chemical reactions. Yet, they can fail to capture intrinsically multidimensional features of potential energy surfaces (PES). We introduce the nudged elastic membrane method, a framework for constructing two-dimensional reduced potential-energy surfaces in chemically relevant regions of a PES using only energies and forces without requiring more costly Hessian information. The method is demonstrated for a three-dimensional prototype model and for the triplet formaldehyde molecular system. In both cases, the resulting membrane captures one-dimensional reaction-path features as well as genuinely two-dimensional structures such as a yet unreported reported second-order saddle point in the PES of triplet formaldehyde. The method further provides direct access to structures that can serve as starting points for subsequent refinement. Our results show that the method offers a practical route to exploring multidimensional PES topography beyond the single-path picture.
format Preprint
id arxiv_https___arxiv_org_abs_2604_19964
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Nudged Elastic Membranes for Constructing Reduced Two-Dimensional Potential Energy Surfaces
Manoj, Uday Sankar
Drew, Nicole
Dabo, Ismaila
Muechler, Lukas
Statistical Mechanics
Chemical Physics
Path optimization methods have been widely used and highly successful for the analysis of chemical reactions. Yet, they can fail to capture intrinsically multidimensional features of potential energy surfaces (PES). We introduce the nudged elastic membrane method, a framework for constructing two-dimensional reduced potential-energy surfaces in chemically relevant regions of a PES using only energies and forces without requiring more costly Hessian information. The method is demonstrated for a three-dimensional prototype model and for the triplet formaldehyde molecular system. In both cases, the resulting membrane captures one-dimensional reaction-path features as well as genuinely two-dimensional structures such as a yet unreported reported second-order saddle point in the PES of triplet formaldehyde. The method further provides direct access to structures that can serve as starting points for subsequent refinement. Our results show that the method offers a practical route to exploring multidimensional PES topography beyond the single-path picture.
title Nudged Elastic Membranes for Constructing Reduced Two-Dimensional Potential Energy Surfaces
topic Statistical Mechanics
Chemical Physics
url https://arxiv.org/abs/2604.19964