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Effective action for dissipative and nonholonomic...
Journal article

Effective action for dissipative and nonholonomic systems

Abstract

We show that the action of a dynamical system can be supplemented by an effective action for its environment to reproduce arbitrary coordinate dependent ohmic dissipation and gyroscopic forces. The action is a generalization of the harmonic bath model and describes a set of massless interacting scalar fields in an auxiliary space coupled to the original system at the boundary. A certain limit of the model implements nonholonomic constraints. In the case of dynamics with nonlinearly realized symmetries the effective action takes the form of a two-dimensional nonlinear σ model. It provides a basis for application of path integral methods to general dissipative and nonholonomic systems.

Authors

Besharat A; Radkovski J; Sibiryakov S

Journal

Physical Review E, Vol. 109, No. 5,

Publisher

American Physical Society (APS)

Publication Date

May 1, 2024

DOI

10.1103/physreve.109.l052103

ISSN

2470-0045

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