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Ponderomotive forces, Stokes drift, and momentum in acoustic and electromagnetic waves

Konstantin Y. Bliokh1, Yury P. Bliokh2, and Franco Nori1,3

  • 1Theoretical Quantum Physics Laboratory, RIKEN Cluster for Pioneering Research, Wako-shi, Saitama 351-0198, Japan
  • 2Physics Department, Technion, Israel Institute of Technology, Haifa 320003, Israel
  • 3Physics Department, University of Michigan, Ann Arbor, Michigan 48109-1040, USA

Phys. Rev. A 106, L021503 – Published 17 August, 2022

DOI: https://doi.org/10.1103/PhysRevA.106.L021503

Abstract

We reveal universal connections between three important phenomena in classical wave physics: (i) the ponderomotive force acting on the medium particles in an oscillatory wave field, (ii) the Stokes drift of free medium particles in a wave field, and (iii) the canonical wave momentum in a medium. We analyze these phenomena for (a) longitudinal sound waves in a gas or fluid and (b) transverse electromagnetic waves interacting with electrons in a plasma or metal. In both cases, assuming quasimonochromatic yet arbitrarily inhomogeneous wave fields, the connections between the ponderomotive force, Stokes drift velocity, kinetic energy, and canonical wave momentum carried by the medium particles are given by the same simple expressions. This sheds light on the nature of these phenomena, their fine interplay, and can be useful for applications to dynamical transport phenomena in various types of waves.

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