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Reevaluation of radiation reaction and consequences for light-matter interactions at the nanoscale.

Authors :
Scalora M
Vincenti MA
de Ceglia D
Akozbek N
Bloemer MJ
Roso L
Trull J
Cojocaru C
Haus JW
Source :
Optics express [Opt Express] 2018 Jul 09; Vol. 26 (14), pp. 18055-18063.
Publication Year :
2018

Abstract

In the context of electromagnetism and nonlinear optical interactions, damping is generally introduced as a phenomenological, viscous term that dissipates energy, proportional to the temporal derivative of the polarization. Here, we follow the radiation reaction method presented in [Phys. Lett. A157, 217 (1991)], which applies to non-relativistic electrons of finite size, to introduce an explicit reaction force in the Newtonian equation of motion, and derive a hydrodynamic equation that offers new insight on the influence of damping in generic plasmas, metal-based and/or dielectric structures. In these settings, we find new damping-dependent linear and nonlinear source terms that suggest the damping coefficient is proportional to the local charge density and nonlocal contributions that stem from the spatial derivative of the magnetic field. We discuss the conditions that could modify both linear and nonlinear electromagnetic responses.

Details

Language :
English
ISSN :
1094-4087
Volume :
26
Issue :
14
Database :
MEDLINE
Journal :
Optics express
Publication Type :
Academic Journal
Accession number :
30114084
Full Text :
https://doi.org/10.1364/OE.26.018055