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Updated: Aug 11, 2026

Non-equilibrium Microwave Plasma for Efficient High Temperature Chemistry
Published on: August 1, 2017
Interaction of Strong Electromagnetic Waves with Unmagnetized Pair Plasmas
Navin Sridhar1,2, Emanuele Sobacchi3,4, Lorenzo Sironi5,6
1Stanford University, Department of Physics, 382 Via Pueblo Mall, Stanford, California 94305, USA.
Abstract:
We investigate analytically and numerically the interaction of strong electromagnetic waves with unmagnetized pair plasmas. We show that the interaction is governed by a single nonlinearity parameter, ϵ_{p}, defined as the ratio of the wave strength parameter to the wave frequency in units of the plasma frequency (with both frequencies measured in the plasma rest frame prior to the interaction). When ϵ_{p}<1, the number of wavelengths that propagate through the plasma without attenuation from induced Compton scattering is approximately ϵ_{p}^{-2/3}. This attenuation can imprint substructures as narrow as a few wavelengths on the pulse profile. When ϵ_{p}>1, the electromagnetic pulse acts as a relativistic piston and drives a shock into the plasma. Our results establish a framework for the interaction of strong electromagnetic waves with pair plasmas, a process relevant for intense radio pulses from neutron stars and for next-generation pair plasma experiments at multipetawatt laser facilities.
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