On parallel laser beam merger in plasmas

Author:

Lezhnin K. V.1ORCID,Qu Kenan2ORCID,Fisch N. J.2ORCID,Bulanov S. V.34ORCID

Affiliation:

1. Princeton Plasma Physics Laboratory 1 , 100 Stellarator Rd., Princeton, New Jersey 08540, USA

2. Department of Astrophysical Sciences, Princeton University 2 , Princeton, New Jersey 08544, USA

3. ELI Beamlines Facility, The Extreme Light Infrastructure ERIC 3 , Za Radnicí 835, Dolní Břežany 25241, Czech Republic

4. National Institutes for Quantum and Radiological Science and Technology (QST), Kansai Photon Science Institute 4 , Kyoto 619-0215, Japan

Abstract

Self-focusing instability is a well-known phenomenon of nonlinear optics, which is of great importance in the field of laser–plasma interactions. Self-focusing instability leads to beam focusing and, consequently, breakup into multiple laser filaments. The majority of applications tend to avoid a laser filamentation regime due to its detrimental role on laser spot profile and peak intensity. In our work, using nonlinear Schrödinger equation solver and particle-in-cell simulations, we address the problem of interaction of multiple parallel beams in plasmas. We consider both non-relativistic and moderately relativistic regimes and demonstrate how the physics of parallel beam interaction transitions from the familiar self- and mutual-focusing instabilities in the non-relativistic regime to a moderately relativistic regime, where an analytical description of filament interaction is not available.

Funder

Princeton Plasma Physics Laboratory

Publisher

AIP Publishing

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