Sustained interpenetrating plasma flows for the investigation of late time kinetic instability evolution

Fuente: arXiv
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Bibliographic Details
Main Authors: Sutcliffe, G. D., Vanderloo, N., Bruulsema, C., Valenzuela-Villaseca, V., Swadling, G., Zhou, M., Bret, A., Li, C. K., Ross, J. S., Moody, J.
Format: Preprint
Published: 2026
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author Sutcliffe, G. D.
Vanderloo, N.
Bruulsema, C.
Valenzuela-Villaseca, V.
Swadling, G.
Zhou, M.
Bret, A.
Li, C. K.
Ross, J. S.
Moody, J.
author_facet Sutcliffe, G. D.
Vanderloo, N.
Bruulsema, C.
Valenzuela-Villaseca, V.
Swadling, G.
Zhou, M.
Bret, A.
Li, C. K.
Ross, J. S.
Moody, J.
contents Sustained collisionless interpenetrating plasma flows have been generated on the OMEGA laser facility to enable direct investigation of nonlinear evolution of fields generated by electromagnetic kinetic instabilities. FLASH simulations and Thomson scattering measurements are used to determine the plasma conditions achieved. Interpenetrating flows are observed to remain collisionless for at least 11 ns, longer than any prior OMEGA experiment, supporting the growth and nonlinear saturation of the Weibel instability. Resulting magnetic fields are measured using proton radiography. This work establishes a unique platform for late-time filament evolution measurements.
format Preprint
id arxiv_https___arxiv_org_abs_2605_10773
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Sustained interpenetrating plasma flows for the investigation of late time kinetic instability evolution
Sutcliffe, G. D.
Vanderloo, N.
Bruulsema, C.
Valenzuela-Villaseca, V.
Swadling, G.
Zhou, M.
Bret, A.
Li, C. K.
Ross, J. S.
Moody, J.
Plasma Physics
Sustained collisionless interpenetrating plasma flows have been generated on the OMEGA laser facility to enable direct investigation of nonlinear evolution of fields generated by electromagnetic kinetic instabilities. FLASH simulations and Thomson scattering measurements are used to determine the plasma conditions achieved. Interpenetrating flows are observed to remain collisionless for at least 11 ns, longer than any prior OMEGA experiment, supporting the growth and nonlinear saturation of the Weibel instability. Resulting magnetic fields are measured using proton radiography. This work establishes a unique platform for late-time filament evolution measurements.
title Sustained interpenetrating plasma flows for the investigation of late time kinetic instability evolution
topic Plasma Physics
url https://arxiv.org/abs/2605.10773