Structure of self-generated magnetic fields in laser-solid interaction from proton tomography

Fuente: arXiv
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Main Authors: Griff-McMahon, Jesse, Walsh, Christopher A., Valenzuela-Villaseca, Vicente, Malko, Sophia, McCluskey, Brendan, Lezhnin, Kirill, Landsberger, Huws, Hopkins, Laura Berzak, Fiksel, Gennady, Rosenberg, Michael J., Schaeffer, Derek B., Fox, William
Format: Preprint
Published: 2025
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author Griff-McMahon, Jesse
Walsh, Christopher A.
Valenzuela-Villaseca, Vicente
Malko, Sophia
McCluskey, Brendan
Lezhnin, Kirill
Landsberger, Huws
Hopkins, Laura Berzak
Fiksel, Gennady
Rosenberg, Michael J.
Schaeffer, Derek B.
Fox, William
author_facet Griff-McMahon, Jesse
Walsh, Christopher A.
Valenzuela-Villaseca, Vicente
Malko, Sophia
McCluskey, Brendan
Lezhnin, Kirill
Landsberger, Huws
Hopkins, Laura Berzak
Fiksel, Gennady
Rosenberg, Michael J.
Schaeffer, Derek B.
Fox, William
contents Strong magnetic fields are naturally self-generated in high-power, laser-solid interactions through the Biermann-battery mechanism. This work experimentally characterizes the 3D location and strength of these fields, rather than path-integrated quantities, through multi-view proton radiography and tomographic inversion on the OMEGA laser. We infer magnetic fields that extend several millimeters off the target surface into the hot, rarefied corona and are sufficient to strongly magnetize the plasma ($Ω_{e}τ_e \gg 1$). The data is used to validate MHD simulations incorporating recent improvements in magnetic transport modeling; we achieve reasonable agreement only with models with re-localization of transport by magnetic fields. This work provides a key demonstration of tomographic inversion in proton radiography, offering a valuable tool for investigating magnetic fields in laser-produced plasmas.
format Preprint
id arxiv_https___arxiv_org_abs_2510_14076
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Structure of self-generated magnetic fields in laser-solid interaction from proton tomography
Griff-McMahon, Jesse
Walsh, Christopher A.
Valenzuela-Villaseca, Vicente
Malko, Sophia
McCluskey, Brendan
Lezhnin, Kirill
Landsberger, Huws
Hopkins, Laura Berzak
Fiksel, Gennady
Rosenberg, Michael J.
Schaeffer, Derek B.
Fox, William
Plasma Physics
Strong magnetic fields are naturally self-generated in high-power, laser-solid interactions through the Biermann-battery mechanism. This work experimentally characterizes the 3D location and strength of these fields, rather than path-integrated quantities, through multi-view proton radiography and tomographic inversion on the OMEGA laser. We infer magnetic fields that extend several millimeters off the target surface into the hot, rarefied corona and are sufficient to strongly magnetize the plasma ($Ω_{e}τ_e \gg 1$). The data is used to validate MHD simulations incorporating recent improvements in magnetic transport modeling; we achieve reasonable agreement only with models with re-localization of transport by magnetic fields. This work provides a key demonstration of tomographic inversion in proton radiography, offering a valuable tool for investigating magnetic fields in laser-produced plasmas.
title Structure of self-generated magnetic fields in laser-solid interaction from proton tomography
topic Plasma Physics
url https://arxiv.org/abs/2510.14076