Kilo-Tesla magnetic fields in the magnetic vortex acceleration regime – a prospective experimental diagnostic
ORAL
Abstract
Here, we propose an experimental diagnostic to measure the temporal (sub-ps) and spatial distribution of kilo-Tesla magnetic fields generated at the rear side of NCD targets under single-pulse, ultrashort (45 fs) laser-plasma interactions. This technique is based on the Faraday rotation induced on an initially linearly polarized probe beam propagating through a strong parallel magnetic field in a plasma and on the imaging of the associated projected polarization states. 2D simulations were performed using relativistic particle-in-cell code to numerically explore the magnetic field generated under MVA regime in boron-like-fusion targets and the resulting Faraday rotation. The simulation and analytical results demonstrate that this diagnostic may be experimentally implemented in existing laser facilities.
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Presenters
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Bruno Gonzalez-Izquierdo
Marvel Fusion GmbH, Blumenstraße 28, 80331 Munich, Germany, Marvel Fusion
Authors
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Bruno Gonzalez-Izquierdo
Marvel Fusion GmbH, Blumenstraße 28, 80331 Munich, Germany, Marvel Fusion
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Marius Schollmeier
Marvel Fusion GmbH, Blumenstraße 28, 80331 Munich, Germany, Marvel Fusion GmbH, Marvel Fusion
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Michael Touati
Marvel Fusion
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Anja Schuster
Marvel Fusion GmbH, Blumenstraße 28, 80331 Munich, Germany, Marvel Fusion
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Peter Fischer
Marvel Fusion
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Valeriu Scutelnic
Marvel Fusion GmbH, Blumenstraße 28, 80331 Munich, Germany, Marvel Fusion
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Georg Korn
Marvel Fusion GmbH, Blumenstraße 28, 80331 Munich, Germany, Marvel Fusion GmbH, Marvel Fusion
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Sven Steinke
Marvel Fusion GmbH, Blumenstraße 28, 80331 Munich, Germany, Marvel Fusion GmbH, Marvel Fusion