arXiv Open Access 2018

Polarized Proton Beams from Laser-induced Plasmas

Anna Hützen Johannes Thomas Jürgen Böker Ralf Engels Ralf Gebel +5 lainnya
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Abstrak

We report on the concept of an innovative source to produce polarized proton/deuteron beams of a kinetic energy up to several GeV from a laser-driven plasma accelerator. Spin effects have been implemented into the PIC simulation code VLPL to make theoretical predictions about the behavior of proton spins in laser-induced plasmas. Simulations of spin-polarized targets show that the polarization is conserved during the acceleration process. For the experimental realization, a polarized HCl gas-jet target is under construction using the fundamental wavelength of a Nd:YAG laser system to align the HCl bonds and simultaneously circular polarized light of the fifth harmonic to photo-dissociate, yielding nuclear polarized H atoms. Subsequently, their degree of polarization is measured with a Lamb-shift polarimeter. The final experiments, aiming at the first observation of a polarized particle beam from laser-generated plasmas, will be carried out at the 10 PW laser system SULF at SIOM/Shanghai.

Penulis (10)

A

Anna Hützen

J

Johannes Thomas

J

Jürgen Böker

R

Ralf Engels

R

Ralf Gebel

A

Andreas Lehrach

A

Alexander Pukhov

T

T. Peter Rakitzis

D

Dimitris Sofikitis

M

Markus Büscher

Format Sitasi

Hützen, A., Thomas, J., Böker, J., Engels, R., Gebel, R., Lehrach, A. et al. (2018). Polarized Proton Beams from Laser-induced Plasmas. https://arxiv.org/abs/1810.02247

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Tahun Terbit
2018
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en
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arXiv
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Open Access ✓