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April 19, 2026High Power Laser Science and Engineering0 citationsOpen Access

Preservation of 3 He ion polarization after laser-driven acceleration in plasma

CZC. ZhengPFP. FedoretsZCZ. Chitgar

Key Points

  • The research aims to experimentally confirm the preservation of nuclear spin alignment in plasmas during acceleration processes.
  • Utilized a polarized 3 He target
  • Heated target with a petawatt (PW) laser pulse
  • Observed effects after acceleration to MeV energies
  • Investigated the mechanism of Coulomb explosion in plasma channels
  • Evidence supports the maintenance of nuclear polarization post-acceleration
  • Findings align with theoretical predictions
  • Demonstrates potential for polarized fusion applications

Abstract

The preservation of nuclear spin alignment in plasmas is a prerequisite for important applications, such as energy productionthroughpolarized fusion or the acceleration of polarized particle beams.Although this conservation property has been the basis of numerous theoretical papers, it has never been experimentally confirmed.Here, we report on first experimental data from a polarized 3 He target heated by a PW laser pulse, showing evidence consistent with the persistence of nuclear polarization after acceleration to MeV energies via Coulomb explosion of a plasma channel.Our results confirm the theoretically established concept of using pre-polarized targets for experiments in high-power laser facilities.

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Cite This Study

Zheng et al. (2026) studied this question.

synapsesocial.com/papers/69e472d8010ef96374d8ed19https://doi.org/10.1017/hpl.2026.10140
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