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January 20, 2026Scientific Reports1 citationsOpen Access

Fusion yield enhancement via secondary beam-target reactions in laser-cluster experiments

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JSJun SimSLSeongmin LeeHKH. Kim

Key Points

  • To enhance neutron yields in laser-cluster fusion through secondary beam-target interactions.
  • Conducted experiments using CD4 cluster jets surrounded by a CD2 foil.
  • Accelerated deuterons to ion temperatures of 60-100 keV through Coulomb explosion.
  • Compared neutron yields between cluster-only and cluster with secondary target setups.
  • Achieved up to 3.5 times higher neutron yields with the additional CD2 target.
  • Validated results with a time-resolved model that reproduces the observed enhancements.

Abstract

Laser-cluster fusion offers a unique compact platform for studying nuclear reactions in the sub-100 keV regime. Here we report the first experimental demonstration of secondary beam-target DD fusion reactions in laser-cluster fusion experiments by surrounding a CD4 cluster jet with a CD2 foil. Deuterons accelerated to high ion temperatures of 60-100 keV through Coulomb explosion interacted with the surrounding CD2 target, enhancing neutron yields by up to a factor of 3.5 compared with the cluster-only case. This enhancement was quantitatively reproduced by a time-resolved model, confirming the effectiveness of the additional target. Our results demonstrate a practical route to boost neutron production and to establish laser-cluster fusion as a compact platform for investigating a wider range of fusion reactions and cross-sections relevant to astrophysics.

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Cite This Study

Sim et al. (2026) studied this question.

synapsesocial.com/papers/696f1a469e64f732b51ee7dahttps://doi.org/10.1038/s41598-026-35722-z
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