164 / 2025-03-15 23:51:27
Nonlinear magnification of high-intensity proton boron fusion reaction in plasma
laser-driven nuclear reaction, proton-boron fusion, dense plasma, alpha-particle diagnosis
Abstract Accepted
魏文青 / Xi'An Jiaotong University
A novel intense beam-driven scheme for high yield of the tri-alpha reaction 11B(p, α)2α was investigated. We used a foam target made of cellulose triacetate (TAC, C9H16O8) doped with boron. It was then heated volumetrically by soft X-ray radiation from a laser heated hohlraum and turned into a homogenous, and long living plasma. A picosecond laser pulse was employed to generate a high-intensity energetic proton beam via the well-known Target Normal Sheath Acceleration (TNSA) mechanism. We observed up to 1010/sr α particles per laser shot. This constitutes presently the highest yield value normalized to the laser energy on target. The measured fusion yield per proton exceeds the classical expectation of beam-target reactions by up to four orders of magnitude under high proton intensities. This enhancement could be attributed to the strong electric fields and nonequilibrium thermonuclear fusion reactions as a result of the new method. Our approach shows opportunities to pursue ignition of aneutronic fusion.
Important Date
  • Conference Date

    May 12

    2025

    to

    May 15

    2025

  • Mar 26 2025

    Draft paper submission deadline

  • Apr 30 2025

    Early Bird Registration

  • May 15 2025

    Registration deadline

Sponsored By
Institute of Applied Physics and Computational Mathematics, Beijing, China
Shaanxi Normal University, Xi’an, China
Organized By
陕西师范大学
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