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PIC simulations of laser-induced proton acceleration by resonant nanoantennas for fusion

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arxiv 2306.13445 v2 pith:BPWYREP3 submitted 2023-06-23 physics.plasm-ph

classification physics.plasm-ph
keywords fusionlasertargetprotonsresonatingaccelerationelectronsenergetic
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Rapid recent development in laser technology and methods learned from relativistic heavy ion physics led to new possibilities for fusion. Using a Hydrogen rich UDMA-TEGDMA polymer fusion target, laser irradiation ionizes the target. If we implant nanoantennas into the target resonating to the laser light frequency massive number of electrons of the ionized plasma resonate within the nanoantenna forming a so called nanoplasmonic wave. Our kinetic model simulation with a Hydrogen target indicates that the field of these resonating electrons attracts and accelerates the surrounding protons of the plasma to multi-MeV energy. These protons are then energetic enough to achieve nuclear transmutation and fusion reactions. Without resonating nanoantenna there is no such collective proton acceleration, no energetic protons, and nuclear reactions at 30 mJ laser pulse energy.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Directed Nano-antennas for Laser Fusion

    physics.plasm-ph 2026-01 reject novelty 6.0 of 10

    Directed gold nanorod antennas in a target redirect and enhance laser-driven proton acceleration, but the claimed whole-volume fusion ignition is not demonstrated.

  2. Indication of p + 11B Reaction in Laser Induced Nanofusion Experiment

    physics.plasm-ph 2024-11 reject novelty 6.0 of 10

    A new nanoplasmonic laser target with embedded boron shows a proton-count dip at the p+B resonance and alpha tracks, claimed as evidence of fusion.

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