Quasi-monoenergetic Deuteron Acceleration via Boosted Coulomb Explosion by Reflected Picosecond Laser Pulse

Fuente: arXiv
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Main Authors: Wei, Tianyun, Lan, Zechen, Arikawa, Yasunobu, Gu, Yanjun, Hayakawa, Takehito, Morace, Alessio, Yamada, Ryuya, Yamanoi, Kohei, Honda, Koichi, Kando, Masaki, Nobuhiko, Nakanii, Mirfayzi, Seyed Reza, Bulanov, Sergei V., Yogo, Akifumi
Format: Preprint
Published: 2025
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author Wei, Tianyun
Lan, Zechen
Arikawa, Yasunobu
Gu, Yanjun
Hayakawa, Takehito
Morace, Alessio
Yamada, Ryuya
Yamanoi, Kohei
Honda, Koichi
Kando, Masaki
Nobuhiko, Nakanii
Mirfayzi, Seyed Reza
Bulanov, Sergei V.
Yogo, Akifumi
author_facet Wei, Tianyun
Lan, Zechen
Arikawa, Yasunobu
Gu, Yanjun
Hayakawa, Takehito
Morace, Alessio
Yamada, Ryuya
Yamanoi, Kohei
Honda, Koichi
Kando, Masaki
Nobuhiko, Nakanii
Mirfayzi, Seyed Reza
Bulanov, Sergei V.
Yogo, Akifumi
contents Generation of quasi-monoenergetic ions by intense laser is one of long-standing goals in laser-plasma physics. However, existing laser-driven ion acceleration schemes often produce broad energy spectra and limited control over ion species. Here we propose the acceleration mechanism, boosted Coulomb explosion, initiated by a standing wave, which is formed in a pre-expanded plasma by the interference between a continuously incoming main laser pulse and the pulse reflected by a solid target, where the pre-expanded plasma is formed from a thin layer on the solid target by a relatively strong pre-pulse. This mechanism produces a persistent Coulomb field on the target front side with field strengths on the order of TV/m for picoseconds. We experimentally demonstrate generation of quasi-monoenergetic deuterons up to 50 MeV using an in-situ D$_2$O-deposited target. Our results show that the peak energy can be tuned by the laser pulse duration.
format Preprint
id arxiv_https___arxiv_org_abs_2504_19789
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quasi-monoenergetic Deuteron Acceleration via Boosted Coulomb Explosion by Reflected Picosecond Laser Pulse
Wei, Tianyun
Lan, Zechen
Arikawa, Yasunobu
Gu, Yanjun
Hayakawa, Takehito
Morace, Alessio
Yamada, Ryuya
Yamanoi, Kohei
Honda, Koichi
Kando, Masaki
Nobuhiko, Nakanii
Mirfayzi, Seyed Reza
Bulanov, Sergei V.
Yogo, Akifumi
Plasma Physics
High Energy Physics - Experiment
Accelerator Physics
Generation of quasi-monoenergetic ions by intense laser is one of long-standing goals in laser-plasma physics. However, existing laser-driven ion acceleration schemes often produce broad energy spectra and limited control over ion species. Here we propose the acceleration mechanism, boosted Coulomb explosion, initiated by a standing wave, which is formed in a pre-expanded plasma by the interference between a continuously incoming main laser pulse and the pulse reflected by a solid target, where the pre-expanded plasma is formed from a thin layer on the solid target by a relatively strong pre-pulse. This mechanism produces a persistent Coulomb field on the target front side with field strengths on the order of TV/m for picoseconds. We experimentally demonstrate generation of quasi-monoenergetic deuterons up to 50 MeV using an in-situ D$_2$O-deposited target. Our results show that the peak energy can be tuned by the laser pulse duration.
title Quasi-monoenergetic Deuteron Acceleration via Boosted Coulomb Explosion by Reflected Picosecond Laser Pulse
topic Plasma Physics
High Energy Physics - Experiment
Accelerator Physics
url https://arxiv.org/abs/2504.19789