Quasi-monoenergetic deuteron acceleration via boosted coulomb explosion by reflected picosecond laser pulse

T Tianyun Wei Z Zechen Lan Y Yasunobu Arikawa Y Yanjun Gu T Takehito Hayakawa A Alessio Morace R Ryuya Yamada K Kohei Yamanoi K Koichi Honda M Masaki Kando N Nobuhiko Nakanii S Seyed Reza Mirfayzi S Sergei Vladimirovich Bulanov A Akifumi Yogo

Abstract

Abstract 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.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 29, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

T

Tianyun Wei

Z

Zechen Lan

Y

Yasunobu Arikawa

Y

Yanjun Gu

T

Takehito Hayakawa

A

Alessio Morace

R

Ryuya Yamada

K

Kohei Yamanoi

K

Koichi Honda

M

Masaki Kando

N

Nobuhiko Nakanii

S

Seyed Reza Mirfayzi

S

Sergei Vladimirovich Bulanov

A

Akifumi Yogo