From the 1 of 7 linked papers with an AI index.
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Dual-pulse micronozzle acceleration of sub-GeV-class protons
D. Pan, M. Murakami
The paper proposes a dual‑pulse micronozzle scheme that phase‑locks laser‑driven protons to a quasistatic axial electric field, achieving sub‑GeV proton energies with about 20% las…
Microbubble implosions in finite hollow spheres
M. A. H. Zosa, M. Murakami
Microbubble implosion (MBI) is a recently proposed novel mechanism with many interesting and exciting potential applications. MBI predicts that the inner layers of a spherical targ…
Progress in relativistic laser-plasma interaction with kilotesla-level applied magnetic fields
K. Weichman, A. P. L. Robinson, M. Murakami +5
We report on progress in the understanding of the effects of kilotesla-level applied magnetic fields on relativistic laser-plasma interactions. Ongoing advances in magnetic-field-g…
Laser-driven electrodynamic implosion of fast ions in a thin shell
S. Yu. Guskov, Ph. Korneev, M. Murakami
Collision of laser-driven subrelativistic high density ion flows provides a way to create extremely compressed ion conglomerates and study their properties. This paper presents a t…
Generation of giga-electron-volt proton beams by micronozzle acceleration
M. Murakami, D. Balusu, S. Maruyama +2
Our proposed ion acceleration scheme, micronozzle acceleration (MNA), generates proton beams with extremely high kinetic energies on the giga-electron-volt (GeV) order. The underly…
Gigagauss magnetic field generation by bladed microtube implosion
D. Pan, M. Murakami
We demonstrate the generation of ultrahigh magnetic fields in the order of gigagauss using a bladed microtube target whose inner surface is periodically slanted in a sawtooth-like…