Fabrication of high-concentration Cu-doped deuterated targets for fast ignition experiments

Author:

Ikeda Tomokazu,Kaneyasu Yumi,Hosokawa Hitomi,Shigemori KeisukeORCID,Norimastu Takayoshi,Cadatal-Raduban MarilouORCID,Nagai KeijiORCID,Kojima Sadaoki,Abe Yuki,Miura Eisuke,Kitagawa Yoneyoshi,Takemura Mao,Wang Yubo,Dun Jinyuan,Guo Shuwang,Asano Shoui,Takizawa Ryunosuke,Fujioka ShinsukeORCID,Shiraga Hiroyuki,Arikawa Yasunobu,Ozaki Tetsuo,Iwamoto Akifumi,Sakagami Hitoshi,Sawada HiroshiORCID,Mori YoshitakaORCID,Yamanoi KoheiORCID

Abstract

Abstract In high-energy-density physics, including inertial fusion energy using high-power lasers, doping tracer atoms and deuteration of target materials play an important role in diagnosis. For example, a low-concentration Cu dopant acts as an x-ray source for electron temperature detection while a deuterium dopant acts as a neutron source for fusion reaction detection. However, the simultaneous achievement of Cu doping, a deuterated polymer, mechanical toughness and chemical robustness during the fabrication process is not so simple. In this study, we report the successful fabrication of a Cu-doped deuterated target. The obtained samples were characterized by inductively coupled plasma optical emission spectrometry, differential scanning calorimetry and Fourier transform infrared spectroscopy. Simultaneous measurements of Cu K-shell x-ray emission and beam fusion neutrons were demonstrated using a petawatt laser at Osaka University.

Publisher

IOP Publishing

Subject

Condensed Matter Physics,Nuclear and High Energy Physics

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