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  1. 原著論文

Burst Intensification by Singularity Emitting Radiation in Laser Plasma

https://repo.qst.go.jp/records/2002855
https://repo.qst.go.jp/records/2002855
dfa4c9e2-825e-4962-92ae-16970b954d41
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2026-03-02
タイトル
タイトル Burst Intensification by Singularity Emitting Radiation in Laser Plasma
言語 en
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言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
著者 Alexander Pirozhkov

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Alexander Pirozhkov

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Esirkepov Timur

× Esirkepov Timur

Esirkepov Timur

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Pikuz Tatiana

× Pikuz Tatiana

Pikuz Tatiana

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Sagisaka Akito

× Sagisaka Akito

Sagisaka Akito

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Ogura Koichi

× Ogura Koichi

Ogura Koichi

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James Kevin Koga

× James Kevin Koga

James Kevin Koga

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Andreas Bierwage

× Andreas Bierwage

Andreas Bierwage

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Kiriyama Hiromitsu

× Kiriyama Hiromitsu

Kiriyama Hiromitsu

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Namba Shinichi

× Namba Shinichi

Namba Shinichi

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Sergey Bulanov

× Sergey Bulanov

Sergey Bulanov

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Kando Masaki

× Kando Masaki

Kando Masaki

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抄録
内容記述タイプ Abstract
内容記述 Burst Intensification by Singularity Emitting Radiation (BISER) appears as a bright temporally and spatially coherent Extreme Ultraviolet (XUV) and x-ray source driven by compact multi-terawatt femtosecond lasers in gas targets. There BISER originates from relativistic plasma singularities, so that the emission source size has a nanometer scale. The BISER x-ray yield quadratically depends on the driving laser power. BISER spectra have hundreds of electronvolt (eV) bandwidth embracing the 'water window' region (284 – 543 eV). Simulations predict that BISER pulses have durations close to the transform limit, which promises pulses shorter than the atomic unit of time (24 attoseconds). Based on the BISER brightness at ~20 terawatt laser power and the quadratic scaling, the brightness of BISER driven by petawatt-class lasers is predicted to exceed XUV free electron lasers. The BISER concept creates a new framework for a wide range of media emitting travelling waves capable of constructive interference, including acoustic and gravitational waves. Here we review the BISER experimental discovery, its explanation based on the relativistic laser plasma simulations and catastrophe theory, experimental validation of the theoretical BISER model, proposal for imaging fast moving singularities, driving laser requirements, and future prospects emphasizing the driving laser wavelength scalability and possibility of terawatt attosecond coherent x-ray pulse generation.
書誌情報 Journal of Plasma and Fusion Research

巻 102, 号 1, p. 2-25, 発行日 2026-01
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