Development of a radiation tolerant laser-induced breakdown spectroscopy system using a single crystal micro-chip laser for remote elemental analysis

Author:

Tamura Koji1,Nakanishi Ryuzo1ORCID,Ohba Hironori12,Karino Takahiro2,Shibata Takuya2,Taira Takunori34,Wakaida Ikuo2

Affiliation:

1. Foundational Quantum Technology Research Directorate, National Institutes for Quantum Science and Technology (QST), Takasaki, Japan

2. Collaborative Laboratories for Advanced Decommissioning Science, Japan Atomic Energy Agency (JAEA), Tokai-mura, Japan

3. Division of Research Innovation and Collaboration, Institute for Molecular Science (IMS), Okazaki, Japan

4. Laser-Driven Electron-Acceleration Technology Group, Riken SPring-8 center (RSC), Hyogo, Japan

Funder

Ministry of Economy, Trade and Industry

Publisher

Informa UK Limited

Reference41 articles.

1. The Status of Fuel Debris Retrieval [Internet]. Japan: Tokyo Electric Power Company Holdings Inc. (TEPCO). [2023 Jun 21]. Available from: https://www.tepco.co.jp/en/hd/decommission/progress/retrieval/index-e.html

2. Fukushima Daiichi fuel debris retrieval: results of aerosol characterization during laser cutting of non-radioactive corium simulants

3. Task force on research strategy for debris of Fukushima Daiichi Nuclear Power Station. Analysis of debris samples of Tokyo Electric Power Company Holdings Fukushima Daiichi Nuclear Power Station. Tokai-Mura (Jpn): Jpn At Energy Agency. 2020. (JAEA-Review. 2020-004) [in Japanese]

4. Comparison of the observed Fukushima Dai-Ichi Unit 2 debris with simulated debris from the CLADS-MADE-01 control blade degradation test

5. Step-by-step challenge of debris characterization for the decommissioning of Fukushima-Daiichi Nuclear Power Station (FDNPS)

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