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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Radiation effects in nuclear materials: Role of nuclear and electronic energy losses and their synergy
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Radiation effects in nuclear materials: Role of nuclear and electronic energy losses and their synergy

机译:核材料中的辐射效应:核能和电子能损及其协同作用

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摘要

Ceramic oxides and carbides are promising matrices for the immobilization and/or transmutation of nuclear wastes, cladding materials for gas-cooled fission reactors and structural components for fusion reactors. For these applications there is a need of fundamental data concerning the behavior of nuclear ceramics upon irradiation. This article is focused on the presentation of a few remarkable examples regarding ion-beam modifications of nuclear ceramics with an emphasis on the mechanisms leading to damage creation and phase transformations. Results obtained by combining advanced techniques (Rutherford backscattering spectrometry and channeling. X-ray diffraction, transmission electron microscopy, Raman spectroscopy) concern irradiations in a broad energy range (from keV to GeV) with the aim of exploring both nuclear collision (S_n) and electronic excitation (S_e) regimes. Finally, the daunting challenge of the demonstration of the existence of synergistic effects between Se and Se is tackled by discussing the healing due to intense electronic energy deposition (SH1BIEC) and by reporting results recently obtained in dual-beam irradiation (DBI) experiments.
机译:陶瓷氧化物和碳化物是用于核废料的固定和/或trans变的有前途的基质,用于气冷裂变反应堆的包层材料以及用于聚变反应堆的结构部件。对于这些应用,需要关于核陶瓷在辐射下的行为的基本数据。本文重点介绍有关核陶瓷离子束改性的一些杰出实例,重点介绍导致损伤产生和相变的机理。通过结合先进技术(卢瑟福背散射光谱和通道法,X射线衍射,透射电子显微镜,拉曼光谱)获得的结果涉及在宽能范围(从keV到GeV)中的辐照,目的是探索核碰撞(S_n)和电子激励(S_e)方案。最后,通过讨论强电子能量沉积(SH1BIEC)引起的愈合并报告最近在双束辐照(DBI)实验中获得的结果,来解决证明硒与硒之间存在协同效应的艰巨挑战。

著录项

  • 来源
  • 作者单位

    Centre de Spectrometrie Nucleaire et de Spectrometrie de Masse, CNRS-IN2P3-Universite Paris-Sud, Bat. 108, F-91405 Orsay, France;

    Centre de Spectrometrie Nucleaire et de Spectrometrie de Masse, CNRS-IN2P3-Universite Paris-Sud, Bat. 108, F-91405 Orsay, France;

    Centre de Spectrometrie Nucleaire et de Spectrometrie de Masse, CNRS-IN2P3-Universite Paris-Sud, Bat. 108, F-91405 Orsay, France;

    Centre de Spectrometrie Nucleaire et de Spectrometrie de Masse, CNRS-IN2P3-Universite Paris-Sud, Bat. 108, F-91405 Orsay, France;

    Centre de Spectrometrie Nucleaire et de Spectrometrie de Masse, CNRS-IN2P3-Universite Paris-Sud, Bat. 108, F-91405 Orsay, France;

    Centre de Spectrometrie Nucleaire et de Spectrometrie de Masse, CNRS-IN2P3-Universite Paris-Sud, Bat. 108, F-91405 Orsay, France;

    LEMHE/ICMMO, Universite Paris-Sud, Bat. 410, F-91405 Orsay, France;

    CEA, DMN/SRMP, F-91191 Gif/Yvette Cedex, France;

    CEA, DMN/SRMP, F-91191 Gif/Yvette Cedex, France;

    CEA, DMN/SRMP, F-91191 Gif/Yvette Cedex, France;

    CEA, DMN/SRMP, F-91191 Gif/Yvette Cedex, France;

    CEA, DMN/SRMP, F-91191 Gif/Yvette Cedex, France;

    CEA, DMN/SRMP, F-91191 Gif/Yvette Cedex, France;

    CIMAP, CEA-CNRS-Universite de Caen, BP 5133, F-14070 Caen Cedex 5, France;

    CIMAP, CEA-CNRS-Universite de Caen, BP 5133, F-14070 Caen Cedex 5, France;

    CIMAP, CEA-CNRS-Universite de Caen, BP 5133, F-14070 Caen Cedex 5, France;

    CEMHTI, CNRS, UPR 3079, 1 Av. Recherche Scientifique, F-45071 Orleans Cedex 2, France;

    Institute for Electronic Materials Technology, Wolczynska 133, 01-919 Warsaw, Poland,The Andrzej Soltan Institute for Nuclear Studies, PL-05-400 Swierk/Otwock, Poland;

    Institute for Electronic Materials Technology, Wolczynska 133, 01-919 Warsaw, Poland,The Andrzej Soltan Institute for Nuclear Studies, PL-05-400 Swierk/Otwock, Poland;

    Institute for Electronic Materials Technology, Wolczynska 133, 01-919 Warsaw, Poland,The Andrzej Soltan Institute for Nuclear Studies, PL-05-400 Swierk/Otwock, Poland;

    Instituto de Fisica, Universidade Federal do Rio Grande do Sul, C.P. 15051, 91501-970 Porto Alegre, Brazil;

    Department of Materials Science & Engineering, University of Tennessee, Knoxville, TN 37996, USA;

    Department of Materials Science & Engineering, University of Tennessee, Knoxville, TN 37996, USA;

    Department of Materials Science & Engineering, University of Tennessee, Knoxville, TN 37996, USA;

    Helsinki Institute of Physics, PB 43, 00014 University of Helsinki, Finland;

    Helsinki Institute of Physics, PB 43, 00014 University of Helsinki, Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nuclear materials; Ion irradiation; Damage production; Amorphization;

    机译:核材料;离子辐照;损害生产;非晶化;

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