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Unraveling the Nanoscale Segregation Mechanism in N-Doped Niobium for Enhanced SRF Performance
2024
发表期刊SMALL METHODS (IF:10.7[JCR-2023],12.1[5-Year])
ISSN2366-9608
EISSN2366-9608
卷号8期号:8
发表状态已发表
DOI10.1002/smtd.202301319
摘要

The nitrogen doping (N-doping) treatment for niobium superconducting radio-frequency (SRF) cavities is one of the key enabling technologies that support the development of more efficient future large accelerators. However, the N-doping results have diverged due to a complex chemical profile under the nitrogen-doped surface. Particularly, under industrial-scale production conditions, it is difficult to understand the underlying mechanism thus hindering performance improvement. Herein, a combination of spatially resolved and surface-sensitive approaches is employed to establish the detailed near-surface phase composition of thermally processed niobium. The results show that intermediate phase segregations, particularly the nanometric carbon-rich phase, can impede the nitridation process and limit the interactions between nitrogen and the niobium sub-surface. In comparison, the removal of the carbon-rich layer at the Nb surface leads to enhanced nitrogen binding at the Nb surface. Combining the RF test results, it is shown that the complex uniformity and grain boundary penetrations of impurity elements have a direct correlation with the mid-field quench behavior in the N-doped Nb cavities. Therefore, proper control of the nanometric intermediate phase formation in discrete thermal steps is critical in improving the ultimate performance and production yield of the Nb cavities. © 2024 Wiley-VCH GmbH.

关键词Aluminum nitride Carbon Doping (additives) Grain boundaries Nitrogen Nitrogen removal Radio waves Segregation (metallography) Surface segregation Intermediate phasis N-doped Nano scale Nanometrics Niobium cavity Nitrogen-doping Performance Radio frequency performance Segregation mechanism Superconducting radio frequency
收录类别EI
语种英语
出版者John Wiley and Sons Inc
EI入藏号20240115328659
EI主题词Niobium
EI分类号531.2 Metallography ; 549.3 Nonferrous Metals and Alloys excluding Alkali and Alkaline Earth Metals ; 711 Electromagnetic Waves ; 804 Chemical Products Generally ; 804.1 Organic Compounds ; 804.2 Inorganic Compounds ; 931.3 Atomic and Molecular Physics
原始文献类型Article in Press
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文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/348625
专题物质科学与技术学院
大科学中心_PI研究组_刘志组
物质科学与技术学院_公共科研平台_物质科学电镜平台
大科学中心_PI研究组_柳学榕组
物质科学与技术学院_硕士生
物质科学与技术学院_博士生
物质科学与技术学院_PI研究组_李军组
物质科学与技术学院_PI研究组_王竹君组
大科学中心_公共科研平台_变革性技术研发部
共同第一作者Zong, Yue; Chai, Yue
通讯作者Chen, Zhaoxi; Chen, Jinfang; Liu, Xuerong; Wang, Zhu-Jun
作者单位
1.Center for Transformative Science (CTS), ShanghaiTech University, No. 393 Huaxia Rd, Shanghai; 201210, China
2.Shanghai Advanced Research Institute (SARI), Chinese Academy of Sciences (CAS), No. 99 Haike Rd, Shanghai; 201210, China
3.School of Physical Science and Technology (SPST), ShanghaiTech University, No. 393 Huaxia Rd, Shanghai; 201210, China
第一作者单位上海科技大学
通讯作者单位上海科技大学;  物质科学与技术学院
第一作者的第一单位上海科技大学
推荐引用方式
GB/T 7714
Chen, Zhaoxi,Zong, Yue,Chai, Yue,et al. Unraveling the Nanoscale Segregation Mechanism in N-Doped Niobium for Enhanced SRF Performance[J]. SMALL METHODS,2024,8(8).
APA Chen, Zhaoxi.,Zong, Yue.,Chai, Yue.,Mengzheng, E..,He, Yulu.,...&Liu, Zhi.(2024).Unraveling the Nanoscale Segregation Mechanism in N-Doped Niobium for Enhanced SRF Performance.SMALL METHODS,8(8).
MLA Chen, Zhaoxi,et al."Unraveling the Nanoscale Segregation Mechanism in N-Doped Niobium for Enhanced SRF Performance".SMALL METHODS 8.8(2024).
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