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作品数:105被引量:180H指数:7
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相关机构:中国科学院西北生态环境资源研究院成都信息工程大学重庆大学中国科学院大学更多>>
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Revealing the A1g-type strain effect on superconductivity and nematicity in FeSe thin flake
《Chinese Physics B》2021年第9期56-61,共6页Zhaohui Cheng Bin Lei Xigang Luo Jianjun Ying Zhenyu Wang Tao Wu Xianhui Chen 
Project supported by the National Key R&D Program of China(Grant Nos.2017YFA0303000 and 2016YFA0300201);the National Natural Science Foundation of China(Grant No.11888101);the Strategic Priority Research Program of Chinese Academy of Sciences(Grant No.XDB25000000);the Anhui Initiative in Quantum Information Technologies(Grant No.AHY160000).
The driving mechanism of nematicity and its twist with superconductivity in iron-based superconductors are still under debate.Recently,a dominant B1g-type strain effect on superconductivity is observed in underdoped i...
关键词:iron-based superconductors SUPERCONDUCTIVITY electronic nematicity strain effect 
Field electron emission from bunchy flake-like nano-carbon films
《Chinese Physics B》2009年第5期2078-2081,共4页王小平 王丽军 段新超 王隆洋 张雷 吕承瑞 雷通 
supported by the Shanghai Education Committee of China(Grant No 07ZZ95)
This paper reports that bunchy flake-like nano-graphite crystallite films (BNGCFs) were deposited on Si substrates by using the microwave chemical vapour deposition technique. Furthermore the BNGCFs were characteriz...
关键词:bunchy flake-like nano-graphite crystallites films chemical vapour deposition electronfield emission 
Influence of shape anisotropy on microwave complex permeability in carbonyl iron flakes/epoxy resin composites被引量:7
《Chinese Physics B》2008年第6期2263-2267,共5页温福昇 乔亮 周栋 左文亮 伊海波 李发伸 
Project supported by the National Natural Science Foundation of China (Grant Nos 90505007 and 10774061)
To explore the mechanism of carbonyl iron flake composites for microwave complex permeability, this paper investigates the feature of the flakes. The shape anisotropy was certified by the results of the magnetization ...
关键词:carbonyl iron flake complex permeability shape anisotropy Mossbauer spectroscopy 
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