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A new soft X-ray magnetic circular dichroism facility at the BSRF beamline 4B7B

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【作者】 郭志英洪才浩邢海英唐坤郑雷徐伟陈栋梁崔明启赵屹东

【Author】 GUO Zhi-Ying;HONG Cai-Hao;XING Hai-Ying;TANG Kun;ZHENG Lei;XUI Wei;CHEN Dong-Liang;CUI Ming-Qi;ZHAO Yi-Dong;Institute of High Energy Physics, Chinese Academy of Sciences;School of Electronics and Information Engineering, Tianjin Polytechnic University;

【机构】 Institute of High Energy Physics, Chinese Academy of SciencesSchool of Electronics and Information Engineering, Tianjin Polytechnic University

【摘要】 X-ray magnetic circular dichroism(XMCD) has become an important and powerful tool because it allows the study of material properties in combination with elemental specificity, chemical state specificity, and magnetic specificity. A new soft X-ray magnetic circular dichroism apparatus has been developed at the Beijing Synchrotron Radiation Facility(BSRF). The apparatus combines three experimental conditions: an ultra-high-vacuum environment, moderate magnetic fields and in-situ sample preparation to measure the absorption signal. We designed a C-type dipole electromagnet that provides magnetic fields up to 0.5 T in parallel(or anti-parallel) direction relative to the incoming X-ray beam. The performances of the electromagnet are measured and the results show good agreement with the simulation ones. Following film grown in situ by evaporation methods, XMCD measurements are performed. Combined polarization corrections, the magnetic moments of the Fe and Co films determined by sum rules are consistent with other theoretical predictions and experimental measurements.

【Abstract】 X-ray magnetic circular dichroism(XMCD) has become an important and powerful tool because it allows the study of material properties in combination with elemental specificity, chemical state specificity, and magnetic specificity. A new soft X-ray magnetic circular dichroism apparatus has been developed at the Beijing Synchrotron Radiation Facility(BSRF). The apparatus combines three experimental conditions: an ultra-high-vacuum environment, moderate magnetic fields and in-situ sample preparation to measure the absorption signal. We designed a C-type dipole electromagnet that provides magnetic fields up to 0.5 T in parallel(or anti-parallel) direction relative to the incoming X-ray beam. The performances of the electromagnet are measured and the results show good agreement with the simulation ones. Following film grown in situ by evaporation methods, XMCD measurements are performed. Combined polarization corrections, the magnetic moments of the Fe and Co films determined by sum rules are consistent with other theoretical predictions and experimental measurements.

【基金】 Supported by National Natural Science Foundation of China(61204008)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2015年04期
  • 【分类号】O434.1
  • 【下载频次】30
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