Mid-IR Faraday optical filter with an ultra-narrow single transmission peak at 5.33?μm
Wu,Kuijun1; Luo,Zhongjie2; Feng,Yutao3; Xiong,Yuanhui1,2; Yu,Guangbao1,2; Duan,Weimin1; Li,Faquan1
刊名Applied Physics Express
2019-08-27
卷号12期号:9
ISSN号1882-0778
DOI10.7567/1882-0786/ab3b3f
英文摘要Abstract We present a theoretical and experimental study of a mid-infrared Faraday optical filter (MIFOF) with an ultra-narrow single transmission peak. The typical representative of paramagnetic molecules, gas-phase nitric oxide (NO), is selected as the working material. We focus on the transmission of such a filter operating on a Q(3/2) transition, and its dependence on the strength of the magnetic field. This MIFOF simultaneously achieves a peak transmission of 52%, an equivalent noise bandwidth (ENBW) of 444?MHz, and an out-of-band rejection ratio of 2?×?104, for a magnetic field of 17?mT and a NO pressure of 10?mbar.
语种英语
出版者IOP Publishing
WOS记录号IOP:1882-0778-12-9-AB3B3F
内容类型期刊论文
源URL[http://ir.wipm.ac.cn/handle/112942/14393]  
专题中国科学院武汉物理与数学研究所
通讯作者Wu,Kuijun
作者单位1.State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan National Laboratory for Optoelectronics, Wuhan 430071, People’s Republic of China
2.School of Mathematics and Physics, China University of Geosciences (Wuhan), Wuhan 430074, People’s Republic of China
3.Key Laboratory of Spectral Imaging Technology of Chinese Academy of Sciences, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an 710119, People’s Republic of China
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Wu,Kuijun,Luo,Zhongjie,Feng,Yutao,et al. Mid-IR Faraday optical filter with an ultra-narrow single transmission peak at 5.33?μm[J]. Applied Physics Express,2019,12(9).
APA Wu,Kuijun.,Luo,Zhongjie.,Feng,Yutao.,Xiong,Yuanhui.,Yu,Guangbao.,...&Li,Faquan.(2019).Mid-IR Faraday optical filter with an ultra-narrow single transmission peak at 5.33?μm.Applied Physics Express,12(9).
MLA Wu,Kuijun,et al."Mid-IR Faraday optical filter with an ultra-narrow single transmission peak at 5.33?μm".Applied Physics Express 12.9(2019).
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