Daikang WeiYajun ZhuJilin LiuQiucheng GongMartin KaufmannF. OlschewskiPeter KnielingJiyao XuR. KoppmannMartin Riese
We report on a thermally stable monolithic Doppler asymmetric spatial heterodyne (DASH) interferometer with field-widening prisms for thermospheric wind measurements by observing the Doppler shift of the airglow emission. Analytical deduction and numerical simulation are applied to determine the central optical path difference, the thermal compensation condition and the field-widening design. A monolithic interferometer with optimized configuration was built and tested in the laboratory. Laboratory tests show that the best visibility of 0.94 was realized with the 9 ° field-of-view illumination, while the thermal responses of the spatial frequency and the optical phase offset are 0.0154 cm −1 / ° C and 0.469 rad/ ° C, respectively.
白玉龙 BAI Yu-long孙剑 Sun Jian郝雄波 Hao Xiongbo武俊强 WU Jun-qiang白清兰 Bai Qinglan冯玉涛 Feng Yutao
John M. HarlanderChristoph R. EnglertDavid D. Babcock
Chenguang ChangDi FuHengxiang ZhaoXiongbo HaoJuan LiPengchong WangJian SunXiangpeng FengLiang KongYutao Feng
Ziru NiuLun JiangYansong SongXu ZhangM. LiKeyan DongHaiyan LiXiaokun Ding
费小云 Fei Xiaoyun冯玉涛 Feng Yutao白清兰 Bai Qinglan谢念 Xie Nian李勇 Li Yong闫鹏 Yan Peng孙剑 Sun Jian