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@ARTICLE{Wei:877579,
author = {Wei, Daikang and Zhu, Yajun and Liu, JIlin and Gong,
Qiucheng and Kaufmann, Martin and Olschewski, Friedhelm and
Knieling, Peter and Xu, Jiyao and Koppmann, Ralf and Riese,
Martin},
title = {{T}hermally stable monolithic {D}oppler asymmetric spatial
heterodyne interferometer: optical design and laboratory
performance},
journal = {Optics express},
volume = {28},
number = {14},
issn = {1094-4087},
address = {Washington, DC},
reportid = {FZJ-2020-02301},
pages = {19887 -},
year = {2020},
abstract = {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.},
cin = {IEK-7},
ddc = {530},
cid = {I:(DE-Juel1)IEK-7-20101013},
pnm = {244 - Composition and dynamics of the upper troposphere and
middle atmosphere (POF3-244)},
pid = {G:(DE-HGF)POF3-244},
typ = {PUB:(DE-HGF)16},
pubmed = {pmid:32680059},
UT = {WOS:000547061200008},
doi = {10.1364/OE.394101},
url = {https://juser.fz-juelich.de/record/877579},
}