Acta Optica Sinica, Volume. 44, Issue 6, 0622001(2024)
System Design of Space Solar Extreme Ultraviolet Three-Waveband Imaging Spectrometer
[1] Song Q, Yang S H. Our star Sun-a huge physics laboratory[J]. Modern Physics, 30, 56-62(2018).
[2] Yang M F, Dai S W, Wang Y et al. Progress and prospect of solar space exploration[J]. Chinese Space Science and Technology, 42, 1-10(2022).
[3] Fang C. Space weather comes into our life[J]. Chinese Journal of Nature, 28, 194-198, 250(2006).
[4] Benz A O. Flare observations[J]. Living Reviews in Solar Physics, 5, 1-64(2008).
[5] Hudson H S, Bougeret J L, Burkepile J. Coronal mass ejections: overview of observations[J]. Space Science Reviews, 123, 13-30(2006).
[6] Gan W Q, Yan Y H, Huang Y. Prospect for space solar physics in 2016-2030[J]. Scientia Sinica: Physica, Mechanica & Astronomica, 49, 059602(2019).
[7] Dwivedi B N. EUV spectroscopy as a plasma diagnostic[J]. Space Science Reviews, 65, 289-316(1993).
[8] Teriaca L, Andretta V, Auchère F et al. LEMUR: large European module for solar Ultraviolet Research: European contribution to JAXA′s Solar-C mission[J]. Experimental Astronomy, 34, 273-309(2012).
[9] Xing Y G, Li L, Peng J L et al. Optical design of solar extreme ultraviolet normal-incidence broadband imaging spectrometer with non-rowland circle mounting[J]. Acta Optica Sinica, 40, 2312005(2020).
[10] Davila J M, Oktem F S, Kamalabadi F. Slitless solar imaging spectroscopy[J]. The Astrophysical Journal Letters, 883, 7(2019).
[11] Wang J X, Ji H S. Study on the driving source of space weather-solar storm[J]. Scientia Sinica: Terrae, 43, 883-911(2013).
[12] Underwood J H, Neupert W M. The GSFC EUV and X-ray spectroheliograph on OSO-7[J]. Solar Physics, 35, 241-258(1974).
[13] Tousey R, Bartoe J D F, Brueckner G E et al. Extreme ultraviolet spectroheliograph ATM experiment S082A[J]. Applied Optics, 16, 870-878(1977).
[14] Harrison R A, Sawyer E C, Carter M K et al. The Coronal Diagnostic Spectrometer for the solar and heliospheric observatory[J]. Solar Physics, 162, 233-290(1995).
[15] Wilhelm K, Curdt W, Marsch E et al. SUMER-solar ultraviolet measurements of emitted radiation[J]. Solar Physics, 162, 189-231(1995).
[16] Zhitnik I A, Kuzin S V, Urnov A M et al. X-ray and EUV diagnostics of active plasma structures with the RES spectroheliograph in the SPIRIT experiment onboard the CORONAS-F satellite[J]. Solar System Research, 40, 272-281(2006).
[17] Culhane J L, Harra L K, James A M et al. The EUV imaging spectrometer for hinode[J]. Solar Physics, 243, 19-61(2007).
[18] Brosius J W, Daw A N, Rabin D M. Pervasive faint Fe XIX emission from a solar active region observed with EUNIS-13: evidence for nanoflare heating[J]. The Astrophysical Journal Letters, 790, 112(2014).
[19] Anderson M, Appourchaux T, Auchère F et al. The Solar Orbiter SPICE instrument: an extreme UV imaging spectrometer[J]. Astronomy & Astrophysics, 642, A14(2020).
[20] Lin J, Wang M, Tian H et al. In situ measurements of the solar eruption[J]. Scientia Sinica: Physica, Mechanica & Astronomica, 49, 059607(2019).
[21] Ji H S, Wang Y M, Wang J X. Stereoscopic observations of the Sun[J]. Scientia Sinica: Physica, Mechanica & Astronomica, 49, 059605(2019).
[22] Wang Y, Zhou W Y, Dai S W. A mission to the Sun-Earth L4/L5 for solar physics and space weather[J]. Space Electronic Technology, 15, 68-74(2018).
[23] Yang M F, Wang J X, Wang C et al. Envisioning the solar stereo exploration mission[J]. Chinese Science Bulletin, 68, 859-871(2023).
[24] Wang Y M, Ji H S, Wang Y M et al. Concept of the solar ring mission: an overview[J]. Science China Technological Sciences, 63, 1699-1713(2020).
[25] Wang Y M, Bai X Y, Chen C Y et al. Solar ring mission: building a panorama of the Sun and inner-heliosphere[J]. Advances in Space Research, 71, 1146-1164(2023).
[26] Deng Y Y, Zhou G P, Dai S W et al. Solar polar orbit observatory[J]. Chinese Science Bulletin, 68, 298-308(2023).
[27] Pesnell W D, Thompson B J, Chamberlin P C. The Solar dynamics observatory (SDO)[J]. Solar Physics, 275, 3-15(2012).
[28] Lemen J R, Title A M, Akin D J et al. The Atmospheric imaging assembly (AIA) on the Solar dynamics observatory (SDO)[J]. Solar Physics, 275, 17-40(2012).
[29] Xing Y G, Li L, Peng J L et al. Optical design of 3-order solar extreme ultraviolet narrowband slitless imaging spectrometer[J]. Acta Optica Sinica, 41, 0730003(2021).
[30] Fludra A, Griffin D, Caldwell M et al. SPICE EUV spectrometer for the solar orbiter mission[J]. Proceedings of SPIE, 8862, 88620F(2013).
[31] Teriaca L, Feigl T, Schühle U. Broadband EUV/FUV mirror coatings for a solar spectrograph mission[J]. Proceedings of SPIE, 10699, 106992Y(2018).
[32] Monaco G, Garoli D, Frison R et al. Optical constants in the EUV soft X-ray (5÷152 nm) spectral range of B4C thin films deposited by different deposition techniques[J]. Proceedings of SPIE, 6317, 631712(2006).
[33] Larruquert J I, Pérez-Marín A P, García-Cortés S et al. Self-consistent optical constants of sputter-deposited B4C thin films[J]. Journal of the Optical Society of America A, 29, 117-123(2011).
[34] Gautier J, Delmotte F, Françoise Ravet M et al. Two channel multilayer mirrors for astrophysics[J]. Optics Communications, 281, 3032-3035(2008).
[35] Lindblom J F. Multi-Spectral Solar Telescope Array Ⅳ: the soft X-ray and extreme ultraviolet filters[J]. Optical Engineering, 30, 1134(1991).
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Ziwen Duan, Yangguang Xing, Jilong Peng, Shuwu Dai, Ying Wang, Chenglin Zhu, Lei Yan, Yifan Huang, Yue Liu, Lin Li. System Design of Space Solar Extreme Ultraviolet Three-Waveband Imaging Spectrometer[J]. Acta Optica Sinica, 2024, 44(6): 0622001
Category: Optical Design and Fabrication
Received: May. 15, 2023
Accepted: Jun. 15, 2023
Published Online: Mar. 15, 2024
The Author Email: Yangguang Xing (xyg@bit.edu.cn), Yue Liu (liuyue@bit.edu.cn)
CSTR:32393.14.AOS230980