红外与毫米波学报, 2019, 38 (4): 04473, 网络出版: 2019-10-14  

利用多星表交叉外推恒星能量的方法

A new approach for extrapolating star flux using cross-matching multiple catalogues
王誉都 1,2,3,*孙小进 1,2张恒 1,2陈凡胜 1,2
作者单位
1 中国科学院智能红外感知重点实验室,上海 200083
2 中国科学院上海技术物理研究所,上海 200083
3 中国科学院大学,北京 100049
引用该论文

王誉都, 孙小进, 张恒, 陈凡胜. 利用多星表交叉外推恒星能量的方法[J]. 红外与毫米波学报, 2019, 38(4): 04473.

WANG Yu-Du, SUN Xiao-Jin, ZHANG Heng, CHEN Fan-Sheng. A new approach for extrapolating star flux using cross-matching multiple catalogues[J]. Journal of Infrared and Millimeter Waves, 2019, 38(4): 04473.

参考文献

[1] WANG Yue-Ming, CHEN Jian-Xin, LIU Yin-Nian, et al. Study on two-point multi-section IRFPA nonuniformity correction algorithm [J]. Journal of Infrared millimeter Waves(王跃明,陈建新,刘银年,等. 红外焦平面器件二点多段非均匀性校正算法研究, 红外与毫米波学报), 2003, 22(6): 415-8.

[2] WANG Yue-Ming, ZHU Qian, WANG Jian-Yu, et al. Characterization of background radiation in SWIR hyperspectral imager [J]. Journal of Infrared Millimeter Waves(王跃明,祝倩,王建宇,等. 短波红外高光谱成像仪背景辐射特征研究), 2011, 30(3): 279-83.

[3] Cohen M, Wheaton W A, Megeath S T. Spectral irradiance calibration in the infrared. XIV. The absolute calibration of 2MASS [J]. Astron. J., 2003, 126(2):1090-6.

[4] Lu N, Smith P S, Engelbracht C W, et al. Absolute calibration and characterization of the multiband imaging photometer for Spitzer. IV. The spectral energy distribution mode [J]. Publ. Astron. Soc. Pac., 2008, 120(865): 328-38.

[5] Shirahata M, Matsuura S, Hasegawa S, et al. Calibration and performance of the AKARI far-infrared surveyor (FIS)-slow-scan observation mode for point-sources [J]. Publ. Astron. Soc. Jpn., 2009, 61(4): 737-50.

[6] Takita S, Ikeda N, Kitamura Y, et al. Slow-scan observations with the infrared camera (IRC) aboard AKARI [J]. Publ. Astron. Soc. Jpn., 2012, 64(6):1-8.

[7] Rieke G H, Blaylock M, Decin L, et al. Absolute physical calibration in the infrared [J]. Annals of Internal Medicine, 2012, 135(6):2245.

[8] Schulz B, Huth S, Laureijs R J, et al. ISOPHOT -Photometric calibration of point sources [J]. Astron Astrophys, 2002, 381(3): 1110-30.

[9] Bohlin R C, Gordon K D, Rieke G H, et al. Absolute flux calibration of the irac instrument on the spitzer space telescope using hubble space telescope flux standards [J]. Astron J., 2011, 141(5):1-12.

[10] Diaz-Meller R I. Photometric and astrometric calibration of the JWST instrument complement [J]. Astr. Soc. P., 2007, 364:(81-90).

[11] Cohen M, Witteborn F C, Walker R G, et al. Spectral irradiance calibration in the infrared. IV. 1.2-35 Aim spectra of six standard stars [J]. Astron. J., 1995, 110(1): 275-89.

[12] Kim M G, Lee H M, Arai T, et al. Low-resolution near-infrared stellar spectra observed by the cosmic infrared background experiment (CIBER) [J]. Astron. J., 2017, 153(2): 1-19.

[13] Lorenzo-OliveirA D, De Mello G F P, Dutra-Ferreira L, et al. Fine structure of the age-chromospheric activity relation in solar-type stars I. The Ca II infrared triplet: Absolute flux calibration [J]. Astron. Astrophys., 2016, 595: 10.1051/0004-6361/201628825.

[14] Karczmarek P, Pietrzynski G, Gorski M, et al. The araucaria project: The distance to the fornax dwarf galaxy from near-infrared photometry of rr lyrae stars [J]. Astron. J., 2017, 154(6): 263-1-8.

[15] Stewart P N, Tuthill P G, Nicholson P D, et al. An atlas of bright star spectra in the near-infrared from cassini-vims [J]. Astrophys J. Suppl. S, 2015, 221(2):

[16] Klein C R, Richards J W, Butler N R, et al. Mid-infrared period-luminosity relations of RR Lyrae stars derived from the AllWISE data release [J]. Monthly Notices of the Royal Astronomical Society, 2014, 440(1): L96-L100.

[17] Lian J H, Zhu Q F, Kong X, et al. Characterizing AGB stars in Wide-field Infrared Survey Explorer (WISE) bands [J]. Astron. Astrophys, 2014, 564.

[18] Wang Y D, Su X F, Zhang W T, et al. Research on camera on orbit radial calibration based on black body and infrared calibration stars [M]. //Pham K D, Chen G. Sensors and Systems for Space Applications Xi. 2018.

[19] Liu Y, Yang L, Chen F-S. Multispectral registration method based on stellar trajectory fitting [J]. Optical and Quantum Electronics, 2018, 50(4):189.

[20] Wen M, Wei L, Zhuang X, et al. High-sensitivity short-wave infrared technology for thermal imaging [J]. Infrared Physics and Technology, 2018, 95(9):3-9.

[21] Neugebauer G, Habing H J, Van Duinen R, et al. The infrared astronomical satellite (IRAS) mission [J]. Astrophys J, 1984, 278(1984): L1-L6.

[22] Wright E L, Eisenhardt P R M, Mainzer A K, et al. The wide-field infrared survey explorer (WISE): Mission description and initial on-orbit performance [J]. Astron. J., 2010, 140(6): 1868.

[23] Skrutskie M F, Cutri R M, Stiening R, et al. The two micron all sky survey (2MASS) [J]. Astron. J., 2007, 131(2):1163-83.

[24] Cohen M, Walker R G, Barlow M J, et al. Spectral irradiance calibration in the infrared .1. Ground-based and iras broad-band calibrations [J]. Astron. J., 1992, 104(4):1650-7.

[25] Xu C. A flux calibration method for remote sensing satellites using star flux [J]. Journal of Infrared and Millimeter Waves, 2017, 36(5):581-8.

[26] Wei L, Xiao X, Wang Y, et al. Research on the shortwave infrared hyperspectral imaging technology based on Integrated Stepwise filter [J]. Infrared Physics and Technology, 2017, 86:90-7.

[27] Wen M, Wang Y, Yao Y, et al. Design and performance of curved prism-based mid-wave infrared hyperspectral imager [J]. Infrared Physics and Technology, 2018, 95:5-11.

王誉都, 孙小进, 张恒, 陈凡胜. 利用多星表交叉外推恒星能量的方法[J]. 红外与毫米波学报, 2019, 38(4): 04473. WANG Yu-Du, SUN Xiao-Jin, ZHANG Heng, CHEN Fan-Sheng. A new approach for extrapolating star flux using cross-matching multiple catalogues[J]. Journal of Infrared and Millimeter Waves, 2019, 38(4): 04473.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!