Gaia Data Release 3 Processing and validation of BP/RP low-resolution spectral data

被引:90
|
作者
De Angeli, F. [1 ]
Weiler, M. [2 ]
Montegriffo, P. [3 ]
Evans, D. W. [1 ]
Riello, M. [1 ]
Andrae, R. [4 ]
Carrasco, J. M. [2 ]
Busso, G. [1 ]
Burgess, P. W. [1 ]
Cacciari, C.
Davidson, M. [5 ]
Harrison, D. L. [1 ,6 ]
Hodgkin, S. T. [1 ]
Jordi, C. [2 ]
Osborne, P. J. [1 ]
Pancino, E. [7 ,9 ]
Altavilla, G. [8 ,9 ]
Barstow, M. A. [10 ]
Bailer-Jones, C. A. L. [4 ]
Bellazzini, M.
Brown, A. G. A. [11 ]
Castellani, M. [8 ]
Cowell, S.
Delchambre, L. [12 ]
De Luise, F. [13 ]
Diener, C. [1 ]
Fabricius, C. [2 ]
Fouesneau, M. [4 ]
Fremat, Y. [14 ]
Gilmore, G. [1 ]
Giuffrida, G. [8 ]
Hambly, N. C. [5 ]
Hidalgo, S. [15 ]
Holland, G. [1 ]
Kostrzewa-Rutkowska, Z. [11 ,16 ]
van Leeuwen, F. [1 ]
Lobel, A. [14 ]
Marinoni, S. [8 ,9 ]
Miller, N. [1 ]
Pagani, C. [10 ]
Palaversa, L. [1 ,17 ]
Piersimoni, A. M. [13 ]
Pulone, L. [8 ]
Ragaini, S.
Rainer, M. [17 ,18 ]
Richards, P. J. [19 ]
Rixon, G. T. [1 ]
Ruz-Mieres, D. [1 ]
Sanna, N. [7 ]
Sarro, L. M. [20 ]
机构
[1] Univ Cambridge, Inst Astron, Madingley Rd, Cambridge CB3 0HA, England
[2] Univ Barcelona IEEC UB, Inst Ciencies Cosmos ICC, C Marti i Franques 1, Barcelona 08028, Spain
[3] INAF Osservatorio Astrofis & Sci Spazio Bologna, Via Gobetti 93-3, I-40129 Bologna, Italy
[4] Max Planck Inst Astron, Konigstuhl 17, D-69117 Heidelberg, Germany
[5] Univ Edinburgh, Inst Astron, Sch Phys & Astron, Royal Observ, Blackford Hill, Edinburgh EH9 3HJ, Scotland
[6] Kavli Inst Cosmol, Inst Astron, Madingley Rd, Cambridge CB3 0HA, England
[7] INAF Osservatorio Astrofis Arcetri, Largo E Fermi 5, I-50125 Florence, Italy
[8] INAF Osservatorio Astron Roma, Via Frascati 33, I-00078 Monte Porzio Catone Roma, Italy
[9] Space Sci Data Ctr ASI, Via Politecn SNC, I-00133 Rome, Italy
[10] Univ Leicester, Sch Phys & Astron, Leicester LE9 1UP, England
[11] Leiden Univ, Leiden Observ, Niels Bohrweg 2, NL-2333 CA Leiden, Netherlands
[12] Univ Liege, Inst Astrophys & Geophys, 19c,Allee 6 Aout, B-4000 Liege, Belgium
[13] INAF Osservatorio Astron Abruzzo, Via Mentore Maggini, I-64100 Teramo, Italy
[14] Royal Observ Belgium, Ringlaan 3, B-1180 Brussels, Belgium
[15] IAC Inst Astrofis Canarias, Via Lactea S-N, Tenerife, Spain
[16] SRON Netherlands Inst Space Res, Niels Bohrweg 4, NL-2333 CA Leiden, Netherlands
[17] Rudjer Boskovic Inst, Bijenicka Cesta 54, Zagreb, Croatia
[18] INAF Osservatorio Astron Brera, Via E Bianchi 46, I-23807 Merate, LC, Italy
[19] STFC, Rutherford Appleton Lab, Harwell OX11 0QX, England
[20] UNED, Dpto Inteligencia Artificial, C Juan del Rosal 16, Madrid 28040, Spain
[21] INAF Osservatorio Astron Padova, Vicolo Osservatorio 5, I-35122 Padua, Italy
关键词
instrumentation: photometers; instrumentation: spectrographs; catalogs; surveys; techniques: photometric; techniques: spectroscopic; STANDARD STARS SURVEY; CALIBRATION; SYSTEM;
D O I
10.1051/0004-6361/202243680
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Context. Blue (BP) and Red (RP) Photometer low-resolution spectral data are one of the exciting new products in Gaia Data Release 3 (Gaia DR3). These data have also been used to derive astrometry and integrated photometry in Gaia Early Data Release 3 and astrophysical parameters and Solar System object reflectance spectra in Gaia DR3. Aims. In this paper, we give an overview of the processing techniques that allow raw satellite data of multiple transits per source to be converted into combined spectra calibrated to an internal reference system, resulting in low-resolution BP and RP mean spectra. We describe how we overcome challenges due to the complexity of the on-board instruments and to the various observation strategies. Furthermore, we show highlights from our scientific validation of the results. This work covers the internal calibration of BP /RP spectra to a self-consistent mean instrument, while the calibration of the BP /RP spectra to the absolute reference system of physical flux and wavelength is covered by one of the accompanying Gaia DR3 papers. Methods. We calibrate about 65 billion individual transit spectra onto the same mean BP /RP instrument through a series of calibration steps, including background subtraction, calibration of the CCD geometry, and an iterative procedure for the calibration of CCD efficiency as well as variations of the line-spread function and dispersion across the focal plane and in time. The calibrated transit spectra are then combined for each source in terms of an expansion into continuous basis functions. We discuss the configuration of these basis functions. Results. Time-averaged mean spectra covering the optical to near-infrared wavelength range [330; 1050] nm are published for approximately 220 million objects. Most of these are brighter than G = 17:65 but some BP /RP spectra are published for sources down to G = 21:43. Their signal tonoise ratio (S /N) varies significantly over the wavelength range covered, and with magnitude and colour of the observed objects, with sources around G = 15 having a S /N above 100 in some wavelength ranges. The top-quality BP /RP spectra are achieved for sources with magnitudes 9 < G < 12, with S /N reaching 1000 in the central part of the RP wavelength range. Scientific validation suggests that the internal calibration was generally successful. However, there is some evidence for imperfect calibrations at the bright end G < 11, where calibrated BP /RP spectra can exhibit systematic flux variations that exceed their estimated flux uncertainties. We also report that, due to long-range noise correlations, BP /RP spectra can exhibit wiggles when sampled in pseudo-wavelength. Conclusions. The Gaia DR3 data products are the expansion coefficients and corresponding covariance matrices for BP and RP separately. Users are encouraged to work with the data in this format, with full covariance information showing that correlations between coe fficients are typically very low. Documentation and instructions on how to access and use BP /RP spectral data from the archive are also provided.
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页数:28
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