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February 6, 20260 citations

Computing natural magnitudes in the photometric systems of astronomical plates using Gaia DR3 spectral energy distributions

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MRMaryam RaouphASAndreas Schrimpf

Key Points

  • The aim is to derive accurate natural magnitudes for celestial sources in historical astronomical photographic plates.
  • Utilized Gaia DR3 blue-photometer and red-photometer spectral data.
  • Compiled spectral characteristics for emulsions and filters used on glass plates.
  • Applied synthetic photometry to compute natural magnitudes and fluxes of celestial objects.
  • Employed GaiaXPy library to analyze spectral data.
  • Revealed systematic errors in existing data of ± 0.3 mag and higher.
  • Improved correction for atmospheric reddening, especially at higher air masses.
  • Demonstrated efficacy with stars of similar color indices but varying luminosity classes.

Abstract

Accurate photometric calibration of astronomical photographic plates remains a fundamental challenge in astronomy, especially when bridging historical photographic data with modern observations due to the mismatch of spectral sensitivities of photographic plates and pass bands of modern calibration catalogs. We intend to derive consistent natural magnitudes for celestial sources within the intrinsic photometric systems of astronomical photographic plates by using Data Release 3 (DR3) blue-photometer (BP) and red-photometer (RP) low-resolution spectral data and to show its superiority over former methods. Gaia We compiled spectral characteristic data for emulsions and filters applied in photometric observations using glass plates. The collected color sensitivities, modified by atmospheric reddening depending on the air mass, were then used to compute accurate natural magnitudes and fluxes of objects in the photographic plates through synthetic photometry, utilizing a catalog of spectral energy distributions (SEDs) over the 330 nm łeq łambda łeq 1050 nm range (XP spectra). This process uses GaiaXPy, a Python library designed to handle DR3 spectral data. These natural magnitudes are then compared with results from the color-term method used to compile the data in existing photoplate archives. Gaia Gaia Comparing the synthetic magnitudes with those existing in the Archives of Photographic PLates for Astronomical USE (APPLAUSE), we were able to reveal systematic errors of the existing data in the range of ± 0.3 mag and higher. In addition, the presented method allows for an accommodation of stars with similar color index but of different luminosity classes as well as an effective correction of atmospheric reddening at higher air masses (approximately 0.2 mag).

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Cite This Study

Raouph et al. (2026) studied this question.

synapsesocial.com/papers/698586118f7c464f23009f52https://doi.org/10.1051/0004-6361/202557161/pdf
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