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Autores principales: Pepe, F., Bugatti, M., Baur, A., Berney, J., Bozzo, E., Broeg, C., Crazzolara, B., Deep, A., Droz, F., Figuereido, J., Haile, H., Jolissaint, L., Lecomte, S., Moerschell, J., Mordasini, Ch., Obrzud, E., Praplan, C., Sarajlic, M., Soja, B., Broeck, M. Van den
Formato: Preprint
Publicado: 2025
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Acceso en línea:https://arxiv.org/abs/2507.08413
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author Pepe, F.
Bugatti, M.
Baur, A.
Berney, J.
Bozzo, E.
Broeg, C.
Crazzolara, B.
Deep, A.
Droz, F.
Figuereido, J.
Haile, H.
Jolissaint, L.
Lecomte, S.
Moerschell, J.
Mordasini, Ch.
Obrzud, E.
Praplan, C.
Sarajlic, M.
Soja, B.
Broeck, M. Van den
author_facet Pepe, F.
Bugatti, M.
Baur, A.
Berney, J.
Bozzo, E.
Broeg, C.
Crazzolara, B.
Deep, A.
Droz, F.
Figuereido, J.
Haile, H.
Jolissaint, L.
Lecomte, S.
Moerschell, J.
Mordasini, Ch.
Obrzud, E.
Praplan, C.
Sarajlic, M.
Soja, B.
Broeck, M. Van den
contents The accuracy of state-of-the-art Extreme Precision Radial Velocity (EPRV) spectrographs depends on the access to extremely precise and stable wavelength calibration sources. There are several available calibration sources (e.g., emission lamps, laser frequency combs, reference cavities) that can be used to calibrate an astronomical spectrograph. However, the calibration as it is currently performed is always 'local'. In the proposed talk we will present the NuAncestor concept that proposes an accurate (absolute) and common wavelength calibration for astronomical high-resolution, high-precision spectrographs by embarking an optical frequency comb on-board a satellite equipped with an actively pointing telescope and precision orbitography. This calibration satellite shall be available and serve EPRV spectrographs in all major observatories around the world.
format Preprint
id arxiv_https___arxiv_org_abs_2507_08413
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle NuAncestor: an artificial satellite-borne star for accurate frequency calibration of ground-based EPRV spectrographs
Pepe, F.
Bugatti, M.
Baur, A.
Berney, J.
Bozzo, E.
Broeg, C.
Crazzolara, B.
Deep, A.
Droz, F.
Figuereido, J.
Haile, H.
Jolissaint, L.
Lecomte, S.
Moerschell, J.
Mordasini, Ch.
Obrzud, E.
Praplan, C.
Sarajlic, M.
Soja, B.
Broeck, M. Van den
Instrumentation and Methods for Astrophysics
The accuracy of state-of-the-art Extreme Precision Radial Velocity (EPRV) spectrographs depends on the access to extremely precise and stable wavelength calibration sources. There are several available calibration sources (e.g., emission lamps, laser frequency combs, reference cavities) that can be used to calibrate an astronomical spectrograph. However, the calibration as it is currently performed is always 'local'. In the proposed talk we will present the NuAncestor concept that proposes an accurate (absolute) and common wavelength calibration for astronomical high-resolution, high-precision spectrographs by embarking an optical frequency comb on-board a satellite equipped with an actively pointing telescope and precision orbitography. This calibration satellite shall be available and serve EPRV spectrographs in all major observatories around the world.
title NuAncestor: an artificial satellite-borne star for accurate frequency calibration of ground-based EPRV spectrographs
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2507.08413