High-contrast imaging at ten microns: A search for exoplanets around Eps Indi A, Eps Eri, Tau Ceti, Sirius A, and Sirius B

Context. The direct imaging of rocky exoplanets is one of the major science goals of upcoming large telescopes. The contrast requirement for imaging such planets is challenging. However, the mid-IR (infrared) regime provides the optimum contrast to directly detect the thermal signatures of exoplanet...

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Veröffentlicht in:Astronomy and astrophysics (Berlin) 2021-08, Vol.652, p.A121
Hauptverfasser: Pathak, P., Petit dit de la Roche, D. J. M., Kasper, M., Sterzik, M., Absil, O., Boehle, A., Feng, F., Ivanov, V. D., Janson, M., Jones, H. R. A., Kaufer, A., Käufl, H.-U., Maire, A.-L., Meyer, M., Pantin, E., Siebenmorgen, R., van den Ancker, M. E., Viswanath, G.
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Sprache:eng
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Zusammenfassung:Context. The direct imaging of rocky exoplanets is one of the major science goals of upcoming large telescopes. The contrast requirement for imaging such planets is challenging. However, the mid-IR (infrared) regime provides the optimum contrast to directly detect the thermal signatures of exoplanets in our solar neighbourhood. Aims. We aim to exploit novel fast-chopping techniques newly developed for astronomy with the aid of adaptive optics to look for thermal signatures of exoplanets around bright stars in the solar neighbourhood. Methods. We used the upgraded Very Large Telescope Imager and Spectrometer for the mid-InfraRed (VISIR) instrument with high-contrast imaging capability optimised for observations at 10 μm to look for exoplanets around five nearby ( d < 4 pc) stars. The instrument provides an improved signal-to-noise ratio (S/N) by a factor of ~4 in the N -band compared to standard VISIR for a given S/N and time. Results. In this work, we achieve a detection sensitivity of sub-mJy, which is sufficient to detect a few Jupiter mass planets in nearby systems. Although no detections are made, we achieve most sensitive limits within
ISSN:0004-6361
1432-0746
1432-0746
DOI:10.1051/0004-6361/202140529