arXiv · 2502.19961
High-contrast spectroscopy with the new VLT/ERIS instrument: Molecular maps and radial velocity of the gas giant AF Lep b
Abstract
The Enhanced Resolution Imager and Spectrograph (ERIS) is the new Adaptive-Optics (AO) assisted Infrared instrument at the Very Large Telescope (VLT). Its refurbished Integral Field Spectrograph (IFS) SPIFFIER leverages a new AO module, enabling high-contrast imaging applications and giving access to the orbital and atmospheric characterisation of super-Jovian exoplanets. We test the detection limits of ERIS and demonstrate its scientific potential by exploring the atmospheric composition of the young super-Jovian AF Lep b and improving its orbital solution by measuring its radial velocity relative to its host star. We present new spectroscopic observations of AF Lep b in $K$-band at $R\sim 11000$ obtained with ERIS/SPIFFIER at the VLT. We reduce the data using the standard pipeline together with a custom wavelength calibration routine, and remove the stellar PSF using principal component analysis along the spectral axis. We compute molecular maps by cross-correlating the residuals with molecular spectral templates and measure the radial velocity of the planet relative to the star. Furthermore, we compute contrast grids for molecular mapping by injecting fake planets. We detect a strong signal from H$_{2}$O and CO but not from CH$_{4}$ or CO$_{2}$. This result corroborates the hypothesis of chemical disequilibrium in the atmosphere of AF Lep b. Our measurement of the RV of the planet yields $\Delta v_{\mathrm{R,P\star}} = 7.8 \pm 1.7$ km s$^{-1}$. This enables us to disentangle the degeneracy of the orbital solution, namely the correct longitude of the ascending node is $\Omega=248^{+0.4}_{-0.7}$ deg and the argument of periapsis is $\omega=109^{+13}_{-21}$ deg. Our results demonstrate the competitiveness of the new ERIS/SPIFFIER instrument for the orbital and atmospheric characterisation of exoplanets at high contrast and small angular separation.
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Jean Hayoz, Markus Johannes Bonse, Felix Dannert, Emily Omaya Garvin, Gabriele Cugno, Polychronis Patapis, Timothy D. Gebhard, William O. Balmer, Robert J. De Rosa, Alexander Agudo Berbel, Yixian Cao, Gilles Orban de Xivry, Tomas Stolker, Richard Davies, Olivier Absil, Hans Martin Schmid, Sascha Patrick Quanz, Guido Agapito, Andrea Baruffolo, Martin Black, Marco Bonaglia, Runa Briguglio, Luca Carbonaro, Giovanni Cresci, Yigit Dallilar, Matthias Deysenroth, Ivan Di Antonio, Amico Di Cianno, Gianluca Di Rico, David Doelman, Mauro Dolci, Frank Eisenhauer, Simone Esposito, Daniela Fantinel, Debora Ferruzzi, Helmut Feuchtgruber, Natascha Förster-Schreiber, Xiaofeng Gao, Reinhard Genzel, Stefan Gillessen, Adrian Glauser, Paolo Grani, Michael Hartl, David Henry, Heinrich Huber, Christoph Keller, Matthew Kenworthy, Kateryna Kravchenko, John Lightfoot, David Lunney, Dieter Lutz, Mike Macintosh, Filippo Manucci, Thomas Ott, David Pearson, Alfio Puglisi, Sebastian Rabien, Christian Rau, Armando Riccardi, Bernardo Salasnich, Taro Shimizu, Frans Snik, Eckhard Sturm, Linda Tacconi, William Taylor, Angelo Valentini, Christopher Waring, Erich Wiezorrek, Marco Xompero. 2025-02-27. High-contrast spectroscopy with the new VLT/ERIS instrument: Molecular maps and radial velocity of the gas giant AF Lep b. https://doi.org/10.1051/0004-6361%2F202453297
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