V. Bourrier, D. Ehrenreich, M. Lendl et al.: Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS): III. Atmospheric structure of the misaligned ultra-hot Jupiter WASP-121b. In: Astronomy & Astrophysics. Band635, März 2020, ISSN0004-6361, S.A205, doi:10.1051/0004-6361/201936640 (aanda.org [abgerufen am 12. Februar 2025]).
S. R. Merritt, N. P. Gibson, S. K. Nugroho, E. J. W. de Mooij, M. J. Hooton, S. M. Matthews, L. K. McKemmish, T. Mikal-Evans, N. Nikolov, D. K. Sing, J. J. Spake: Non-detection of TiO and VO in the atmosphere of WASP-121b using high-resolution spectroscopy. In: Astronomy & Astrophysics. 636. Jahrgang, 1. April 2020, ISSN0004-6361, S.A117, doi:10.1051/0004-6361/201937409, arxiv:2002.02795, bibcode:2020A&A...636A.117M (englisch, aanda.org).
H. J. Hoeijmakers, J. V. Seidel, L. Pino et al.: Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS): IV. A spectral inventory of atoms and molecules in the high-resolution transmission spectrum of WASP-121 b. In: Astronomy & Astrophysics. Band641, September 2020, ISSN0004-6361, S.A123, doi:10.1051/0004-6361/202038365, arxiv:2006.11308 [astro-ph], bibcode:2020A&A...641A.123H (englisch, aanda.org [abgerufen am 14. Februar 2025]).
T. Azevedo Silva, O. D. S. Demangeon, N. C. Santos, et la.: Detection of barium in the atmospheres of the ultra-hot gas giants WASP-76b and WASP-121b: Together with new detections of Co and Sr+ on WASP-121b. In: Astronomy & Astrophysics. Band666, Oktober 2022, ISSN0004-6361, S.L10, doi:10.1051/0004-6361/202244489, arxiv:2210.06892 [astro-ph], bibcode:2022A&A...666L..10A (englisch, aanda.org [abgerufen am 14. Februar 2025]).
David K. Sing, Thomas M. Evans-Soma, Zafar Rustamkulov et al.: An Absolute Mass, Precise Age, and Hints of Planetary Winds for WASP-121A and b from a JWST NIRSpec Phase Curve. In: The Astronomical Journal. Band168, Nr.6, 1. Dezember 2024, ISSN0004-6256, S.231, doi:10.3847/1538-3881/ad7fe7, arxiv:2501.03844 [astro-ph], bibcode:2024AJ....168..231S (englisch, iop.org [abgerufen am 18. Februar 2025]).
L. Delrez, A. Santerne, J.-M. Almenara et al.: WASP-121 b: a hot Jupiter close to tidal disruption transiting an active F star. In: Monthly Notices of the Royal Astronomical Society. Band458, Nr.4. Oxford University Press im Namen der Royal Astronomical Society, 1. Juni 2016, ISSN0035-8711, S.4025–4043, doi:10.1093/mnras/stw522, arxiv:1506.02471 [astro-ph], bibcode:2016MNRAS.458.4025D (oup.com [abgerufen am 12. Februar 2025]).
Thomas Mikal-Evans, David K Sing, Jayesh M Goyal et al.: An emission spectrum for WASP-121b measured across the 0.8–1.1 μm wavelength range using the Hubble Space Telescope. In: Monthly Notices of the Royal Astronomical Society. Band488, Nr.2, 11. September 2019, ISSN0035-8711, S.2222–2234, doi:10.1093/mnras/stz1753, arxiv:1906.06326 [astro-ph], bibcode:2019MNRAS.488.2222M (englisch, oup.com [abgerufen am 13. Februar 2025]).
S. R. Merritt, N. P. Gibson, S. K. Nugroho, E. J. W. de Mooij, M. J. Hooton, S. M. Matthews, L. K. McKemmish, T. Mikal-Evans, N. Nikolov, D. K. Sing, J. J. Spake: Non-detection of TiO and VO in the atmosphere of WASP-121b using high-resolution spectroscopy. In: Astronomy & Astrophysics. 636. Jahrgang, 1. April 2020, ISSN0004-6361, S.A117, doi:10.1051/0004-6361/201937409, arxiv:2002.02795, bibcode:2020A&A...636A.117M (englisch, aanda.org).
Thomas Mikal-Evans, David K Sing, Tiffany Kataria et al.: Confirmation of water emission in the dayside spectrum of the ultrahot Jupiter WASP-121b. In: Monthly Notices of the Royal Astronomical Society. Band496, Nr.2, 1. August 2020, ISSN0035-8711, S.1638–1644, doi:10.1093/mnras/staa1628, arxiv:2005.09631 [astro-ph], bibcode:2020MNRAS.496.1638M (englisch, oup.com [abgerufen am 13. Februar 2025]).
Neale P Gibson, Stephanie Merritt, Stevanus K Nugroho et al.: Detection of Fe i in the atmosphere of the ultra-hot Jupiter WASP-121b, and a new likelihood-based approach for Doppler-resolved spectroscopy. In: Monthly Notices of the Royal Astronomical Society. Band493, Nr.2, 1. April 2020, ISSN0035-8711, S.2215–2228, doi:10.1093/mnras/staa228, arxiv:2001.06430 [astro-ph], bibcode:2020MNRAS.493.2215G (englisch, oup.com [abgerufen am 13. Februar 2025]).
Samuel H C Cabot, Nikku Madhusudhan, Luis Welbanks, Anjali Piette, Siddharth Gandhi: Detection of neutral atomic species in the ultra-hot Jupiter WASP-121b. In: Monthly Notices of the Royal Astronomical Society. Band494, Nr.1, 1. Mai 2020, ISSN0035-8711, S.363–377, doi:10.1093/mnras/staa748, arxiv:2001.07196 [astro-ph], bibcode:2020MNRAS.494..363C (englisch, oup.com [abgerufen am 13. Februar 2025]).
H. J. Hoeijmakers, J. V. Seidel, L. Pino et al.: Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS): IV. A spectral inventory of atoms and molecules in the high-resolution transmission spectrum of WASP-121 b. In: Astronomy & Astrophysics. Band641, September 2020, ISSN0004-6361, S.A123, doi:10.1051/0004-6361/202038365, arxiv:2006.11308 [astro-ph], bibcode:2020A&A...641A.123H (englisch, aanda.org [abgerufen am 14. Februar 2025]).
Stephanie R Merritt, Neale P Gibson, Stevanus K Nugroho et al.: An inventory of atomic species in the atmosphere of WASP-121b using UVES high-resolution spectroscopy. In: Monthly Notices of the Royal Astronomical Society. Band506, Nr.3, 29. Juli 2021, ISSN0035-8711, S.3853–3871, doi:10.1093/mnras/stab1878, arxiv:2106.15394 [astro-ph], bibcode:2021MNRAS.506.3853M (englisch, oup.com [abgerufen am 14. Februar 2025]).
David K. Sing, Panayotis Lavvas, Gilda E. Ballester et al.: The Hubble Space Telescope PanCET Program: Exospheric Mg ii and Fe ii in the Near-ultraviolet Transmission Spectrum of WASP-121b Using Jitter Decorrelation. In: The Astronomical Journal. Band158, Nr.2, 1. August 2019, ISSN0004-6256, S.91, doi:10.3847/1538-3881/ab2986, arxiv:1908.00619 [astro-ph], bibcode:2019AJ....158...91S (englisch, iop.org [abgerufen am 14. Februar 2025]).
T. Azevedo Silva, O. D. S. Demangeon, N. C. Santos, et la.: Detection of barium in the atmospheres of the ultra-hot gas giants WASP-76b and WASP-121b: Together with new detections of Co and Sr+ on WASP-121b. In: Astronomy & Astrophysics. Band666, Oktober 2022, ISSN0004-6361, S.L10, doi:10.1051/0004-6361/202244489, arxiv:2210.06892 [astro-ph], bibcode:2022A&A...666L..10A (englisch, aanda.org [abgerufen am 14. Februar 2025]).
Jamie Wilson, Neale P Gibson, Joshua D Lothringer et al.: Gemini/GMOS optical transmission spectroscopy of WASP-121b: signs of variability in an ultra-hot Jupiter? In: Monthly Notices of the Royal Astronomical Society. Band503, Nr.4, 8. April 2021, ISSN0035-8711, S.4787–4801, doi:10.1093/mnras/stab797, arxiv:2103.05698 [astro-ph], bibcode:2021MNRAS.503.4787W (englisch, oup.com [abgerufen am 14. Februar 2025]).
V. Bourrier, D. Ehrenreich, M. Lendl et al.: Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS): III. Atmospheric structure of the misaligned ultra-hot Jupiter WASP-121b. In: Astronomy & Astrophysics. Band635, März 2020, ISSN0004-6361, S.A205, doi:10.1051/0004-6361/201936640 (aanda.org [abgerufen am 12. Februar 2025]).
David K. Sing, Thomas M. Evans-Soma, Zafar Rustamkulov et al.: An Absolute Mass, Precise Age, and Hints of Planetary Winds for WASP-121A and b from a JWST NIRSpec Phase Curve. In: The Astronomical Journal. Band168, Nr.6, 1. Dezember 2024, ISSN0004-6256, S.231, doi:10.3847/1538-3881/ad7fe7, arxiv:2501.03844 [astro-ph], bibcode:2024AJ....168..231S (englisch, iop.org [abgerufen am 18. Februar 2025]).
L. Delrez, A. Santerne, J.-M. Almenara et al.: WASP-121 b: a hot Jupiter close to tidal disruption transiting an active F star. In: Monthly Notices of the Royal Astronomical Society. Band458, Nr.4. Oxford University Press im Namen der Royal Astronomical Society, 1. Juni 2016, ISSN0035-8711, S.4025–4043, doi:10.1093/mnras/stw522, arxiv:1506.02471 [astro-ph], bibcode:2016MNRAS.458.4025D (oup.com [abgerufen am 12. Februar 2025]).
Thomas Mikal-Evans, David K Sing, Jayesh M Goyal et al.: An emission spectrum for WASP-121b measured across the 0.8–1.1 μm wavelength range using the Hubble Space Telescope. In: Monthly Notices of the Royal Astronomical Society. Band488, Nr.2, 11. September 2019, ISSN0035-8711, S.2222–2234, doi:10.1093/mnras/stz1753, arxiv:1906.06326 [astro-ph], bibcode:2019MNRAS.488.2222M (englisch, oup.com [abgerufen am 13. Februar 2025]).
S. R. Merritt, N. P. Gibson, S. K. Nugroho, E. J. W. de Mooij, M. J. Hooton, S. M. Matthews, L. K. McKemmish, T. Mikal-Evans, N. Nikolov, D. K. Sing, J. J. Spake: Non-detection of TiO and VO in the atmosphere of WASP-121b using high-resolution spectroscopy. In: Astronomy & Astrophysics. 636. Jahrgang, 1. April 2020, ISSN0004-6361, S.A117, doi:10.1051/0004-6361/201937409, arxiv:2002.02795, bibcode:2020A&A...636A.117M (englisch, aanda.org).
Thomas Mikal-Evans, David K Sing, Tiffany Kataria et al.: Confirmation of water emission in the dayside spectrum of the ultrahot Jupiter WASP-121b. In: Monthly Notices of the Royal Astronomical Society. Band496, Nr.2, 1. August 2020, ISSN0035-8711, S.1638–1644, doi:10.1093/mnras/staa1628, arxiv:2005.09631 [astro-ph], bibcode:2020MNRAS.496.1638M (englisch, oup.com [abgerufen am 13. Februar 2025]).
Neale P Gibson, Stephanie Merritt, Stevanus K Nugroho et al.: Detection of Fe i in the atmosphere of the ultra-hot Jupiter WASP-121b, and a new likelihood-based approach for Doppler-resolved spectroscopy. In: Monthly Notices of the Royal Astronomical Society. Band493, Nr.2, 1. April 2020, ISSN0035-8711, S.2215–2228, doi:10.1093/mnras/staa228, arxiv:2001.06430 [astro-ph], bibcode:2020MNRAS.493.2215G (englisch, oup.com [abgerufen am 13. Februar 2025]).
Samuel H C Cabot, Nikku Madhusudhan, Luis Welbanks, Anjali Piette, Siddharth Gandhi: Detection of neutral atomic species in the ultra-hot Jupiter WASP-121b. In: Monthly Notices of the Royal Astronomical Society. Band494, Nr.1, 1. Mai 2020, ISSN0035-8711, S.363–377, doi:10.1093/mnras/staa748, arxiv:2001.07196 [astro-ph], bibcode:2020MNRAS.494..363C (englisch, oup.com [abgerufen am 13. Februar 2025]).
H. J. Hoeijmakers, J. V. Seidel, L. Pino et al.: Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS): IV. A spectral inventory of atoms and molecules in the high-resolution transmission spectrum of WASP-121 b. In: Astronomy & Astrophysics. Band641, September 2020, ISSN0004-6361, S.A123, doi:10.1051/0004-6361/202038365, arxiv:2006.11308 [astro-ph], bibcode:2020A&A...641A.123H (englisch, aanda.org [abgerufen am 14. Februar 2025]).
Stephanie R Merritt, Neale P Gibson, Stevanus K Nugroho et al.: An inventory of atomic species in the atmosphere of WASP-121b using UVES high-resolution spectroscopy. In: Monthly Notices of the Royal Astronomical Society. Band506, Nr.3, 29. Juli 2021, ISSN0035-8711, S.3853–3871, doi:10.1093/mnras/stab1878, arxiv:2106.15394 [astro-ph], bibcode:2021MNRAS.506.3853M (englisch, oup.com [abgerufen am 14. Februar 2025]).
David K. Sing, Panayotis Lavvas, Gilda E. Ballester et al.: The Hubble Space Telescope PanCET Program: Exospheric Mg ii and Fe ii in the Near-ultraviolet Transmission Spectrum of WASP-121b Using Jitter Decorrelation. In: The Astronomical Journal. Band158, Nr.2, 1. August 2019, ISSN0004-6256, S.91, doi:10.3847/1538-3881/ab2986, arxiv:1908.00619 [astro-ph], bibcode:2019AJ....158...91S (englisch, iop.org [abgerufen am 14. Februar 2025]).
T. Azevedo Silva, O. D. S. Demangeon, N. C. Santos, et la.: Detection of barium in the atmospheres of the ultra-hot gas giants WASP-76b and WASP-121b: Together with new detections of Co and Sr+ on WASP-121b. In: Astronomy & Astrophysics. Band666, Oktober 2022, ISSN0004-6361, S.L10, doi:10.1051/0004-6361/202244489, arxiv:2210.06892 [astro-ph], bibcode:2022A&A...666L..10A (englisch, aanda.org [abgerufen am 14. Februar 2025]).
Jamie Wilson, Neale P Gibson, Joshua D Lothringer et al.: Gemini/GMOS optical transmission spectroscopy of WASP-121b: signs of variability in an ultra-hot Jupiter? In: Monthly Notices of the Royal Astronomical Society. Band503, Nr.4, 8. April 2021, ISSN0035-8711, S.4787–4801, doi:10.1093/mnras/stab797, arxiv:2103.05698 [astro-ph], bibcode:2021MNRAS.503.4787W (englisch, oup.com [abgerufen am 14. Februar 2025]).
Julia V. Seidel, Bibiana Prinoth, Lorenzo Pino et al.: Vertical structure of an exoplanet’s atmospheric jet stream. In: Nature. 18. Februar 2025, ISSN0028-0836, doi:10.1038/s41586-025-08664-1 (englisch, nature.com [abgerufen am 18. Februar 2025]).
Thomas M. Evans-Soma, David K. Sing, Joanna K. Barstow, Anjali A. A. Piette, Jake Taylor, Joshua D. Lothringer, Henrique Reggiani, Jayesh M. Goyal, Eva-Maria Ahrer, Nathan J. Mayne, Zafar Rustamkulov, Tiffany Kataria, Duncan A. Christie, Cyril Gapp, Jiayin Dong, Daniel Foreman-Mackey, Soichiro Hattori, Mark S. Marley: SiO and a super-stellar C/O ratio in the atmosphere of the giant exoplanet WASP-121 b. In: Nature Astronomy. 2. Juni 2025, ISSN2397-3366, doi:10.1038/s41550-025-02513-x (nature.com [abgerufen am 2. Juni 2025]).
Cyril Gapp, Thomas M. Evans-Soma, Joanna K. Barstow, Joshua D. Lothringer, David K. Sing, Djemma Ruseva, Eva-Maria Ahrer, Jayesh M. Goyal, Duncan Christie, Laura Kreidberg, Nathan J. Mayne: WASP-121 b’s Transmission Spectrum Observed with JWST/NIRSpec G395H Reveals Thermal Dissociation and SiO in the Atmosphere. In: The Astronomical Journal. Band169, Nr.6, 2. Juni 2025, ISSN0004-6256, S.341, doi:10.3847/1538-3881/ad9c6e (iop.org [abgerufen am 2. Juni 2025]).
David K. Sing, Thomas M. Evans-Soma, Zafar Rustamkulov et al.: An Absolute Mass, Precise Age, and Hints of Planetary Winds for WASP-121A and b from a JWST NIRSpec Phase Curve. In: The Astronomical Journal. Band168, Nr.6, 1. Dezember 2024, ISSN0004-6256, S.231, doi:10.3847/1538-3881/ad7fe7, arxiv:2501.03844 [astro-ph], bibcode:2024AJ....168..231S (englisch, iop.org [abgerufen am 18. Februar 2025]).
L. Delrez, A. Santerne, J.-M. Almenara et al.: WASP-121 b: a hot Jupiter close to tidal disruption transiting an active F star. In: Monthly Notices of the Royal Astronomical Society. Band458, Nr.4. Oxford University Press im Namen der Royal Astronomical Society, 1. Juni 2016, ISSN0035-8711, S.4025–4043, doi:10.1093/mnras/stw522, arxiv:1506.02471 [astro-ph], bibcode:2016MNRAS.458.4025D (oup.com [abgerufen am 12. Februar 2025]).
Thomas Mikal-Evans, David K Sing, Jayesh M Goyal et al.: An emission spectrum for WASP-121b measured across the 0.8–1.1 μm wavelength range using the Hubble Space Telescope. In: Monthly Notices of the Royal Astronomical Society. Band488, Nr.2, 11. September 2019, ISSN0035-8711, S.2222–2234, doi:10.1093/mnras/stz1753, arxiv:1906.06326 [astro-ph], bibcode:2019MNRAS.488.2222M (englisch, oup.com [abgerufen am 13. Februar 2025]).
S. R. Merritt, N. P. Gibson, S. K. Nugroho, E. J. W. de Mooij, M. J. Hooton, S. M. Matthews, L. K. McKemmish, T. Mikal-Evans, N. Nikolov, D. K. Sing, J. J. Spake: Non-detection of TiO and VO in the atmosphere of WASP-121b using high-resolution spectroscopy. In: Astronomy & Astrophysics. 636. Jahrgang, 1. April 2020, ISSN0004-6361, S.A117, doi:10.1051/0004-6361/201937409, arxiv:2002.02795, bibcode:2020A&A...636A.117M (englisch, aanda.org).
Thomas Mikal-Evans, David K Sing, Tiffany Kataria et al.: Confirmation of water emission in the dayside spectrum of the ultrahot Jupiter WASP-121b. In: Monthly Notices of the Royal Astronomical Society. Band496, Nr.2, 1. August 2020, ISSN0035-8711, S.1638–1644, doi:10.1093/mnras/staa1628, arxiv:2005.09631 [astro-ph], bibcode:2020MNRAS.496.1638M (englisch, oup.com [abgerufen am 13. Februar 2025]).
Neale P Gibson, Stephanie Merritt, Stevanus K Nugroho et al.: Detection of Fe i in the atmosphere of the ultra-hot Jupiter WASP-121b, and a new likelihood-based approach for Doppler-resolved spectroscopy. In: Monthly Notices of the Royal Astronomical Society. Band493, Nr.2, 1. April 2020, ISSN0035-8711, S.2215–2228, doi:10.1093/mnras/staa228, arxiv:2001.06430 [astro-ph], bibcode:2020MNRAS.493.2215G (englisch, oup.com [abgerufen am 13. Februar 2025]).
Samuel H C Cabot, Nikku Madhusudhan, Luis Welbanks, Anjali Piette, Siddharth Gandhi: Detection of neutral atomic species in the ultra-hot Jupiter WASP-121b. In: Monthly Notices of the Royal Astronomical Society. Band494, Nr.1, 1. Mai 2020, ISSN0035-8711, S.363–377, doi:10.1093/mnras/staa748, arxiv:2001.07196 [astro-ph], bibcode:2020MNRAS.494..363C (englisch, oup.com [abgerufen am 13. Februar 2025]).
H. J. Hoeijmakers, J. V. Seidel, L. Pino et al.: Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS): IV. A spectral inventory of atoms and molecules in the high-resolution transmission spectrum of WASP-121 b. In: Astronomy & Astrophysics. Band641, September 2020, ISSN0004-6361, S.A123, doi:10.1051/0004-6361/202038365, arxiv:2006.11308 [astro-ph], bibcode:2020A&A...641A.123H (englisch, aanda.org [abgerufen am 14. Februar 2025]).
Stephanie R Merritt, Neale P Gibson, Stevanus K Nugroho et al.: An inventory of atomic species in the atmosphere of WASP-121b using UVES high-resolution spectroscopy. In: Monthly Notices of the Royal Astronomical Society. Band506, Nr.3, 29. Juli 2021, ISSN0035-8711, S.3853–3871, doi:10.1093/mnras/stab1878, arxiv:2106.15394 [astro-ph], bibcode:2021MNRAS.506.3853M (englisch, oup.com [abgerufen am 14. Februar 2025]).
David K. Sing, Panayotis Lavvas, Gilda E. Ballester et al.: The Hubble Space Telescope PanCET Program: Exospheric Mg ii and Fe ii in the Near-ultraviolet Transmission Spectrum of WASP-121b Using Jitter Decorrelation. In: The Astronomical Journal. Band158, Nr.2, 1. August 2019, ISSN0004-6256, S.91, doi:10.3847/1538-3881/ab2986, arxiv:1908.00619 [astro-ph], bibcode:2019AJ....158...91S (englisch, iop.org [abgerufen am 14. Februar 2025]).
T. Azevedo Silva, O. D. S. Demangeon, N. C. Santos, et la.: Detection of barium in the atmospheres of the ultra-hot gas giants WASP-76b and WASP-121b: Together with new detections of Co and Sr+ on WASP-121b. In: Astronomy & Astrophysics. Band666, Oktober 2022, ISSN0004-6361, S.L10, doi:10.1051/0004-6361/202244489, arxiv:2210.06892 [astro-ph], bibcode:2022A&A...666L..10A (englisch, aanda.org [abgerufen am 14. Februar 2025]).
Jamie Wilson, Neale P Gibson, Joshua D Lothringer et al.: Gemini/GMOS optical transmission spectroscopy of WASP-121b: signs of variability in an ultra-hot Jupiter? In: Monthly Notices of the Royal Astronomical Society. Band503, Nr.4, 8. April 2021, ISSN0035-8711, S.4787–4801, doi:10.1093/mnras/stab797, arxiv:2103.05698 [astro-ph], bibcode:2021MNRAS.503.4787W (englisch, oup.com [abgerufen am 14. Februar 2025]).
David K. Sing, Thomas M. Evans-Soma, Zafar Rustamkulov et al.: An Absolute Mass, Precise Age, and Hints of Planetary Winds for WASP-121A and b from a JWST NIRSpec Phase Curve. In: The Astronomical Journal. Band168, Nr.6, 1. Dezember 2024, ISSN0004-6256, S.231, doi:10.3847/1538-3881/ad7fe7, arxiv:2501.03844 [astro-ph], bibcode:2024AJ....168..231S (englisch, iop.org [abgerufen am 18. Februar 2025]).
David K. Sing, Panayotis Lavvas, Gilda E. Ballester et al.: The Hubble Space Telescope PanCET Program: Exospheric Mg ii and Fe ii in the Near-ultraviolet Transmission Spectrum of WASP-121b Using Jitter Decorrelation. In: The Astronomical Journal. Band158, Nr.2, 1. August 2019, ISSN0004-6256, S.91, doi:10.3847/1538-3881/ab2986, arxiv:1908.00619 [astro-ph], bibcode:2019AJ....158...91S (englisch, iop.org [abgerufen am 14. Februar 2025]).
Cyril Gapp, Thomas M. Evans-Soma, Joanna K. Barstow, Joshua D. Lothringer, David K. Sing, Djemma Ruseva, Eva-Maria Ahrer, Jayesh M. Goyal, Duncan Christie, Laura Kreidberg, Nathan J. Mayne: WASP-121 b’s Transmission Spectrum Observed with JWST/NIRSpec G395H Reveals Thermal Dissociation and SiO in the Atmosphere. In: The Astronomical Journal. Band169, Nr.6, 2. Juni 2025, ISSN0004-6256, S.341, doi:10.3847/1538-3881/ad9c6e (iop.org [abgerufen am 2. Juni 2025]).
Julia V. Seidel, Bibiana Prinoth, Lorenzo Pino et al.: Vertical structure of an exoplanet’s atmospheric jet stream. In: Nature. 18. Februar 2025, ISSN0028-0836, doi:10.1038/s41586-025-08664-1 (englisch, nature.com [abgerufen am 18. Februar 2025]).
Thomas M. Evans-Soma, David K. Sing, Joanna K. Barstow, Anjali A. A. Piette, Jake Taylor, Joshua D. Lothringer, Henrique Reggiani, Jayesh M. Goyal, Eva-Maria Ahrer, Nathan J. Mayne, Zafar Rustamkulov, Tiffany Kataria, Duncan A. Christie, Cyril Gapp, Jiayin Dong, Daniel Foreman-Mackey, Soichiro Hattori, Mark S. Marley: SiO and a super-stellar C/O ratio in the atmosphere of the giant exoplanet WASP-121 b. In: Nature Astronomy. 2. Juni 2025, ISSN2397-3366, doi:10.1038/s41550-025-02513-x (nature.com [abgerufen am 2. Juni 2025]).
L. Delrez, A. Santerne, J.-M. Almenara et al.: WASP-121 b: a hot Jupiter close to tidal disruption transiting an active F star. In: Monthly Notices of the Royal Astronomical Society. Band458, Nr.4. Oxford University Press im Namen der Royal Astronomical Society, 1. Juni 2016, ISSN0035-8711, S.4025–4043, doi:10.1093/mnras/stw522, arxiv:1506.02471 [astro-ph], bibcode:2016MNRAS.458.4025D (oup.com [abgerufen am 12. Februar 2025]).
Thomas Mikal-Evans, David K Sing, Jayesh M Goyal et al.: An emission spectrum for WASP-121b measured across the 0.8–1.1 μm wavelength range using the Hubble Space Telescope. In: Monthly Notices of the Royal Astronomical Society. Band488, Nr.2, 11. September 2019, ISSN0035-8711, S.2222–2234, doi:10.1093/mnras/stz1753, arxiv:1906.06326 [astro-ph], bibcode:2019MNRAS.488.2222M (englisch, oup.com [abgerufen am 13. Februar 2025]).
Thomas Mikal-Evans, David K Sing, Tiffany Kataria et al.: Confirmation of water emission in the dayside spectrum of the ultrahot Jupiter WASP-121b. In: Monthly Notices of the Royal Astronomical Society. Band496, Nr.2, 1. August 2020, ISSN0035-8711, S.1638–1644, doi:10.1093/mnras/staa1628, arxiv:2005.09631 [astro-ph], bibcode:2020MNRAS.496.1638M (englisch, oup.com [abgerufen am 13. Februar 2025]).
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