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JWST-SUPER I: New insights into irradiated warm Neptunes atmospheres from MIRI observations of HD 106315 c

Published 9 Sep 2026 in astro-ph.EP | (2609.09893v1)

Abstract: Sulphur-bearing molecules have recently emerged as powerful tracers of atmospheric photochemistry in exoplanets observed with JWST. In several warm giant planets, SO<em>2<em>2 has been detected as a product of UV-driven chemical processing, suggesting a close connection between stellar irradiation, atmospheric metallicity, and sulphur chemistry. Whether these trends extend to Neptune-mass planets orbiting hotter stars remains largely unexplored. We investigate the atmospheric composition of the warm Neptune HD 106315 c, a Neptune-mass planet orbiting an F-type host star and subjected to a strong ultraviolet (UV) irradiation environment. Here, we report the low-resolution transmission spectrum between 5 and 12 μμm of HD 106315 c obtained with the MIRI Low-Resolution Spectrometer on-board JWST. Our work also includes re-analysis of archival data from HST WFC3 G141 mode of HD 106315 c, as well as contemporaneous XMM and Swift monitoring of the star in the UV and X-ray wavelength ranges. Together with the archival HST WFC3 data, we detect H2_2O and find tentative evidence for NH3_3, retrieving abundances of log</em>10\log</em>{10}(H<em>2<em>2O)=1.40<sup>+0.40</sup></em>0.74=-1.40<sup>{+0.40}</sup></em>{-0.74} and log10\log_{10}(NH<em>3<em>3)=2.47<sup>+0.57</sup></em>0.89=-2.47<sup>{+0.57}</sup></em>{-0.89}, together with an isothermal terminator temperature of 747<sup>+150155747<sup>{+150}_{-155} K. We place stringent upper limits on CH4_4, SO2_2, and CS2_2, finding no robust evidence for any sulphur-bearing species despite the intense irradiation received by the planet. The inferred water abundance implies a strongly metal-enriched atmosphere. Elevated intrinsic temperatures can reconcile the non-detections of CH4_4 and CS2_2 through carbon--sulphur coupling, while the absence of SO2_2 points toward a reduced atmospheric sulphur inventory or a near-solar to mildly enhanced C/O ratio, and places HD 106315 c near the transition between sulphur-rich and sulphur-poor chemical regimes.

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