[
    {
        "id": "authors:bvf9w-v0w08",
        "collection": "authors",
        "collection_id": "bvf9w-v0w08",
        "cite_using_url": "https://authors.library.caltech.edu/records/bvf9w-v0w08",
        "type": "article",
        "title": "An unidentified absorption feature at 5.11 \u03bcm on the surfaces of Titan and Pluto from JWST spectroscopy",
        "author": [
            {
                "family_name": "B\u00e9zard",
                "given_name": "B.",
                "orcid": "0000-0002-5433-5661"
            },
            {
                "family_name": "Lellouch",
                "given_name": "E.",
                "orcid": "0000-0001-7168-1577"
            },
            {
                "family_name": "Camarca",
                "given_name": "M.",
                "orcid": "0000-0003-3887-4080",
                "clpid": "Camarca-Maria"
            },
            {
                "family_name": "Lunine",
                "given_name": "J. I.",
                "orcid": "0000-0003-2279-4131",
                "clpid": "Lunine-Jonathan-Irving"
            },
            {
                "family_name": "Quirico",
                "given_name": "E.",
                "orcid": "0000-0003-2768-0694"
            },
            {
                "family_name": "Nixon",
                "given_name": "C. A.",
                "orcid": "0000-0001-9540-9121"
            },
            {
                "family_name": "Teanby",
                "given_name": "N. A.",
                "orcid": "0000-0003-3108-5775"
            },
            {
                "family_name": "Rannou",
                "given_name": "P.",
                "orcid": "0000-0003-0836-723X"
            },
            {
                "family_name": "Rodriguez",
                "given_name": "S.",
                "orcid": "0000-0003-1219-0641"
            },
            {
                "family_name": "Es-Sayeh",
                "given_name": "M.",
                "orcid": "0000-0002-0643-4323"
            },
            {
                "family_name": "Trumbo",
                "given_name": "S. K.",
                "orcid": "0000-0002-0767-8901"
            },
            {
                "family_name": "Souza-Feliciano",
                "given_name": "A. C.",
                "orcid": "0000-0002-2414-1460"
            },
            {
                "family_name": "Lavvas",
                "given_name": "P.",
                "orcid": "0000-0002-5360-3660"
            },
            {
                "family_name": "Bertrand",
                "given_name": "T.",
                "orcid": "0000-0002-2302-9776"
            },
            {
                "family_name": "Wong",
                "given_name": "I.",
                "orcid": "0000-0001-9665-8429"
            },
            {
                "family_name": "Pinilla-Alonso",
                "given_name": "N.",
                "orcid": "0000-0002-2770-7896"
            },
            {
                "family_name": "Villanueva",
                "given_name": "G. L.",
                "orcid": "0000-0002-2662-5776"
            }
        ],
        "abstract": "<p><em>Context</em>. Titan possesses a thick N<sub>2</sub>&ndash;CH<sub>4</sub>&nbsp;atmosphere that makes its surface difficult to study spectroscopically. The chemical composition of Titan&rsquo;s solid surface therefore remains highly uncertain.</p>\n<p><em>Aims</em>. By leveraging JWST&rsquo;s high sensitivity and large spectral coverage, we searched for signatures from Titan&rsquo;s surface in the broad and less explored 5 &mu;m atmospheric window. We also investigated the JWST spectrum of Pluto, which has a thin Titan-like atmosphere.</p>\n<p><em>Methods</em>. We selected JWST NIRSpec and MIRI spectra around Titan&rsquo;s disk center and compared the average NIRSpec spectrum with a radiative transfer model that includes gas and haze opacity.</p>\n<p><em>Results</em>. We detect an unidentified absorption in both the NIRSpec and MIRI spectra of Titan, centered at 5.113 &mu;m (1956 cm<sup>&minus;1</sup>) and 6&ndash;7% deep. The width of the feature is 0.024 &plusmn; 0.0008 &mu;m (9.2 &plusmn; 0.3 cm<sup>&minus;1</sup>) in the NIRSpec spectrum recorded on the trailing side and possibly 25% narrower in the MIRI spectrum of the leading side. This absorption most likely originates from the surface. We could not identify this signature among published laboratory spectra of ices relevant to Titan&rsquo;s atmospheric compounds, but we present a few plausible candidates. A 4&ndash;5% deep absorption is also present in the MIRI spectrum of Pluto, but is about three times broader than on Titan&rsquo;s trailing side.</p>",
        "doi": "10.1051/0004-6361/202660810",
        "issn": "0004-6361",
        "publisher": "EDP Sciences",
        "publication": "Astronomy & Astrophysics",
        "publication_date": "2026-07",
        "volume": "711",
        "pages": "A294"
    },
    {
        "id": "authors:r2pn5-6wh12",
        "collection": "authors",
        "collection_id": "r2pn5-6wh12",
        "cite_using_url": "https://authors.library.caltech.edu/records/r2pn5-6wh12",
        "type": "article",
        "title": "Subsurface Thermophysical Properties of Europa's Leading and Trailing Hemispheres as Revealed by ALMA",
        "author": [
            {
                "family_name": "Thelen",
                "given_name": "Alexander E.",
                "orcid": "0000-0002-8178-1042",
                "clpid": "Thelen-Alexander-E"
            },
            {
                "family_name": "de Kleer",
                "given_name": "Katherine",
                "orcid": "0000-0002-9068-3428",
                "clpid": "de-Kleer-K-R"
            },
            {
                "family_name": "Camarca",
                "given_name": "Maria",
                "orcid": "0000-0003-3887-4080",
                "clpid": "Camarca-Maria"
            },
            {
                "family_name": "Akins",
                "given_name": "Alex",
                "orcid": "0000-0001-8379-1909",
                "clpid": "Akins-Alex"
            },
            {
                "family_name": "Gurwell",
                "given_name": "Mark",
                "orcid": "0000-0003-0685-3621",
                "clpid": "Gurwell-Mark"
            },
            {
                "family_name": "Butler",
                "given_name": "Bryan",
                "orcid": "0000-0002-5344-820X",
                "clpid": "Butler-Bryan"
            },
            {
                "family_name": "de Pater",
                "given_name": "Imke",
                "orcid": "0000-0002-4278-3168",
                "clpid": "de-Pater-Imke"
            }
        ],
        "abstract": "<div class=\"article-text wd-jnl-art-abstract cf\">\n<p>We present best-fit values of porosity&mdash;and the corresponding effective thermal inertiae&mdash;determined from three different depths in Europa's near-subsurface (&sim;1&ndash;20 cm). The porosity of the upper &sim;20 cm of Europa's subsurface varies between 75% and 50% (&Gamma;<sub>eff</sub>&nbsp;&asymp; 50&ndash;140 J m<sup>&minus;2</sup>&nbsp;K<sup>&minus;1</sup>&nbsp;s<sup>&minus;1/2</sup>) on the leading hemisphere and 50%&ndash;40% (&Gamma;<sub>eff</sub>&nbsp;&asymp; 140&ndash;180 J m<sup>&minus;2</sup>&nbsp;K<sup>&minus;1</sup>&nbsp;s<sup>&minus;1/2</sup>) on the trailing hemisphere. Residual maps produced by comparison with these models reveal thermally anomalous features that cannot be reproduced by globally homogeneous porosity models. These regions are compared to Europa's surface terrain and known compositional variations. We find that some instances of warm thermal anomalies are co-located with known geographical or compositional features on both the leading and trailing hemisphere; cool temperature anomalies are well correlated with surfaces previously observed to contain pure, crystalline water ice and the expansive rays of Pwyll crater. Anomalous regions correspond to locations with subsurface properties different from those of our best-fit models, such as potentially elevated thermal inertia, decreased emissivity, or more porous regolith. We also find that ALMA observations at &sim;3 mm sound below the thermal skin depth of Europa (&sim;10&ndash;15 cm) for a range of porosity values, and thus do not exhibit features indicative of diurnal variability or residuals similar to other frequency bands. Future observations of Europa at higher angular resolution may reveal additional locations of variable subsurface thermophysical properties, while those at other wavelengths will inform our understanding of the regolith compaction length and the effects of external processes on the shallow subsurface.</p>\n</div>",
        "doi": "10.3847/psj/ad251c",
        "issn": "2632-3338",
        "publisher": "American Astronomical Society",
        "publication": "Planetary Science Journal",
        "publication_date": "2024-02",
        "series_number": "2",
        "volume": "5",
        "issue": "2",
        "pages": "56"
    },
    {
        "id": "authors:k2ywp-g5y72",
        "collection": "authors",
        "collection_id": "k2ywp-g5y72",
        "cite_using_url": "https://resolver.caltech.edu/CaltechAUTHORS:20230221-191753000.3",
        "type": "article",
        "title": "The Optical Aurorae of Europa, Ganymede, and Callisto",
        "author": [
            {
                "family_name": "de Kleer",
                "given_name": "Katherine",
                "orcid": "0000-0002-9068-3428",
                "clpid": "de-Kleer-K-R"
            },
            {
                "family_name": "Milby",
                "given_name": "Zachariah",
                "orcid": "0000-0001-5683-0095",
                "clpid": "Milby-Zachariah"
            },
            {
                "family_name": "Schmidt",
                "given_name": "Carl",
                "orcid": "0000-0002-6917-3458",
                "clpid": "Schmidt-Carl"
            },
            {
                "family_name": "Camarca",
                "given_name": "Maria",
                "orcid": "0000-0003-3887-4080",
                "clpid": "Camarca-Maria"
            },
            {
                "family_name": "Brown",
                "given_name": "Michael E.",
                "orcid": "0000-0002-8255-0545",
                "clpid": "Brown-M-E"
            }
        ],
        "abstract": "The tenuous atmospheres of the Galilean satellites are sourced from their surfaces and produced by a combination of plasma-surface interactions and thermal processes. Even though they are thin, these atmospheres can be studied via their auroral emissions, and most work to date has focused on their aurorae at UV wavelengths. Here we present the first detections of the optical aurorae of Ganymede and Callisto, as well as detections of new optical auroral lines at Europa, based on observations of the targets over 10 Jupiter eclipses from 1998 to 2021 with Keck/HIRES. We present measurements of O i emission at 6300/6364, 5577, 7774, and 8446 \u00c5 and place upper limits on hydrogen at 6563 \u00c5. These constitute the first detections of emissions at 7774 and 8446 \u00c5 at a planetary body other than Earth. The simultaneous measurement of multiple emission lines provides robust constraints on atmospheric composition. We find that the eclipse atmospheres of Europa and Ganymede are composed predominantly of O\u2082, with average column densities of (4.1 \u00b1 0.1) \u00d7 101\u2082 cm\u207b\u00b2 and (4.7 \u00b1 0.1) \u00d7 10\u2082 cm\u207b\u00b2, respectively. We find weak evidence for H2O in Europa's bulk atmosphere at an H\u2082O/O\u2082 ratio of \u223c0.25, and place only an upper limit on H\u2082O in Ganymede's bulk atmosphere, corresponding to H\u2082O/O\u2082 &lt; 0.6. The column density of O\u2082 derived for Callisto is (4.0 \u00b1 0.9) \u00d7 10\u00b9\u2075 cm\u207b\u00b2 for an assumed electron density of 0.15 cm\u207b\u00b3, but electron properties at Callisto's orbit are very poorly constrained.",
        "doi": "10.3847/psj/acb53c",
        "issn": "2632-3338",
        "publisher": "American Astronomical Society",
        "publication": "Planetary Science Journal",
        "publication_date": "2023-02",
        "series_number": "2",
        "volume": "4",
        "issue": "2",
        "pages": "Art. No. 37"
    },
    {
        "id": "authors:5etbp-dbv78",
        "collection": "authors",
        "collection_id": "5etbp-dbv78",
        "cite_using_url": "https://resolver.caltech.edu/CaltechAUTHORS:20211012-211827638",
        "type": "article",
        "title": "The Extraordinary Passage of Comet C/2020 F3 NEOWISE: Evidence for Heterogeneous Chemical Inventory in Its Nucleus",
        "author": [
            {
                "family_name": "Faggi",
                "given_name": "Sara",
                "orcid": "0000-0003-0194-5615",
                "clpid": "Faggi-Sara"
            },
            {
                "family_name": "Lippi",
                "given_name": "Manuela",
                "orcid": "0000-0001-9185-878X",
                "clpid": "Lippi-Manuela"
            },
            {
                "family_name": "Camarca",
                "given_name": "Maria",
                "orcid": "0000-0003-3887-4080",
                "clpid": "Camarca-Maria"
            },
            {
                "family_name": "Buzard",
                "given_name": "Camillus F.",
                "orcid": "0000-0002-9943-6124",
                "clpid": "Buzard-Cam"
            },
            {
                "family_name": "Villanueva",
                "given_name": "Geronimo L.",
                "orcid": "0000-0002-2662-5776",
                "clpid": "Villanueva-Geronimo-L"
            },
            {
                "family_name": "Doppmann",
                "given_name": "Gregory W.",
                "clpid": "Doppmann-Gregory-W"
            },
            {
                "family_name": "Blake",
                "given_name": "Geoffrey A.",
                "orcid": "0000-0003-0787-1610",
                "clpid": "Blake-G-A"
            },
            {
                "family_name": "Mumma",
                "given_name": "Michael J.",
                "orcid": "0000-0003-4627-750X",
                "clpid": "Mumma-Michael-J"
            }
        ],
        "abstract": "Upon its discovery in 2020 March, we requested Director Discretionary Time (DDT) at the NASA/IRTF facility to observe comet C/2020 F3 (NEOWISE), with the high-resolution spectrograph iSHELL. The comet approached the Sun, down to 0.3 au, in early 2020 July, providing a spectacular perihelion passage and revealing itself as one of the brightest comets that have appeared in the northern hemisphere in recent decades. Daytime observations with iSHELL/IRTF were performed to study the comet immediately after its perihelion passage, from 9 July to 1 August. In early August, a DDT at Keck Observatory was requested to continue following the comet with NIRSPEC 2.0. We acquired comprehensive high-resolution spectra of the comet as it progressively retreated from perihelion. We detected many cometary emission lines in the (2.8\u20135.3) \u03bcm range, identifying 12 molecular species: 9 primary volatiles (H\u2082O, HCN, NH\u2083, CO, C\u2082H\u2082, C\u2082H\u2086, CH\u2084, CH\u2083OH, and H\u2082CO) and 3 product species (CN, NH\u2082, OH). In this paper, we present the analysis and discussion of the molecular abundances found in this comet, and we compare them to reference median values for Oort Cloud Comets. Measured molecular mixing ratios showed drastic changes during our observing campaign, which spanned nearly one month from 2020 July 9 to August 6. Here, we provide a detailed discussion of the molecular spatial distributions and their role in identifying the presence of extended sources in the coma. Our investigations provided evidence for the heterogeneous chemical composition of the comet's nucleus.",
        "doi": "10.3847/1538-3881/ac179c",
        "issn": "0004-6256",
        "publisher": "American Astronomical Society",
        "publication": "Astronomical Journal",
        "publication_date": "2021-11",
        "series_number": "5",
        "volume": "162",
        "issue": "5",
        "pages": "Art. No. 178"
    },
    {
        "id": "authors:429nd-21s12",
        "collection": "authors",
        "collection_id": "429nd-21s12",
        "cite_using_url": "https://resolver.caltech.edu/CaltechAUTHORS:20210726-213747363",
        "type": "article",
        "title": "Asteroid 16 Psyche: Shape, Features, and Global Map",
        "author": [
            {
                "family_name": "Shepard",
                "given_name": "Michael K.",
                "orcid": "0000-0002-8441-2488",
                "clpid": "Shepard-Michael-K"
            },
            {
                "family_name": "de Kleer",
                "given_name": "Katherine",
                "orcid": "0000-0002-9068-3428",
                "clpid": "de-Kleer-K-R"
            },
            {
                "family_name": "Cambioni",
                "given_name": "Saverio",
                "orcid": "0000-0001-6294-4523",
                "clpid": "Cambioni-Saverio"
            },
            {
                "family_name": "Taylor",
                "given_name": "Patrick A.",
                "orcid": "0000-0002-2493-943X",
                "clpid": "Taylor-Patrick-A"
            },
            {
                "family_name": "Virkki",
                "given_name": "Anne K.",
                "orcid": "0000-0002-4129-5381",
                "clpid": "Virkki-Anne-K"
            },
            {
                "family_name": "R\u00edvera-Valentin",
                "given_name": "Edgard G.",
                "orcid": "0000-0002-4042-003X",
                "clpid": "R\u00edvera-Valentin-Edgard-G"
            },
            {
                "family_name": "Rodriguez Sanchez-Vahamonde",
                "given_name": "Carolina",
                "orcid": "0000-0002-0390-5054",
                "clpid": "Rodriguez-Sanchez-Vahamonde-Carolina"
            },
            {
                "family_name": "Fernanda Zambrano-Marin",
                "given_name": "Luisa",
                "orcid": "0000-0002-6615-4040",
                "clpid": "Fernanda-Zambrano-Marin-Luisa"
            },
            {
                "family_name": "Magri",
                "given_name": "Christopher",
                "orcid": "0000-0002-2200-4622",
                "clpid": "Magri-Christopher"
            },
            {
                "family_name": "Dunham",
                "given_name": "David",
                "orcid": "0000-0001-7527-4207",
                "clpid": "Dunham-David"
            },
            {
                "family_name": "Moore",
                "given_name": "John",
                "orcid": "0000-0001-8674-4817",
                "clpid": "Moore-John"
            },
            {
                "family_name": "Camarca",
                "given_name": "Maria",
                "orcid": "0000-0003-3887-4080",
                "clpid": "Camarca-Maria"
            }
        ],
        "abstract": "We develop a shape model of asteroid 16 Psyche using observations acquired in a wide range of wavelengths: Arecibo S-band delay-Doppler imaging, Atacama Large Millimeter Array (ALMA) plane-of-sky imaging, adaptive optics (AO) images from Keck and the Very Large Telescope (VLT), and a recent stellar occultation. Our shape model has dimensions 278 (\u22124/+8 km) \u00d7 238(\u22124/+6 km) \u00d7 171 km (\u22121/+5 km), an effective spherical diameter D_(eff) = 222-1/+4 km, and a spin axis (ecliptic lon, lat) of (36\u00b0, \u22128\u00b0) \u00b1 2\u00b0. We survey all the features previously reported to exist, tentatively identify several new features, and produce a global map of Psyche. Using 30 calibrated radar echoes, we find Psyche's overall radar albedo to be 0.34 \u00b1 0.08 suggesting that the upper meter of regolith has a significant metal (i.e., Fe\u2013Ni) content. We find four regions of enhanced or complex radar albedo, one of which correlates well with a previously identified feature on Psyche, and all of which appear to correlate with patches of relatively high optical albedo. Based on these findings, we cannot rule out a model of Psyche as a remnant core, but our preferred interpretation is that Psyche is a differentiated world with a regolith composition analogous to enstatite or CH/CB chondrites and peppered with localized regions of high metal concentrations. The most credible formation mechanism for these regions is ferrovolcanism as proposed by Johnson et al. (2020).",
        "doi": "10.3847/psj/abfdba",
        "issn": "2632-3338",
        "publisher": "American Astronomical Society",
        "publication": "Planetary Science Journal",
        "publication_date": "2021-08",
        "series_number": "4",
        "volume": "2",
        "issue": "4",
        "pages": "Art. No. 125"
    }
]