• 学术搜索
  • 科研智能体
    • Research Labs
    • AI 阅读
    • AI 文库
    • 深度研究
    • 学者亮点
  • 学术资源
    • AI2000
    • 期刊/会议
    • 学者库
    • 学术API
    • 溯源树
    • 数据集
  • 知识沉淀
    • 学术空间
订阅小程序
旧版功能
aminer vip
开通会员低至0.73元/天
一次搞定AI科研
立即登录
  • English
  • 联系方式
    哈

    哈佛 - 史密森尼天体物理中心

    Center for Astrophysics Harvard & Smithsonian
    院校EST. 1973
    2.7万论文总数
    169万引用总数

    论文量&引用量时间轴

    机构学者

    排序
    David Latham
    David Latham
    Department of Astronomy, Faculty of Arts and Sciences, Harvard University;Harvard-Smithsonian Center for Astrophysics;Smithsonian Astrophysical Observatory
    论文:749引用:0H-index:0
    Lars Hernquist
    Lars Hernquist
    Perkin Lab, Center for Astrophysics, Harvard & Smithsonian;Department of Astronomy, Harvard University
    论文:572引用:0H-index:0
    David J Wilner
    David J Wilner
    Radio and Geoastronomy Division, Center for Astrophysics, Harvard & Smithsonian;Smithsonian Astrophysical Observatory;Department of Astronomy, Faculty of Arts and Sciences, Harvard University
    论文:457引用:0H-index:0
    Martin S. Elvis
    Martin S. Elvis
    Harvard-Smithsonian Center for Astrophysics;New Mexico Institute for Mining & Technology;Harvard College Observatory
    论文:437引用:0H-index:0
    William Forman
    William Forman
    High Energy Astrophysics Division, Harvard-Smithsonian Center for Astrophysics;Center for Astrophysics, Harvard-Smithsonian Center for Astrophysics
    论文:427引用:0H-index:0
    John Raymond
    John Raymond
    Smithsonian Astrophysical Observatory;Center for Astrophysics, Harvard & Smithsonian
    论文:366引用:0H-index:0
    Josh Winn
    Josh Winn
    Department of Astrophysical Sciences, Princeton University
    论文:310引用:0H-index:0
    Christine Jones
    Christine Jones
    Harvard-Smithsonian Center for Astrophysics
    论文:304引用:0H-index:0
    Qizhou Zhang
    Qizhou Zhang
    Center for Astrophysics, Harvard & Smithsonian;Smithsonian Astrophysical Observatory
    论文:289引用:0H-index:0

    论文(10000)

    年份
    起
    –
    止
    排序
    1Overview of the JWST Advanced Deep Extragalactic Survey (JADES)
    Daniel J. Eisenstein,Chris Willott,Stacey Alberts,Santiago Arribas,Nina Bonaventura,Andrew J. Bunker,Alex J. Cameron,Stefano Carniani,Stephane Charlot,Emma Curtis-Lake,Francesco D'eugenio,Pierre Ferruit,

    We present an overview of the James Webb Space Telescope (JWST) Advanced Deep Extragalactic Survey (JADES), an ambitious program of infrared imaging and spectroscopy in the GOODS-S and GOODS-N deep fields, designed to study galaxy evolution from high redshift to cosmic noon. JADES uses about 770 hours of Cycle 1 guaranteed time largely from the Near-Infrared Camera (NIRCam) and Near-Infrared Spectrograph (NIRSpec) instrument teams. In GOODS-S, in and around the Hubble Ultra Deep Field and Chandra Deep Field South, JADES produces a deep imaging region of ~45 arcmin$^2$ with an average of 130 hrs of exposure time spread over 9 NIRCam filters. This is extended at medium depth in GOODS-S and GOODS-N with NIRCam imaging of ~175 arcmin$^2$ with an average exposure time of 20 hrs spread over 8-10 filters. In both fields, we conduct extensive NIRSpec multi-object spectroscopy, including 2 deep pointings of 55 hrs exposure time, 14 medium pointings of ~12 hrs, and 15 shallower pointings of ~4 hrs, targeting over 5000 HST and JWST-detected faint sources with 5 low, medium, and high-resolution dispersers covering 0.6-5.3 microns. Finally, JADES extends redward via coordinated parallels with the JWST Mid-Infrared Instrument (MIRI), featuring ~9 arcmin$^2$ with 43 hours of exposure at 7.7 microns and twice that area with 2-6.5 hours of exposure at 12.8 microns For nearly 30 years, the GOODS-S and GOODS-N fields have been developed as the premier deep fields on the sky; JADES is now providing a compelling start on the JWST legacy in these fields.

    2026ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES(2026)引用:112
    引用
    AI阅读
    加入学术空间
    2TOI-3288 B and TOI-4666 B: Two Gas Giants Transiting Low-Mass Stars Characterised by NIRPS
    Yolanda G. C. Frensch,Francois Bouchy,Gaspare Lo Curto, Alexandrine L'heureux, Roseane De Lima Gomes, Joao Faria,Xavier Dumusque,Lison Malo, Marion Cointepas, Avidaan Srivastava,Xavier Bonfils,Elisa Delgado-Mena,

    Context. Gas giant planets orbiting low-mass stars (T-eff less than or similar to 4600 K) are uncommon outcomes of planet formation. Increasing the sample of well-characterised giants around early M dwarfs will enable population-level studies of their properties, offering valuable insights into their formation and evolutionary histories. Aims. We aim to confirm and characterise giant exoplanets transiting M dwarfs identified by the TESS mission. To this end, we have started the Gas giAnts Transiting 1Ow-mass Stars (GATOS) programme within the NIRPS guaranteed time observations (GTO). Methods. High-resolution spectroscopic data were obtained in the optical and near-infrared (nIR), combining HARPS and NIRPS. We derived radial velocities (RVs) via the cross-correlation function and implemented a novel post-processing procedure to further mitigate telluric contamination in the nIR. The resulting RVs were jointly fit with TESS and ground-based photometry to derive the orbital and physical parameters of the systems. Results. We present the GATOS programme and its first results. We confirm two gas giants transiting the low-mass stars TOI-3288 A (K9V, T-eff = 3933 +/- 48 K) and TOI-4666 (M2.5V, T-eff = 3512 +/- 36 K). TOI-3288 A hosts a hot Jupiter with a mass of 2.11 +/- 0.08 M-Jup and a radius of 1.00 +/- 0.03 R-Jup, with an orbital period of 1.43 days (T-eq = 1059 +/- 20 K). TOI-4666 hosts a 0.70 +/- 0.06 M-Jup warm Jupiter (T-eq = 713 +/- 14 K) with a radius of 1.11 +/- 0.04 R-Jup, with an orbital period of 2.91 days. At a population level, we identify a decrease in planetary mass with spectral type, whereby late M dwarfs host less massive giant planets than early M dwarfs. More massive gas giants that deviate from this trend are preferentially hosted by more metal-rich stars. Furthermore, we find an increased binarity fraction among low-mass stars hosting gas giants, which may play a role in enhancing giant planet formation around low-mass stars. Conclusions. These mass characterisations contribute to the growing catalogue of well-defined giant exoplanets around low-mass stars. The observed population trends agree with theoretical predictions, whereby higher metallicity can compensate for lower disc masses, and wide binary systems may influence planet formation and migration through Kozai-Lidov cycles or disc instabilities.

    2026ASTRONOMY & ASTROPHYSICS(2026)引用:95
    引用
    AI阅读
    加入学术空间
    3Cyclopropanone: Preparation, Rotational Spectroscopy, and Semi-Experimental Equilibrium (r E SE) Structure
    W Hazel Styers,Brian J Esselman, Samuel A Wood, P Bryan Changala, Gregory H Jones, Michael C McCarthy,John F Stanton,R Claude Woods,Robert J McMahon

    We measured and analyzed the microwave (11-35 GHz) and millimeter-wave (85-750 GHz) rotational spectra of the normal isotopologue of cyclopropanone and nine additional isotopologues. The ability to perform experimental measurements is predicated on the synthesis of stable oligomers (or polymers) of cyclopropanone that release the monomeric form under vacuum to enable the investigation of cyclopropanone by gas-phase rotational spectroscopy. The spectral data provided in this work establish the foundation for radioastronomical searches for cyclopropanone. In particular, the new low-frequency microwave observations provide hyperfine-resolved rotational transitions that are necessary for radioastronomical observations at the low temperatures that characterize many cold interstellar molecular clouds. The extensive isotopic data set allows the first complete semiexperimental equilibrium (r e SE) structure of cyclopropanone. The 10 isotopologues used in this structure determination provide 30 moments of inertia. As a result, the values of all six independent structural parameters are highly converged, establishing a new experimental benchmark for the structure of this archetypal organic molecule. The highly precise and accurate r e SE structure was compared to a computed equilibrium (r e ) structure at the CCSD(T)/cc-pCV6Z level with additional corrections addressing finite basis set, higher-level electron correlation, and relativistic effects, as well as the diagonal Born-Oppenheimer correction. The computed r e structure systematically deviates from the r e SE structure, despite the high-level methodology utilized. This finding is interpreted as revealing a subtle, but real, challenge for theoretical chemistry in predicting molecular structure at the level of accuracy that is now attainable experimentally.

    2026引用:68
    引用
    AI阅读
    加入学术空间
    4NEXUS Early Data Release: NIRCam Imaging and WFSS Spectroscopy from the First (partial) Wide Epoch
    Ming-Yang Zhuang,Feige Wang,Fengwu Sun,Yue Shen,Junyao Li, Adam J. Burgasser,Xiaohui Fan,Jenny E. Greene,Gautham Narayan, Alice E. Shapley,Qian Yang

    We present the early data release of the multicycle JWST-NEXUS treasury program (2024–2028), which includes NIRCam imaging and WFSS observations from the first (partial) NEXUS-Wide epoch covering the central 100 arcmin ^2 of the NEXUS field, located near the north ecliptic pole and within the Euclid Ultra-Deep Field. We release reduced NIRCam mosaics (F090W, F115W, F150W, F200W, F356W, and F444W), photometric source catalogs, as well as preliminary WFSS spectra (in F322W2 and F444W) for the subset of bright sources (F356W <21 mag or F444W <21 mag). These observations fully cover the NEXUS-Deep area, and anchor the long-term baseline of the program. These data will be used for initial target selection for the NIRSpec/Multi-Object Spectroscopy (MOS) starting from 2025 June. The NIRCam imaging reaches depths of 27.4–28.2 (AB) mag in F090W–F444W. Upcoming NEXUS-Wide epochs will expand the area to the full ∼400 arcmin ^2 , and improve the NIRCam exposure depths in the Wide tier by a factor of 3. In addition, this central region will be repeatedly covered by the NEXUS-Deep observations (NIRCam imaging and NIRSpec/MOS PRISM spectroscopy) over 18 epochs with a ∼2 month cadence. We demonstrate the data quality of the first NEXUS observations, and showcase some example science cases enabled by these data.

    2026ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES(2026)引用:36
    引用
    AI阅读
    加入学术空间
    5Isotopic Ratios in the Disk of HD 163296
    Chunhua Qi, David J. Wilner,Catherine C. Espaillat

    Isotopic abundance ratios in protoplanetary disks are critical for understanding volatile inheritance and chemical evolution in planet-forming environments. We present Atacama Large Millimeter/submillimeter Array observations of the rare isotopologue 13C18O(2-1) at similar to 0 .'' 3 resolution from the disk around the Herbig Ae star HD 163296, combined with archival observations of C17O(2-1), C18O(1-0), and C17O(1-0), to empirically constrain carbon and oxygen isotopic ratios without detailed disk modeling. Both the C17O/13C18O(2-1) and C18O/C17O(1-0) flux ratios rise sharply across the CO snowline and flatten beyond 1 .'' 5 (r greater than or similar to 150 au), where the emission becomes optically thin. This transition, reflecting a steep drop in CO column density set by the disk's thermal structure, makes HD 163296 an optimal case for isotopic analysis. Using beam-averaged intensities of the four transitions measured in this optically thin region, we derive isotopic ratios of 12C/13C = 75.3-11.4+14.7 and 18O/17O = 3.28-0.26+0.31 , both consistent with local interstellar medium values. The 16O/18O ratio remains weakly constrained due to moderate optical depth in the C18O(1-0) line and degeneracy with CO column density. These results demonstrate that rare CO isotopologues can provide robust, empirical constraints on isotopic ratios in disks when sharp structural transitions allow for the identification of optically thin regions, and establish HD 163296 as a benchmark for extending such studies to other systems with resolved snowline structures.

    2026ASTROPHYSICAL JOURNAL LETTERS(2026)引用:30
    引用
    AI阅读
    加入学术空间
    立即登录,查看全部 10000 篇论文

    合作机构(100)

    加州理工学院合作论文 2,533
    麻省理工学院合作论文 2,095
    亚利桑那大学合作论文 1,817
    美国国家航空航天局合作论文 1,652
    戈达德太空飞行中心合作论文 1,632
    加利福尼亚大学伯克利分校合作论文 1,485
    国家天体物理研究所合作论文 1,294
    密歇根大学合作论文 1,263
    普林斯顿大学合作论文 1,225
    马克斯·普朗克学会合作论文 1,133

    机构统计