• 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
    A

    Astronomical Society of Australia

    EST. 1966
    38论文总数
    218引用总数

    .

    论文量&引用量时间轴

    机构学者

    排序
    Bob Argyle
    Bob Argyle
    Royal Greenwich Observatory
    论文:30引用:0H-index:0
    Andrew James
    Andrew James
    Astron Soc New South Wales
    论文:28引用:0H-index:0
    Mike Swan
    Mike Swan
    Webb Deep Sky Soc
    论文:28引用:0H-index:0
    L. Spinoglio
    L. Spinoglio
    National Institute of Astrophysics
    论文:4引用:0H-index:0
    Shinki Oyabu
    Shinki Oyabu
    Institute of Space and Astronautical Science;Japan Aerospace Exploration Agency;Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency
    论文:2引用:0H-index:0
    J. Braine
    J. Braine
    Lab Astrophys Bordeaux, Univ Bordeaux
    论文:2引用:0H-index:0
    Kotaro Kohno
    Kotaro Kohno
    The University of Tokyo
    论文:2引用:0H-index:0
    Daisuke Ishihara
    Daisuke Ishihara
    Department of Astronomy;Graduate School of Science;University of Tokyo;Graduate School of Science, University of Tokyo
    论文:2引用:0H-index:0
    Peter Roelfsema
    Peter Roelfsema
    netherlands institute for space research
    论文:2引用:0H-index:0

    论文(38)

    年份
    起
    –
    止
    排序
    1Mid-IR Cosmological Spectrophotometric Surveys from Space: Measuring AGN and Star Formation at the Cosmic Noon with a SPICA-like Mission
    Luigi Spinoglio,Sabrina Mordini,Juan Antonio Fernandez-Ontiveros,Almudena Alonso-Herrero,Lee Armus,Laura Bisigello,Francesco Calura,Francisco J. Carrera,Asantha Cooray,Helmut Dannerbauer,Roberto Decarli,Eiichi Egami,

    Abstract We use the SPace Infrared telescope for Cosmology and Astrophysics (SPICA) project as a template to demonstrate how deep spectrophotometric surveys covering large cosmological volumes over extended fields (1– $15\, \rm{deg^2}$ ) with a mid-IR imaging spectrometer (17– $36\, \rm{\rm{\upmu m}}$ ) in conjunction with deep $70\, \rm{\rm{\upmu m}}$ photometry with a far-IR camera, at wavelengths which are not affected by dust extinction can answer the most crucial questions in current galaxy evolution studies. A SPICA-like mission will be able for the first time to provide an unobscured three-dimensional (3D, i.e. x, y, and redshift z) view of galaxy evolution back to an age of the universe of less than $\sim$ 2 Gyrs, in the mid-IR rest frame. This survey strategy will produce a full census of the Star Formation Rate (SFR) in the universe, using polycyclic aromatic hydrocarbons (PAH) bands and fine-structure ionic lines, reaching the characteristic knee of the galaxy luminosity function, where the bulk of the population is distributed, at any redshift up to $z \sim 3.5$ . Deep follow-up pointed spectroscopic observations with grating spectrometers onboard the satellite, across the full IR spectral range (17– $210\, \rm{\rm{\upmu m}}$ ), would simultaneously measure Black Hole Accretion Rate (BHAR), from high-ionisation fine-structure lines, and SFR, from PAH and low- to mid-ionisation lines in thousands of galaxies from solar to low metallicities, down to the knee of their luminosity functions. The analysis of the resulting atlas of IR spectra will reveal the physical processes at play in evolving galaxies across cosmic time, especially its heavily dust-embedded phase during the activity peak at the cosmic noon ( $z \sim 1$ –3), through IR emission lines and features that are insensitive to the dust obscuration.

    2021PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA(2021)引用:12
    引用
    AI阅读
    加入学术空间
    2Probing the Cold Magnetised Universe with SPICA-POL (B-BOP)
    Ph Andre,A. Hughes,V Guillet,F. Boulanger,A. Bracco,E. Ntormousi,D. Arzoumanian,A. J. Maury,J-Ph Bernard,S. Bontemps,I Ristorcelli,J. M. Girart,

    SPICA, the cryogenic infrared space telescope recently pre-selected for a `Phase A' concept study as one of the three remaining candidates for ESA's fifth medium class (M5) mission, is foreseen to include a far-infrared polarimetric imager (SPICA-POL, now called B-BOP), which would offer a unique opportunity to resolve major issues in our understanding of the nearby, cold magnetized Universe. This paper presents an overview of the main science drivers for B-BOP, including high dynamic range polarimetric imaging of the cold interstellar medium (ISM) in both our Milky Way and nearby galaxies. Thanks to a cooled telescope, B-BOP will deliver wide-field 100-350 micron images of linearly polarized dust emission in Stokes Q and U with a resolution, signal-to-noise ratio, and both intensity and spatial dynamic ranges comparable to those achieved by Herschel images of the cold ISM in total intensity (Stokes I). The B-BOP 200 micron images will also have a factor 30 higher resolution than Planck polarization data. This will make B-BOP a unique tool for characterizing the statistical properties of the magnetized interstellar medium and probing the role of magnetic fields in the formation and evolution of the interstellar web of dusty molecular filaments giving birth to most stars in our Galaxy. B-BOP will also be a powerful instrument for studying the magnetism of nearby galaxies and testing galactic dynamo models, constraining the physics of dust grain alignment, informing the problem of the interaction of cosmic rays with molecular clouds, tracing magnetic fields in the inner layers of protoplanetary disks, and monitoring accretion bursts in embedded protostars.

    2019PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA(2019)引用:28
    引用
    AI阅读
    加入学术空间
    3STF 1338 Lyn = WDS J09210+3811AB
    Bob Argyle,Mike Swan,Andrew James

    A summary is not available for this content so a preview has been provided. Please use the Get access link above for information on how to access this content.

    2019Cambridge University Press eBooks(2019)
    引用
    AI阅读
    加入学术空间
    4Α Her = STF 2140 = WDS J17146+1423AB
    Bob Argyle,Mike Swan,Andrew James
    2019Cambridge University Press eBooks(2019)
    引用
    AI阅读
    加入学术空间
    5Ζ Psc = STF 100 = WDS J01137+0735AB
    Bob Argyle,Mike Swan,Andrew James

    A summary is not available for this content so a preview has been provided. Please use the Get access link above for information on how to access this content.

    2019Cambridge University Press eBooks(2019)
    引用
    AI阅读
    加入学术空间
    立即登录,查看全部 38 篇论文

    合作机构(54)

    Stornoway Historical Society合作论文 32
    剑桥大学合作论文 32
    东京大学合作论文 4
    荷兰空间研究所合作论文 3
    国家天体物理研究所合作论文 3
    巴黎第七大学合作论文 3
    加州理工学院合作论文 3
    加利福尼亚州立大学洛杉矶分校合作论文 2
    名古屋大学合作论文 2
    法国国家科学研究中心合作论文 2

    机构统计