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相关论文: Exoplanets through extreme optics: from PLATO to S…

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High-resolution spectroscopy has proven to be a powerful avenue for atmospheric remote sensing of exoplanets. Recently, ESO commissioned the CRIRES+ high-resolution infrared spectrograph at VLT. CRIRES+ is a cross-dispersed spectrograph…

地球与行星天体物理 · 物理学 2022-08-26 Måns Holmberg , Nikku Madhusudhan

Context . Initially designed to detect and characterise exoplanets, extreme adaptive optics (AO) systems open a new window onto the Solar System by resolving its small bodies. Nonetheless, their study remains limited by the accuracy of the…

信号处理 · 电气工程与系统科学 2024-08-01 Anthony Berdeu

Exoplanet imaging and spectroscopy are now routinely achieved by dedicated instruments on large ground-based observatories (e.g. Gemini/GPI, VLT/SPHERE, or Subaru/SCExAO). In addition to extreme adaptive optics (ExAO) and post-processing…

Oncoming exoplanet spectro-imagers like the Planetary Camera and Spectrograph (PCS) for the Extremely Large Telescope (ELT) will aim for a new class of exoplanets, including Earth-like planets evolving around M dwarfs i.e., closer than…

SPIRou, a near infrared spectropolarimeter, is a project of new instrument to be mounted at the Canada France Hawaii Telescope in 2017. One of the main objectives of SPIRou is to reach a radial velocity accuracy better than 1 m/s in the…

We propose to explore a cascade extreme Adaptive optics (ExAO) approach with a second stage based on a Zernike wavefront sensor (ZWFS) for exoplanet imaging and spectroscopy. Most exoplanet imagers currently use a single-stage ExAO to…

A dedicated mission to investigate exoplanetary atmospheres represents a major milestone in our quest to understand our place in the universe by placing our Solar System in context and by addressing the suitability of planets for the…

地球与行星天体物理 · 物理学 2015-06-03 G. Tinetti , J. P. Beaulieu , T. Henning , M. Meyer , G. Micela , I. Ribas , D. Stam , M. Swain , O. Krause , M. Ollivier , E. Pace , B. Swinyard , A. Aylward , R. van Boekel , A. Coradini , T. Encrenaz , I. Snellen , M. R. Zapatero-Osorio , J. Bouwman , J. Y-K. Cho , V. Coudé du Foresto , T. Guillot , M. Lopez-Morales , I. Mueller-Wodarg , E. Palle , F. Selsis , A. Sozzetti , P. A. R. Ade , N. Achilleos , A. Adriani , C. B. Agnor , C. Afonso , C. Allende Prieto , G. Bakos , R. J. Barber , M. Barlow , P. Bernath , B. Bezard , P. Bordé , L. R. Brown , A. Cassan , C. Cavarroc , A. Ciaravella , C. O. U. Cockell , A. Coustenis , C. Danielski , L. Decin , R. De Kok , O. Demangeon , P. Deroo , P. Doel , P. Drossart , L. N. Fletcher , M. Focardi , F. Forget , S. Fossey , P. Fouqué , J. Frith , M. Galand , P. Gaulme , J. I. González Hernández , O. Grasset , D. Grassi , J. L. Grenfell , M. J. Griffin , C. A. Griffith , U. Grözinger , M. Guedel , P. Guio , O. Hainaut , R. Hargreaves , P. H. Hauschildt , K. Heng , D. Heyrovsky , R. Hueso , P. Irwin , L. Kaltenegger , P. Kervella , D. Kipping , T. T. Koskinen , G. Kovács , A. La Barbera , H. Lammer , E. Lellouch , G. Leto , M. Lopez Morales , M. A. Lopez Valverde , M. Lopez-Puertas , C. Lovis , A. Maggio , J. P. Maillard , J. Maldonado Prado , J. B. Marquette , F. J. Martin-Torres , P. Maxted , S. Miller , S. Molinari , D. Montes , A. Moro-Martin , J. I. Moses , O. Mousis , N. Nguyen Tuong , R. Nelson , G. S. Orton , E. Pantin , E. Pascale , S. Pezzuto , D. Pinfield , E. Poretti , R. Prinja , L. Prisinzano , J. M. Rees , A. Reiners , B. Samuel , A. Sanchez-Lavega , J. Sanz Forcada , D. Sasselov , G. Savini , B. Sicardy , A. Smith , L. Stixrude , G. Strazzulla , J. Tennyson , M. Tessenyi , G. Vasisht , S. Vinatier , S. Viti , I. Waldmann , G. J. White , T. Widemann , R. Wordsworth , R. Yelle , Y. Yung , S. N. Yurchenko

During the Extreme Universe Space Observatory on a Super Pressure Balloon 2 (EUSO-SPB2) mission, we planned Target of Opportunity (ToO) operations to follow up on possible sources of $\gtrsim 10 \, {\rm PeV}$ neutrinos. The original plan…

高能天体物理现象 · 物理学 2023-10-20 Tobias Heibges , Jonatan Posligua , Hannah Wistrand , Claire Guépin , Mary Hall Reno , Tonia M. Venters

The NASA Discovery mission EPOXI, utilizing the Deep Impact flyby spacecraft, comprises two phases: EPOCh (Extrasolar Planet Observation and Characterization) and DIXI (Deep Impact eXtended Investigation). With EPOCh, we use the 30-cm high…

Context. To date, stellar activity is one of the main limitations in detecting small exoplanets via transit photometry. Since this activity is enhanced in young stars, traditional filtering algorithms may severely under-perform in detecting…

地球与行星天体物理 · 物理学 2023-04-19 G. Canocchi , L. Malavolta , I. Pagano , O. Barragán , G. Piotto , S. Aigrain , S. Desidera , S. Grziwa , J. Cabrera , H. Rauer

Due to their extremely small luminosity compared to the stars they orbit, planets outside our own Solar System are extraordinarily difficult to detect directly in optical light. Careful photometric monitoring of distant stars, however, can…

The extraordinary astrometric accuracy of radio interferometry creates an important and unique opportunity for the discovery and characterization of exo-planets. Currently, the Very Long Baseline Array can routinely achieve better than 100…

天体物理学 · 物理学 2007-05-23 Geoffrey C. Bower , Alberto Bolatto , Eric Ford , Paul Kalas , Jim Ulvestad

The field of exoplanetary science has diversified rapidly over recent years as the field has progressed from exoplanet detection to exoplanet characterization. For those planets known to transit, the primary transit and secondary eclipse…

地球与行星天体物理 · 物理学 2015-05-20 Stephen R. Kane , Dawn M. Gelino

Radial velocity surveys for extra-solar planets generally require substantial amounts of large telescope time in order to monitor a sufficient number of stars. Two of the aspects which can limit such surveys are the single-object…

天体物理学 · 物理学 2008-11-26 Stephen R. Kane , Donald P. Schneider , Jian Ge

The search for biosignatures in potentially habitable exoplanets is one of the major astrophysics' drivers for the coming decades, and the prime science goal of the HWO NASA mission, a large UV-Optical-IR space telescope to be launched in…

地球与行星天体物理 · 物理学 2024-09-04 Elodie Choquet , Lisa Altinier , Nicolás Godoy , Alexis Lau , Arthur Vigan , David Mary

With the discovery of the first transiting extrasolar planetary system back to 1999, a great number of projects started to hunt for other similar systems. Because of the incidence rate of such systems was unknown and the length of the…

太阳与恒星天体物理 · 物理学 2017-09-13 Geza Kovacs

The quest to discover exoplanets is one of the most important missions in astrophysics, and is widely performed using the transit method, which allows for the detection of exoplanets down to the size of Mercury. However, to confirm these…

Transiting exoplanet atmospheric characterization is currently in a golden age as dozens of exoplanet atmospheres are being studied by NASA's Hubble and James Webb Space Telescopes. This trend is expected to continue with NASA's Pandora…

Next year the second generation instrument SPHERE will begin science operations at the Very Large Telecope (ESO). This instrument will be dedicated to the search for exoplanets through the direct imaging techniques, with the new generation…

The detection of transits is an efficient technique to uncover faint companions around stars. The full characterisation of the companions (M-type stars, brown dwarfs or exoplanets) requires high-resolution spectroscopy to measure properly…

天体物理学 · 物理学 2008-12-18 J. Gallardo , D. Minniti , D. Valls-Gabaud , M. Rejkuba