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Radial velocities measured from near-infrared spectra are a potentially powerful tool to search for planets around cool stars and sub-stellar objects. However, no technique currently exists that yields near-infrared radial velocity…

Earth and Planetary Astrophysics · Physics 2014-11-20 Jacob L. Bean , Andreas Seifahrt , Henrik Hartman , Hampus Nilsson , Guenter Wiedemann , Ansgar Reiners , Stefan Dreizler , Todd J. Henry

We present the scientific motivation and conceptual design for the recently funded Habitable-zone Planet Finder (HPF), a stabilized fiber-fed near-infrared (NIR) spectrograph for the 10 meter class Hobby-Eberly Telescope (HET) that will be…

Ground based low frequency radio interferometers have been developed in the last decade and are providing the scientific community with high quality observations. Conversely, current radioastronomy instruments in space have a poor angular…

Mid-infrared (mid-IR) spectroscopy is a crucial workhorse for a plethora of analytical applications and is suitable for diverse materials, including gases, polymers or biological tissue. However, this technologically significant wavelength…

Optics · Physics 2022-02-23 Paul Kaufmann , Helen M. Chrzanowski , Aron Vanselow , Sven Ramelow

The quest for other habitable worlds and the search for life among them are major goals of modern astronomy. One way to make progress towards these goals is to obtain high-quality spectra of a large number of exoplanets over a broad range…

(Abridged summary) Responding to ESA's Voyage 2050 call to define the long-term plan for the future space missions that will address the astrophysics science questions during the 2035-2050 cycle, we propose a dedicated, ultra-deep…

For several years, the metastable helium triplet line has been successfully used as a tracer to probe atmospheric escape in transiting exoplanets. This absorption in the near-infrared (1083.3 nm) can be observed from the ground using…

We present the 3.5m SPICA space telescope, a proposed Japanese-led JAXA-ESA mission scheduled for launch around 2017. The actively cooled (<5 K), single aperture telescope and monolithic mirror will operate from ~3.5 to ~210 um and will…

HERMES-TP/SP (High Energy Rapid Modular Ensemble of Satellites Technologic and Scientific Pathfinder) is a constellation of six 3U nano-satellites hosting simple but innovative X-ray detectors, characterized by a large energy band and…

The Planet Hunting and Asteroseismology Explorer Spectrophotometer, PHASES, is a concept for a space-borne instrument to obtain flux calibrated spectra and measure micro-magnitude photometric variations of nearby stars. The science drivers…

Instrumentation and Methods for Astrophysics · Physics 2010-01-13 Carlos del Burgo , Carlos Allende Prieto , Tully Peacocke

We present a community-led assessment of the solar system investigations achievable with NASA's next-generation space telescope, the Wide Field InfraRed Survey Telescope (WFIRST). WFIRST will provide imaging, spectroscopic, and…

The Large Binocular Telescope Interferometer (LBTI) has the longest baseline in the world, 22.7 m, for performing astronomical interferometry in Fizeau mode, which involves beam combination in a focal plane and preserves a wide…

Instrumentation and Methods for Astrophysics · Physics 2019-08-30 Eckhart Spalding , Phil Hinz , Katie Morzinski , Steve Ertel , Paul Grenz , Erin Maier , Jordan Stone , Amali Vaz

Millimetre-wave observations represent an important tool for Cosmology studies. The Line Intensity Mapping (LIM) technique has been proposed to map in three dimensions the specific intensity due to line (e.g. [CII], CO) emission, for…

Instrumentation and Methods for Astrophysics · Physics 2023-08-29 Usasi Chowdhury , Florence Levy-Bertrand , Martino Calvo , Johannes Goupy , Alessandro Monfardini

SPHEREx, a NASA explorer satellite launched on 11 March 2025, is carrying out the first all-sky near-infrared spectral survey. The satellite observes in 102 spectral bands from 0.75 to 5.0 um with a resolving power ranging from 35 to 130 in…

Instrumentation and Methods for Astrophysics · Physics 2025-12-19 James J. Bock , Asad M. Aboobaker , Joseph Adamo , Rachel Akeson , John M. Alred , Farah Alibay , Matthew L. N. Ashby , Yoonsoo P. Bach , Lindsey E. Bleem , Douglas Bolton , David F. Braun , Sean Bruton , Sean A. Bryan , Tzu-Ching Chang , Shuang-Shuang Chen , Yun-Ting Cheng , James R. Cheshire , Yi-Kuan Chiang , Jean Choppin de Janvry , Samuel Condon , Walter R. Cook , Asantha Cooray , Brendan P. Crill , Ari J. Cukierman , Olivier Dore , C. Darren Dowell , Gregory P. Dubois-Felsmann , Tim Eifler , Spencer Everett , Beth E. Fabinsky , Andreas L. Faisst , James L. Fanson , Allen H. Farrington , Tamim Fatahi , Candice M. Fazar , Richard M. Feder , Eric H. Frater , Henry S. Grasshorn Gebhardt , Utkarsh Giri , Tatiana Goldina , Varoujan Gorjian , Salman Habib , William G. Hart , Chen Heinrich , Joseph L. Hora , Zhaoyu Huai , Howard Hui , Young-Soo Jo , Woong-Seob Jeong , Jae Hwan Kang , Miju Kang , Branislav Kecman , Chul-Hwan Kim , Jaeyeong Kim , Minjin Kim , Young-Jun Kim , Yongjung Kim , J. Davy Kirkpatrick , Yosuke Kobayashi , Phil M. Korngut , Elisabeth Krause , Bomee Lee , Ho-Gyu Lee , Jae-Joon Lee , Jeong-Eun Lee , Carey M. Lisse , Giacomo Mariani , Daniel C. Masters , Philip D. Mauskopf , Gary J. Melnick , Mary H. Minasyan , Jordan Mirocha , Hiromasa Miyasaka , Anne Moore , Bradley D. Moore , Giulia Murgia , Bret J. Naylor , Christina Nelson , Chi H. Nguyen , Hien T. Nguyen , Jinyoung K. Noh , Stephen Padin , Roberta Paladini , Sung-Joon Park , Konstantin I. Penanen , Dustin S. Putnam , Jeonghyun Pyo , Nesar Ramachandra , Keshav Ramanathan , Zafar Rustamkulov , Daniel J. Reiley , Eric B. Rice , Jennifer M. Rocca , Ji Yeon Seok , Roger Smith , Jeremy Stober , Sara Susca , Harry I. Teplitz , Michael P. Thelen , Volker Tolls , Gabriela Torrini , Amy R. Trangsrud , Stephen Unwin , Phani Velicheti , Pao-Yu Wang , Robin Y. Wen , Michael-W. -Werner , Abby E. Williams , Ross Williamson , James Wincentsen , Rogier A. Windhorst , Soung-Chul Yang , Yujin Yang , Michael Zemcov

The proposed infrared space interferometry mission Darwin has two main aims: (i) to detect and characterize exo-planets similar to the Earth, and (ii) to carry out astrophysical imaging in the wavelength range 6 - 20 micron at a sensitivity…

Astrophysics · Physics 2007-05-23 H. J. A. Rottgering , L. d'Arcio , C. Eiroa , I. Labbe , G. Rudnick

SPHEREx is a proposed NASA MIDEX mission selected for Phase A study. SPHEREx would carry out the first all-sky spectral survey in the near infrared. At the end of its two-year mission, SPHEREx would obtain 0.75-to-5$\mu$m spectra of every…

The detection of planets around very low-mass stars with the radial velocity method is hampered by the fact that these stars are very faint at optical wavelengths where the most high-precision spectrometers operate. We investigate the…

Solar and Stellar Astrophysics · Physics 2014-11-20 A. Reiners , J. L. Bean , K. F. Huber , S. Dreizler , A. Seifahrt , S. Czesla