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Related papers: Maunakea Spectroscopic Explorer (MSE) Instrumentat…

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The Maunakea Spectroscopic Explorer (MSE) project has completed its Conceptual Design Phase. This paper is a status report of the MSE project regarding its technical and programmatic progress. The technical status includes its conceptual…

Instrumentation and Methods for Astrophysics · Physics 2018-07-24 Kei Szeto , Doug Simons , Steven Bauman , Alexis Hill , Nicolas Flagey , Alan McConnachie , Shan Mignot , Richard Murowinski

We discuss how astrophysical observations with the Maunakea Spectroscopic Explorer (MSE), a high-multiplexity (about 4300 fibers), wide field-of-view (1.5 square degree), large telescope aperture (11.25 m) facility, can probe the particle…

Optical designs are presented for the Maunakea Spectroscopic Explorer (MSE) telescope. The adopted baseline design is a prime focus telescope with a segmented primary of 11.25m aperture, with speed f/1.93 and 1.52deg field-of-view,…

Instrumentation and Methods for Astrophysics · Physics 2016-11-23 Will Saunders , Peter Gillingham

In this paper we present the Australian Astronomical Observatory's concept design for Sphinx - a fiber positioned with 4332 spines on a 7.77mm pitch for CFHT's Mauna Kea Spectroscopic Explorer (MSE) Telescope. Based on the Echidna…

Instrumentation and Methods for Astrophysics · Physics 2018-07-25 Scott Smedley , Gabriella Baker , Rebecca Brown , James Gilbert , Peter Gillingham , Will Saunders , Andrew Sheinis , Sudharshan Venkatesan , Lew Waller

We present the results of an automated fibre optic test bench constructed at the University of Victoria as part of the Maunakea Spectroscopic Explorer (MSE) Fibre Transmission System (FiTS). In preparation for MSE-FiTS, we have begun…

The Solar Spectroscopy Explorer (SSE) concept is conceived as a scalable mission, with two to four instruments and a strong focus on coronal spectroscopy. In its core configuration it is a small strategic mission ($250-500M) built around a…

Solar and Stellar Astrophysics · Physics 2010-11-18 Jay Bookbinder , the SSE team

Since 2014, MUSE, the Multi-Unit Spectroscopic Explorer, is in operation at the ESO-VLT. It combines a superb spatial sampling with a large wavelength coverage. By design, MUSE is an integral-field instrument, but its field-of-view and…

Instrumentation and Methods for Astrophysics · Physics 2015-12-23 Andreas Kelz , Sebastian Kamann , Tanya Urrutia , Peter Weilbacher , Lutz Wisotzki , Roland Bacon

WST - Widefield Spectroscopic Telescope: We summarise the design challenges of instrumentation for a proposed 12m class Telescope that aims to provide a large (>2.5 square degree) field of view and enable simultaneous Multi-object (> 20,000…

We present the design of the prototype telescope and spectrograph system for the Affordable Multiple Aperture Spectroscopy Explorer (AMASE) project. AMASE is a planned project that will pair 100 identical multi-fiber spectrographs with a…

The Multi Unit Spectroscopic Explorer (MUSE) is a second-generation VLT panoramic integral-field spectrograph currently in manufacturing, assembly and integration phase. MUSE has a field of 1x1 arcmin2 sampled at 0.2x0.2 arcsec2 and is…

SPIRou is a near-infrared spectropolarimeter and high-precision radial-velocity instrument, to be mounted on the 3.6m Canada-France-Hawaii telescope ontop Maunakea and to be offered to the CFHT community from 2018. It focuses on two main…

Instrumentation and Methods for Astrophysics · Physics 2015-10-07 C. Moutou , I. Boisse , G. Hebrard , E. Hebrard , J. -F. Donati , X. Delfosse , D. Kouach

The Multi-Unit Spectroscopic Explorer (MUSE) is a large integral field unit mounted on the ESO Very Large Telescope. Its spatial (60 arcsecond field) and wavelength (4800-9300A) coverage is well suited to detailed imaging spectroscopy of…

Astrophysics of Galaxies · Physics 2020-04-08 J. R. Walsh , A. Monreal-Ibero

Hyper Suprime-Cam (HSC) is a wide-field imaging camera on the prime focus of the 8.2m Subaru telescope on the summit of Maunakea in Hawaii. A team of scientists from Japan, Taiwan and Princeton University is using HSC to carry out a…

Instrumentation and Methods for Astrophysics · Physics 2018-03-16 H. Aihara , N. Arimoto , R. Armstrong , S. Arnouts , N. A. Bahcall , S. Bickerton , J. Bosch , K. Bundy , P. L. Capak , J. H. H. Chan , M. Chiba , J. Coupon , E. Egami , M. Enoki , F. Finet , H. Fujimori , S. Fujimoto , H. Furusawa , J. Furusawa , T. Goto , A. Goulding , J. P. Greco , J. E. Greene , J. E. Gunn , T. Hamana , Y. Harikane , Y. Hashimoto , T. Hattori , M. Hayashi , Y. Hayashi , K. G. Hełminiak , R. Higuchi , C. Hikage , P. T. P. Ho , B. -C. Hsieh , K. Huang , S. Huang , H. Ikeda , M. Imanishi , A. K. Inoue , K. Iwasawa , I. Iwata , A. T. Jaelani , H. -Y. Jian , Y. Kamata , H. Karoji , N. Kashikawa , N. Katayama , S. Kawanomoto , I. Kayo , J. Koda , M. Koike , T. Kojima , Y. Komiyama , A. Konno , S. Koshida , Y. Koyama , H. Kusakabe , A. Leauthaud , C. -H. Lee , L. Lin , Y. -T. Lin , R. H. Lupton , R. Mandelbaum , Y. Matsuoka , E. Medezinski , S. Mineo , S. Miyama , H. Miyatake , S. Miyazaki , R. Momose , A. More , S. More , Y. Moritani , T. J. Moriya , T. Morokuma , S. Mukae , R. Murata , H. Murayama , T. Nagao , F. Nakata , M. Niida , H. Niikura , A. J. Nishizawa , Y. Obuchi , M. Oguri , Y. Oishi , N. Okabe , Y. Okura , Y. Ono , M. Onodera , M. Onoue , K. Osato , M. Ouchi , P. A. Price , T. -S. Pyo , M. Sako , S. Okamoto , M. Sawicki , T. Shibuya , K. Shimasaku , A. Shimono , M. Shirasaki , J. D. Silverman , M. Simet , J. Speagle , D. N. Spergel , M. A. Strauss , Y. Sugahara , N. Sugiyama , Y. Suto , S. H. Suyu , N. Suzuki , P. J. Tait , T. Takata , M. Takada , N. Tamura , M. M. Tanaka , M. Tanaka , M. Tanaka , Y. Tanaka , T. Terai , Y. Terashima , Y. Toba , J. Toshikawa , E. L. Turner , T. Uchida , H. Uchiyama , K. Umetsu , F. Uraguchi , Y. Urata , T. Usuda , Y. Utsumi , S. -Y. Wang , W. -H. Wang , K. C. Wong , K. Yabe , Y. Yamada , H. Yamanoi , N. Yasuda , S. Yeh , A. Yonehara , S. Yuma

We present the integration status for `imaka, the ground-layer adaptive optics (GLAO) system on the University of Hawaii 2.2-meter telescope on Maunakea, Hawaii. This wide-field GLAO pathfinder system exploits Maunakea's highly confined…

We recommend a conceptual design study for a spectroscopic facility in the southern hemisphere comprising a large diameter telescope, fiber system, and spectrographs collectively optimized for massively-multiplexed spectroscopy. As a…

The Prime Focus Spectrograph (PFS) is a new facility instrument for Subaru Telescope which will be installed in around 2017. It is a multi-object spectrograph fed by about 2400 fibers placed at the prime focus covering a hexagonal…

Fibre Multi-Object Spectrograph (FMOS) is the first near-infrared instrument with a wide field of view capable of acquiring spectra simultaneously from up to 400 objects. It has been developed as a common-use instrument for the F/2…

The Caltech Submillimeter Observatory (CSO) is located on top of Mauna Kea, Hawaii, at an altitude of 4.2 km. The existing suite of facility heterodyne receivers covering the submillimeter band is rapidly aging and in need of replacement.…

Instrumentation and Methods for Astrophysics · Physics 2016-11-15 J. W. Kooi , R. A. Chamberlin , R. Monje , B. Force , D. Miller , T. G. Phillips