37 citations · 37 across the 2 of their papers we have counts for
11 papers · 1 filter
The Detailed Science Case for the Maunakea Spectroscopic Explorer, 2019 edition
The MSE Science Team, Carine Babusiaux, Maria Bergemann +258
(Abridged) The Maunakea Spectroscopic Explorer (MSE) is an end-to-end science platform for the design, execution and scientific exploitation of spectroscopic surveys. It will unvei…
Design of Near Infrared and Visible Kinetic Inductance Detectors Using MIM Capacitors
S. Beldi, F. Boussaha, C. Chaumont +7
We are developing superconducting Microwave Kinetic Inductance Detectors to operate at near infrared and optical wavelengths for astronomy. In order to efficiently meet with the re…
The Maunakea Spectroscopic Explorer Book 2018
Alexis Hill, Nicolas Flagey, Alan McConnachie +122
(Abridged) This is the Maunakea Spectroscopic Explorer 2018 book. It is intended as a concise reference guide to all aspects of the scientific and technical design of MSE, for the…
Maunakea Spectroscopic Explorer (MSE) - The Prime Focus Subsystems: Requirements and Interfaces
Alexis Hill, Alexandre Blin, David Horville +2
MSE will be a massively multiplexed survey telescope, including a segmented primary mirror which feeds fibers at the prime focus, including an array of approximately four thousand…
Modeling and budgeting fiber injection efficiency for the Maunakea spectroscopic explorer (MSE)
Nicolas Flagey, Kei Seto, Shan Mignon +3
The Maunakea Spectroscopic Explorer (MSE) will each year obtain millions of spectra in the optical to near-infrared, at low (R ~ 3,000) to high (R ~ 40,000) spectral resolution by…
The science calibration challenges of next generation highly multiplexed optical spectroscopy: the case of the Maunakea Spectroscopic Explorer
Alan W. McConnachie, Nicolas Flagey, Pat Hall +4
MSE is an 11.25m telescope with a 1.5 sq.deg. field of view. It can simultaneously obtain 3249 spectra at R=3000 from 360-1800nm, and 1083 spectra at R=40000 in the optical. The la…