ProtoDESI: First On-Sky Technology Demonstration for the Dark Energy Spectroscopic Instrument
Parker Fagrelius, Behzad Abareshi, Lori Allen, Otger Ballester,, Charles Baltay, Robert Besuner, Elizabeth Buckley-Geer, Karen Butler, Laia, Cardiel, Arjun Dey, Ann Elliott, William Emmet, Irena Gershkovich, Klaus, Honscheid, Jose M. Illa, Jorge Jimenez, Michael Levi

TL;DR
ProtoDESI successfully demonstrated on-sky fiber positioning and guiding capabilities for the DESI project, reducing technical risks in aligning fibers with targets using robotic positioners on the Mayall telescope.
Contribution
First on-sky demonstration of fiber positioning and guiding technology for DESI, validating the system's ability to meet operational requirements.
Findings
Achieved target acquisition with robotic fiber positioners
Demonstrated guiding requirements can be met in real observations
Validated hardware integration with the DESI control system
Abstract
The Dark Energy Spectroscopic Instrument (DESI) is under construction to measure the expansion history of the universe using the baryon acoustic oscillations technique. The spectra of 35 million galaxies and quasars over 14,000 square degrees will be measured during a 5-year survey. A new prime focus corrector for the Mayall telescope at Kitt Peak National Observatory will deliver light to 5,000 individually targeted fiber-fed robotic positioners. The fibers in turn feed ten broadband multi-object spectrographs. We describe the ProtoDESI experiment, that was installed and commissioned on the 4-m Mayall telescope from August 14 to September 30, 2016. ProtoDESI was an on-sky technology demonstration with the goal to reduce technical risks associated with aligning optical fibers with targets using robotic fiber positioners and maintaining the stability required to operate DESI. The…
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