Performance characterization and verification testing of the LSST Camera

A. Roodman, Tim W. Bond, Boyd Bowdish,Andrew Bradshaw, Eric Charles,James Chiang, Stephen A. Cisneros, Seth Digel,Richard Dubois, Alan Eisner, M.E. Huffer, A. S. Johnson,Steven M. Kahn, John Ku, Travis Lange,Margaux Lopez, S. L. Marshall, Chris Mendez, Myriam Migliore, H. A. Neal, Scott P. Newbry, Martin Nordby, Dmitry Onoprienko, Marco Oriunno, Shawn Osier,Andrew P. Rasmussen,Kevin Reil,Vincent J. Riot,Stefano Russo, Owen H. Saxton,Adam Snyder, Stephen A. Tether, Gregg Thayer, Jeff Tice, Massimiliano Turri,J. Anthony Tyson,Yousuke Utsumi, Justin E. Wolfe, Duncan Wood,Céline Combet, Ludovic Eraud,Aurélien Barrau, Adrian Shestakov, Steve Ritz, Paul O'Connor, Bill Wahl,Sven Herrmann,Andrei Nomerotski, P. Antilogus, Claire Juramy-Gilles,Craig S. Lage, Dan Polin

Ground-based and Airborne Instrumentation for Astronomy VIII(2020)

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摘要
The Integration and Verification Testing and characterization of the expected performance of the Large Synoptic Survey Telescope (LSST) Camera is described. The LSST Camera will be the largest astronomical camera ever constructed, featuring a 3.2 Gpixel focal plane mosaic of 189 CCDs. In this paper, we describe the verification testing program developed in parallel with the integration of the Camera, and the results from our performance characterization of the Camera. Our testing program includes electro-optical characterization and CCD height measurements of the focal plane, at several steps during integration, as well as a complete functional and characterization program for the finished focal plane. It also includes a suite of functional tests of the major Camera mechanisms: shutter, filter exchange system and thermal control. Finally, we expect to test the fully assembled Camera prior to its scheduled completion and delivery to the LSST observatory in early calendar 2021.
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