Resolving the Dark Current Anomaly in the Nancy Grace Roman Space Telescope Focal Plane

被引:0
|
作者
Mosby, Gregory, Jr. [1 ]
Tonna, Synthia [1 ]
Chervenaka, Jay [1 ]
Hill, Bob [2 ]
Zandian, Majid [3 ]
Rauschera, Bernie [1 ]
Krupa, Jeff [1 ]
Samuels, Matt [1 ]
Auyeung, John [3 ]
Kimble, Randy [1 ]
Greenhouse, Matt [1 ]
Schlieder, Josh [1 ]
Cheng, Ed [2 ]
Cabelli, Craig [3 ]
Piquette, Eric [3 ]
Pan, Jianmei [3 ]
Jhabvala, Murzy [1 ]
Abeela, Alan [1 ]
Farris, Mark [2 ]
Petersen, Anders [2 ]
Gygax, John [1 ]
Cabreira, Mario [2 ]
Hickey, Michael [1 ]
Stuart, Colin [4 ]
Cillis, Analia [5 ]
Cheung, Stephanie [6 ]
Dharg, Nibir [7 ]
机构
[1] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
[2] Conceptual Analyt LLC, 8209 Woburn Abbey Rd, Glenn Dale, MD 20769 USA
[3] Teledyne Imaging Sensors, 5212 Verdugo Way, Camarillo, CA 93012 USA
[4] Axient LLC, 1400 Crystal Dr, Arlington, VA 22202 USA
[5] Univ Maryland Baltimore Cty, 1000 Hilltop Cir, Baltimore, MD 21250 USA
[6] Relat Dynam Inc, 14400 Sweitzer Ln Suite 125, Laurel, MD 20707 USA
[7] Virginia Commonwealth Univ, 907 Floyd Ave, Richmond, VA 23284 USA
关键词
HgCdTe; dark current; detector; degradation; Roman; near infrared;
D O I
10.1117/12.3020366
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The Nancy Grace Roman Space Telescope project is NASA's next flagship a strophysics mission t o s tudy dark energy, dark matter, and exoplanets along with the innumerable topics that will be enabled by the infrared survey telescope's Wide Field Instrument and Coronagraph Instrument. The Wide Field Instrument contains a focal plane of 18 newly developed Teledyne H4RG-10 HgCdTe detectors. The focal plane along with Roman's ASIC for Control And Digitization of Imagers for Astronomy (ACADIA) and the focal plane electronics that power them comprise the focal plane system. Roman's focal plane completed its first s ystem l evel thermal vacuum test at NASA Goddard in 2022, when an increase in dark current compared to component level testing was observed for several detectors. Roman chartered an anomaly review board (ARB) and in collaboration with Teledyne undertook a testing program to help identify possible root cause and select from Roman's spare inventory suitable replacement detectors for devices that had significantly d egraded. A p ossible root c ause was determined by the ARB along with recommendations for how to prevent further degradation. Three detectors were replaced in Roman's focal plane, and results from the following focal plane system thermal vacuum test, implementing recommendations from the ARB, demonstrate improved dark current performance. We summarize the initial observation of the detector anomaly, present the detector testing strategy to find s uitable spares and provide evidence of root cause, share the general findings of the ARB, and show new data showing the improved dark current performance.
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页数:14
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