Ground testing and flight demonstration of charge management of insulated test masses using UV-LED electron photoemission.

Autor: Sasha Buchman, Karthik Balakrishnan, Chin Yang Lui, Daniel DeBra, Robert Byer, Shailendhar Saraf, Abdulrahman Alfauwaz, Michael Soulage, Dohy Faied, John Hanson, Kuok Ling, Belgacem Jaroux, Badr Al Suwaidan, Abdullah AlRashed, Badr Al-Nassban, Faisal Alaqeel, Mohammed Al Harbi, Badr Bin Salamah, Mohammed Bin Othman, Bandar Bin Qasim
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Zdroj: Classical & Quantum Gravity; 12/22/2016, Vol. 33 Issue 24, p1-1, 1p
Abstrakt: The UV-LED mission demonstrates the precise control of the potential of electrically isolated test masses. Test mass charge control is essential for the operation of space accelerometers and drag-free sensors which are at the core of geodesy, aeronomy and precision navigation missions as well as gravitational wave experiments and observatories. Charge management using photoelectrons generated by the 254 nm UV line of Hg was first demonstrated on Gravity Probe B and is presently part of the LISA Pathfinder technology demonstration. The UV-LED mission and prior ground testing demonstrates that AlGaN UVLEDs operating at 255 nm are superior to Hg lamps because of their smaller size, lower power draw, higher dynamic range, and higher control authority. We show laboratory data demonstrating the effectiveness and survivability of the UV-LED devices and performance of the charge management system. We also show flight data from a small satellite experiment that was one of the payloads on KACST’s SaudiSat-4 mission that demonstrates ‘AC charge control’ (UV-LEDs and bias are AC modulated with adjustable relative phase) between a spherical test mass and its housing. The result of the mission brings the UV-LED device Technology Readiness Level (TRL) to TRL-9 and the charge management system to TRL-7. We demonstrate the ability to control the test mass potential on an 89 mm diameter spherical test mass over a 20 mm gap in a drag-free system configuration, with potential measured using an ultra-high impedance contact probe. Finally, the key electrical and optical characteristics of the UV-LEDs showed less than 7.5% change in performance after 12 months in orbit. [ABSTRACT FROM AUTHOR]
Databáze: Complementary Index