DocumentCode :
2270262
Title :
Results from the TOM3 testbed: thermal deformation of optics at the picometer level
Author :
Goullioud, R. ; Lindensmith, C.A. ; Hahn, I.
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA
fYear :
0
fDate :
0-0 0
Abstract :
Future space-based optical interferometers, such as the space interferometer mission (SIM), require thermal stability of the optical wavefront to the level of picometers in order to produce astrometric data at the micro-arc-second level. In SIM, the internal path of the interferometer will be measured with a small metrology beam whereas the starlight fringe position is estimated from a large concentric annular beam. To achieve the micro-arc-second observation goal for SIM, it is necessary to maintain the optical path difference between the central and the outer annulus portions of the wavefront of the front-end telescope optics to a few tens of picometers for an hour. The thermo-opto-mechanical testbed (TOM3) was developed at the Jet Propulsion Laboratory to measure thermally induced optical deformations of a full-size flight-like beam compressor and siderostat, the two largest optics on SIM, in flight-like thermal environments. A common path heterodyne interferometer (COPHI) developed at JPL was used for the fine optical path difference measurement as the metrology sensor. The system was integrated inside a large vacuum chamber in order to mitigate the atmospheric and thermal disturbances. The siderostat was installed in a temperature-controlled thermal shroud inside the vacuum chamber, creating a flight-like thermal environment. Detailed thermal and structural models of the test articles (siderostat and compressor) were also developed for model prediction and correlation of the thermal deformations. Experimental data shows SIM required thermal stability of the test articles and good agreement with the model predictions
Keywords :
aerospace instrumentation; deformation; displacement measurement; light interferometers; thermal stability; astrometric data; atmospheric disturbances; beam compressor; common path heterodyne interferometer; concentric annular beam; front-end telescope optics; micro-arc-second observation; optical interferometers; optical path difference measurement; optical thermal deformation; small metrology beam; space interferometer mission; starlight fringe position; temperature-controlled thermal shroud; thermal disturbances; thermal stability; thermo-opto-mechanical testbed; vacuum chamber; Atmospheric modeling; Extraterrestrial measurements; Interferometers; Metrology; Optical interferometry; Optical mixing; Optical sensors; Predictive models; Testing; Thermal stability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Conference, 2006 IEEE
Conference_Location :
Big Sky, MT
Print_ISBN :
0-7803-9545-X
Type :
conf
DOI :
10.1109/AERO.2006.1655940
Filename :
1655940
Link To Document :
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