Analysis of radiometer effect on proof mass in purely gravitational orbit
Author:
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Mechanical Engineering,Mechanics of Materials
Link
http://link.springer.com/content/pdf/10.1007/s10483-012-1572-8.pdf
Reference11 articles.
1. DeBra, D. B. Drag-free control for fundamental physics missions. Advance in Space Research, 32(7), 1221–1226 (2003)
2. Staff of the Space Departacent of the Applied Physics Laboratery of Johns Hopkins University and Staff of the Guidance and Control Laboratory of Stanford University. A satellite free of all but gravitational forces: “TRIAD-I”. Journal of Spacecraft and Rockets, 11(9), 637–644 (1974)
3. Sumner, T. J., Anderson, J., Blaser, J. P., Cruise, A. M., Damour, T., Dittus, H., Everitt, C. W. F., Foulon, B., Jafry, Y., Kent, B. J., Lockerbie, N., Loeffler, F., Mann, G., Mester, J., Pegrum, C., Reinhardt, R., Sandford, M., Scheicher, A., Speake, C. C., Torii, R., Theil, S., Touboul, P., Vitale, S., Vodel, W., and Worden, P. W. Satellite test of the equivalence principle. Advance in Space Research, 39(2), 254–258 (2007)
4. Mester, J., Torii, R., Worden, P., Lockerbie, N., Vitale, S., and Everitt, C. W. F. The STEP mission: principles and baseline design. Classical and Quantum Gravity, 18, 2475–2486 (2001)
5. Bonny, L. S. Disturbance reduction requirements for LISA. Classical and Quantum Gravity, 20, 239–253 (2003)
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