[1] Williams J. G., Turyshev S. G. and Boggs. D. H, Progress in Lunar Laser Ranging Tests of Relativistic Gravity [J]. Phys. Rev. Lett., 2004, 93(26): 261101[2] Schlamminger S., Choi K. Y., Wagner T. A., Gundlach J. H., and Adelberger E. G., Test of the Equivalence Principle Using a Rotating Torsion Balance [J]. Phys. Rev. Lett., 2008, 100(4): 041101[3] Peters A., Chung K.Y., Chu S., Measurement of gravitational acceleration by dropping atoms [J]. Nature, 1999, 400(6747):849-852[4] McGuirk J.M., Foster G.T., Fixler J.B., et al. Sensitive absolute-gravity gradiometry using atom interferometry [J]. Phys. Rev. A, 2002, 65(3):33608[5] Gustavson T.L., Landragin A., Kasevich M.A. Rotation sensing with a dual atom-interferometer Sagnacgyroscope [J]. Class. Quantum Grav.,2000,17(12):2385- 2398[6] Fixler J.B., Foster G.T., McGuirk J.M., et al. Atom interferometer measurement of the newtonian constant of gravity [J]. Science, 2007, 315(5808):74-77[7] Lamporesi G., Bertoldi A., Cacciapuoti L., et al. Determination of the newtonian gravitational constant using atom interferometry [J]. Phys. Rev. Lett., 2008, 100(5): 050801[8] Fray S., Diez C A., H?nsch T W. and Weitz M., Atomic Interferometer with Amplitude Gratings of Light and Its Applications to Atom Based Tests of the Equivalence Principle [J]. Phys. Rev. Lett., 2004, 93(24): 240404[9] Weiss D.S., Young B.C., and Chu S. Precision-measurement of h/m(cs) based on photon recoil using laser-cooled atoms and atomic interferometry [J]. Appl. Phys. B, 1994, 59(3):217-256[10] Dimopoulos S., Graham P. W., Hogan J. M. and Kasevich M. A., Testing General Relativity with Atom Interferometry [J]. Phys. Rev. Lett., 2007, 98(11):111102[11] Dimopoulos S., Graham P. W., Hogan J. M. and Kasevich M. A., Atomic gravitational wave interferometric sensor [J]. Phys. Rev. D, 2008, 78(12):122002[12] Zhou L., Xiong Z. Y., Yang W., Tang B., Peng W. C., Hao K., Li R. B., Liu M., Wang J., Zhan M. S., Development of an atom gravimeter and status of the 10-meter atom interferometer for precision gravity measurement [J]. Gen. Relativ. Gravit., 2011, 43(7):1931–1942[13] Rabb E. L., Prentiss M., Cable A. et al. Trapping of neutral sodium atoms with radiation pressure [J]. Phys. Rev. Lett., 1987, 59 (23) :2631-2634[14] Wang P., Li R. B., Yan H., Wang J., Zhan M. S., Demonstration of a Sagnac Type Cold Atom Interferometer with Stimulated Raman Transitions [J]. Chin. Phys. Lett., 2007, 24(1): 27-30[15] Zhou L., Xiong Z. Y., Yang W., Tang B., Wang Y. B., Peng W. C., Xu P., Wang J., Zhan M. S., Measurement of Local Gravity via a Cold Atom Interferometer [J]. Chin. Phys. Lett., 2011, 28(1): 013701 [16] Stean A. M., Chowdhury M., and Foot C. J., Radiation force in a magneto-optical trap [J]. J. Opt. Soc. Am. B, 1992, 9(12): 2142–2158 [17] Monroe C, Swann W, Robinson H, Wieman C Very cold trapped atoms in a vapor cell [J]. Phys. Rev. Lett., 1990, 65(5): 1571-1574[18] Suptitz W., Wokurka G., Strauch F., Kohns P., and Ertmer W., Simultaneous cooling and trapping of 85Rb and 87Rb in a magneto-optical trap [J]. Opt. Lett., 1994, 19 (19):1580-1582[19] Lindquist K., Stephens M., and Wieman C., Experimental and theoretical study of the vapor-cell Zeeman optical trap [J]. Phys. Rev. A, 1992, 46(7):4082-4090 |