OPTICS & OPTOELECTRONIC TECHNOLOGY, Volume. 20, Issue 3, 1(2022)
Coherent Momentum Manipulation in Cold Atom Interferometry
[1] [1] Berman P R. Atom Interferometry[M]. ?New York:?Academic Press, 1997.
[2] [2] Cronin A D, Schmiedmayer J, Pritchard D E. Optics and Interferometry With Atoms and Molecules[J/OL]. Reviews of Modern Physics, 2009, 81(3): 1051-1129.
[3] [3] Hornberger K, Gerlich S, Haslinger P, et al. Colloquium: Quantum interference of clusters and molecules[J/OL]. Reviews of Modern Physics, 2012, 84(1): 157-173.
[4] [4] Cohen-tannoudji C, Guery-odelin D. Advances in Atomic Physics[M]. Singapore: World Scientific, 2011.
[5] [5] Sakurai J J, Napolitano J. Modern Quantum Mechanics[M]. ?New Jersey:Addison-Wesley, 2011.
[7] [7] Ramsey N F. A molecular beam resonance method with separated oscillating fields[J/OL]. Physical Review, 1950, 78(6): 695-699.
[8] [8] Carnal O, Mlynek J. Young’s double-slit experiment with atoms: A simple atom interferometer[J/OL]. Physical Review Letters, 1991, 66(21): 2689-2692.
[9] [9] Keith D W, Ekstrom C R, Turchette Q A, et al. An interferometer for atoms[J/OL]. Physical Review Letters, 1991, 66(21): 2693-2696.
[10] [10] Riehle F, Kisters T, Witte A, et al. Optical Ramsey spectroscopy in a rotating frame: Sagnac effect in a matter-wave interferometer[J/OL]. Physical Review Letters, 1991, 67(2): 177-180.
[11] [11] Kasevich M, Chu S. Atomic interferometry using stimulated Raman transitions[J/OL]. Physical Review Letters, 1991, 67(2): 181-184.
[12] [12] PETERS A, CHUNG K Y, CHU S. Measurement of gravitational acceleration by dropping atoms[J/OL]. Nature, 1999, 400(6747): 849-852.
[13] [13] Mcguirk J M. High precision absolute gravity gradiometry with atom interferometry[D]. Stanford:Stanford University, 2001.
[14] [14] Durfee D S, Shaham Y K, Kasevich M A. Long-term stability of an area-reversible atom-interferometer Sagnac gyroscope[J/OL]. Physical Review Letters, 2006, 97(24): 240801.
[15] [15] Fixler J B, Foster G T, Mcguirk J M, et al. Atom interferometer measurement of the newtonian constant of gravity[J/OL]. Science, 2007, 315(5808): 74-77.
[16] [16] Hogan J M, Johnson D M S, Kasevich M A. Light-pulse atom interferometry[M]//Proceedings of the International School of Physics “Enrico Fermi”. 2008.
[17] [17] Dimopoulos S, Graham P W, Hogan J M, et al. Testing general relativity with atom interferometry[J/OL]. Physical Review Letters, 2007, 98(11): 111102.
[18] [18] Audretsch J, Marzlin K P. Ramsey fringes in atomic interferometry: Measurability of the influence of space-time curvature[J/OL]. Physical Review A, 1994, 50(3): 2080-2095.
[19] [19] Delva P, Angonin M C, Tourrenc P. Matter waves and the detection of gravitational waves[J/OL]. Journal of Physics: Conference Series, 2007, 66: 012050.
[20] [20] Cadoret M, De Mirandes E, Cladé P, et al. Atom interferometry based on light pulses: Application to the high precision measurement of the ratio H/m and the determination of the fine structure constant[J/OL]. The European Physical Journal Special Topics, 2009, 172(1): 121-136.
[21] [21] Perreault J D, Cronin A D. Measurement of atomic diffraction phases induced by material gratings[J/OL]. Physical Review A, 2006, 73(3): 033610.
[22] [22] Miffre A, Jacquey M, Büchner M, et al. Measurement of the electric polarizability of lithium by atom interferometry[J/OL]. Physical Review A, 2006, 73(1): 011603.
[23] [23] Ekstrom C R, Schmiedmayer J, Chapman M S, et al. Measurement of the electric polarizability of sodium with an atom interferometer[J/OL]. Physical Review A, 1995, 51(5): 3883-3888.
[24] [24] Arvanitaki A, Dimopoulos S, Geraci A A, et al. How to test atom and neutron neutrality with atom interferometry[J/OL]. Physical Review Letters, 2008, 100(12): 120407.
[25] [25] Gangat A, Pradhan P, Pati G, et al. Two-dimensional nanolithography using atom interferometry[J/OL]. Physical Review A, 2005, 71(4) :43606.
[26] [26] Ashkin A. Acceleration and trapping of particles by radiation pressure[J/OL]. Physical Review Letters, 1970, 24(4): 156-159.
[27] [27] Wineland D J, Itano W M. Laser cooling of atoms[J/OL]. Physical Review A, 1979, 20(4): 1521-1540.
[28] [28] Chu S, Hollberg L, Bjorkholm J E, et al. Three-dimensional viscous confinement and cooling of atoms by resonance radiation pressure[J/OL]. Physical Review Letters, 1985, 55(1): 48-51.
[29] [29] The Nobel Prize in Physics 1997[EB/OL]//NobelPrize.org. [2022-04-19]. https://www.nobelprize.org/prizes/physics/1997/summary/.
[31] [31] Young B, Kasevich M, Chu S. Precision atom interferometry with light pulses[M]//BERMAN P R. Atom Interferometry. San Diego: Academic Press, 1997: 363-406.
[32] [32] Storey P, Cohen-tannoudji C. The feynman path integral approach to atomic interferometry. A tutorial[J/OL]. Journal de Physique II, 1994, 4(11): 1999-2027.
[33] [33] Peters A, Chung K Y, Chu S. High-precision gravity measurements using atom interferometry[J/OL]. Metrologia, 2001, 38(1): 25-61.
[34] [34] Gustavson T L, Bouyer P, Kasevich M A. Precision rotation measurements with an atom interferometer gyroscope[J/OL]. Physical Review Letters, 1997, 78(11): 2046-2049.
[35] [35] Gustavson T L, Landragin A, Kasevich M A. Rotation sensing with a dual atom-interferometer Sagnac gyroscope[J/OL]. Classical and Quantum Gravity, 2000, 17(12): 2385-2398.
[36] [36] Santarelli G, Clairon A, Lea S N, et al. Heterodyne optical phase-locking of extended-cavity semiconductor lasers at 9 GHz[J/OL]. Optics Communications, 1994, 104(4): 339-344.
[37] [37] Kapitza P L, Dirac P A M. The reflection of electrons from standing light waves[J/OL]. Mathematical Proceedings of the Cambridge Philosophical Society, 1933, 29(02): 297.
[38] [38] Bartell L S, Thompson H B, Roskos R R. Observation of stimulated compton scattering of electrons by laser beam[J/OL]. Physical Review Letters, 1965, 14(21): 851-852.
[39] [39] Altshuler S, Frantz L M, Braunstein R. Reflection of atoms from standing light waves[J/OL]. Physical Review Letters, 1966, 17(5): 231-232.
[40] [40] Meystre P. Atom Optics[M]. New York: Springer Science & Business Media, 2001.
[41] [41] Moskowitz P E, Gould P L, Atlas S R, et al. Diffraction of an atomic beam by standing-wave radiation[J/OL]. Physical Review Letters, 1983, 51(5): 370-373.
[42] [42] Ovchinnikov Y B, Müller J H, Doery M R, et al. Diffraction of a released Bose-Einstein condensate by a pulsed standing light wave[J/OL]. Physical Review Letters, 1999, 83(2): 284-287.
[43] [43] Keller C, Schmiedmayer J, Zeilinger A, et al. Adiabatic following in standing-wave diffraction of atoms[J/OL]. Applied Physics B, 1999, 69(4): 303-309.
[44] [44] Gupta S, Leanhardt A E, Cronin A D, et al. Coherent manipulation of atoms with standing light waves[J/OL]. Comptes Rendus de l’Académie des Sciences-Series IV-Physics, 2001, 2(3): 479-495.
[45] [45] Dahan M B, Peik E, Reichel J, et al. Bloch oscillations of atoms in an optical potential[J/OL]. Physical Review Letters, 1996, 76(24): 4508-4511.
[46] [46] Peik E, Ben Dahan M, Bouchoule I, et al. Bloch oscillations of atoms, adiabatic rapid passage, and monokinetic atomic beams[J/OL]. Physical Review A, 1997, 55(4): 2989-3001.
[47] [47] Mcguirk J M, Snadden M J, Kasevich M A. Large area light-pulse atom interferometry[J/OL]. Physical Review Letters, 2000, 85(21): 4498-4501.
[48] [48] Butts D L, Kotru K, Kinast J M, et al. Efficient broadband Raman pulses for large-area atom interferometry[J/OL]. Journal of the Optical Society of America B, 2013, 30(4): 922.
[49] [49] Berg P, Abend S, Tackmann G, et al. Composite-light-pulse technique for high-precision atom interferometry[J/OL]. Physical Review Letters, 2015, 114(6): 063002.
[50] [50] Müller H, Chiow S wey, Chu S. Atom-Wave Diffraction Between the Raman-Nath and the Bragg Regime: Effective Rabi Frequency, Losses, and Phase Shifts[J/OL]. Physical Review A, 2008, 77(2): 023609.
[51] [51] Müller H, Chiow S wey, Long Q, et al. Atom Interferometry with up to 24-photon-momentum-transfer beam splitters[J/OL]. Physical Review Letters, 2008, 100(18): 180405.
[52] [52] Chiow S wey, Kovachy T, Chien H C, et al. 102 ?k large area atom interferometers[J/OL]. Physical Review Letters, 2011, 107(13): 130403.
[53] [53] Cladé P, Guellati-khélifa S, NEZ F, et al. Large momentum beam splitter using Bloch oscillations[J/OL]. Physical Review Letters, 2009, 102(24): 240402.
[54] [54] Müller H, Chiow S wey, Herrmann S, et al. Atom interferometers with scalable enclosed area[J/OL]. Physical Review Letters, 2009, 102(24): 240403.
[55] [55] Kotru K, Butts D L, Kinast J M, et al. Large-area atom interferometry with frequency-swept raman adiabatic passage[J/OL]. Physical Review Letters, 2015, 115(10): 103001.
[56] [56] Geiger R, Landragin A, Merlet S, et al. High-accuracy inertial measurements with cold-atom sensors[J/OL]. AVS Quantum Science, 2020, 2(2): 024702.
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YUE Xu-guang. Coherent Momentum Manipulation in Cold Atom Interferometry[J]. OPTICS & OPTOELECTRONIC TECHNOLOGY, 2022, 20(3): 1
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Received: Apr. 6, 2022
Accepted: --
Published Online: Aug. 3, 2022
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