Chinese Journal of Quantum Electronics, Volume. 22, Issue 1, 1(2005)

Generation of cold or ultracold atomic beams and their applications

[in Chinese] and [in Chinese]*
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    References(50)

    [1] [1] Phillips W D, et al. Laser deceleration of an atomic beam [J]. Phys. Rev. Lett., 1982, 48(9): 596-599.

    [2] [2] Shimizu F. Laser cooling and trapping of Ne metastable atoms [J]. Phys. Rev., 1989, A39(5): 2758-2760.

    [3] [3] Barrett T E, et al. Slowing atoms with polarized light [J]. Phys. Rev. Lett., 1991, 67(25): 3483-3486.

    [4] [4] Joffe M A, et al. Transverse cooling and deflection of an atomic beam inside a Zeeman slower [J]. J. Opt. Soc.Am., 1993, B10(12): 2257-2262.

    [5] [5] Ertmer W, et al. Laser manipulation of atomic beam velocities: demonstration of stopped aatoms and velocity reversal [J]. Phys. Rev. Lett., 1985, 54(10): 996-999.

    [6] [6] Zhu M, et al. Continumous high-flux monoveloity atomic beam based on a broadband laser-cooling technique [J].Phys. Rev. Lett., 1991, 67(1): 46-49.

    [7] [7] Ketterle W, et al. Slowing and cooling atoms in isotropic laser light [J]. Phys. Rev. Lett., 1992, 69(17): 2483-2486.

    [9] [9] Treutlein P, et al. High-brightness atom source for atomic fountain [J]. Phys. Rev. A., 2001, 63: 051401-1.

    [13] [13] Raab E L, et al. Trapping of neutral sodium atoms with radiation pressure [J]. Phys. Rev. Lett., 1987, 59(23):2631-2634.

    [14] [14] Kerman A J, et al. Beyong optical molasses: 3D Raman sideband cooling of atomic cesium to high phase-space density [J]. Phys. Rev. Lett., 2000, 84: 439-442.

    [15] [15] Hansch T, et al. Cooling of gases by laser radiation [J]. Opt. Commun., 1975, 13: 68-69.

    [16] [16] Balykin I V, et al. Observation of the cooling of free sodium atoms in a resonance field with a scanning frequency [J]. JETP Lett., 1979, 29: 560-564.

    [17] [17] Minogin V G, et al. Deceleration and monochromazation of atomic beams by laser radiation [J]. Opt. Commun.,1980, 34: 265-268.

    [18] [18] Watts R N, et al. Manipulating atomic velicities using diode lasers [J]. Opt. Lett., 1986, 11(5): 291-294.

    [19] [19] Lison F, et al. High-brilliance Zeeman-slowed cesium atomic beam [J]. Phys. Rev., 1999, A61: 013405-1.

    [20] [20] Riis E, et al. Atom funnel for the production of a slow, high-density atomic beam [J]. Phys. Rev. Lett., 1990,64(14): 1658-1661.

    [21] [21] Chen H, et al. Cold atomic beam from a rubidium funnel [J]. Appl. Phys., 2000, B 70: 665-670.

    [22] [22] Scholz A, et al. Magneto-optical preparation of a slow, cold and bright Ne* atomic beam [J]. Opt. Commun.,1994, 111: 155-162.

    [23] [23] Fukuyama Y, et al. Bright atomic beam by a temporal Zeeman acceleration [J]. Apll. Phys., 2000, B70: 561-565.

    [24] [24] Ohmukai R, et al. Atomic beam guide by a one-dimensional magneto-optical trap [J]. Appl. Phys., 1999, B69:123-128.

    [25] [25] Nellessen J, et al. Magneto-optical compression of a monenergetic sodium atomic beam [J]. Opt. Commun., 1990,78: 300-308.

    [26] [26] Miranda S G, et al. "Dark-spot " atomic-beam slowing for on-axis loading of traps [J]. Phys. Rev., 1999, A59(1):882-885.

    [27] [27] Tempelaars J G C, et al. An intense, slow and cold beam of metastable Ne(3s) atoms [J]. Eur. Phys. J., 2002,D18: 113-121.

    [28] [28] Lu Z T, et al. Low-velocity intense source of atomic from a magnito-optical trap [J]. Phys. Rev. Lett., 1996,77(16): 3331-3334.

    [29] [29] Weyer S, et al. A continous beam of cold cesium atoms extracted from a two-dimensional magneto-optical trap [J]. Opt. Commun., 1997, 143: 30-34.

    [30] [30] Berthoud P, et al. A continuous beam of slow, cold cesium atoms magnetically extracted from a 2D magnetooptical trap [J]. Europhys. Lett., 1998, 41(2): 141-146.

    [31] [31] Berthoud P, et al. Bright, slow, and continuous beam of laser-cooled cesium atoms [J]. Phys. Rev., 1999, A60:4241-4244.

    [32] [32] Dieckmann K, et al. Two-dimensional magneto-optical trap as a source of slow atoms [J]. Phys. Rev., 1998, A58: 3891-3895.

    [33] [33] Vredenbregt E J D, et al. Booster for ultra-fast loading of atom traps [J]. Opt. Commun., 1998, 147:375 -381.

    [34] [34] Lee K L, et al. Single-beam atom trap in a pyramidal and conical hollow mirrow [J]. Opt. Lett., 1996, 21 (15):1177-1179.

    [35] [35] Kim J A, et al. Atom trap in an axicon mirror [J]. Opt. Lett., 1997, 22:177 -179.

    [36] [36] Lee K I, et al. Pulsed cold atomic beam from a hollow conical trop [J]. J. Korean Phys. Soc., 1998, 33: 365-369.

    [37] [37] Arlt J J, et al. A pyramidal magneto-opticaltrap as a source of slow atoms [J]. Opt. Commun., 1998, 157: 303-309.

    [38] [38] Kim K H, et al. Cold atomic beam produced by a conical mirror funnel [J]. Phys. Rev., 2001, A.64: 013402-1.

    [39] [39] Kim K H, et al. Cold rubidium atomic beam produced by Zeeman-imblanced radiation pressures [J]. Phys. Rev.,2002, A65: 055404-1.

    [40] [40] Schoser J, et al. Intense source of cold Rb atoms from a pure two-dimensional magneto-optical trap [J]. Phys.Rev., 2002, A66: 023410-1.

    [41] [41] Wohlleben W, et al. An atom faucet [J]. Eur. Phys. J., 2001, D15: 237-244.

    [42] [42] Cacciapuoti L, et al. A continuous cold atomic beam from a magneto-optical trap [J]. Eur. Phys. J., 2001, D15:245-249.

    [43] [43] Mewes M O, et al. Output couple for Bose-Einstein condensed atoms [J]. Phys. Rev. Lett., 1997, 78: 582-585.

    [44] [44] Anderson B P, et al. Macroscopic quantum interference from atomic tunnel arrays [J]. Science, 1998, 282: 1686-1689.

    [45] [45] Hagley E W, et al. A well-collimated quasi-continuous atom laser [J]. Science, 1999, 283: 1706-1709.

    [46] [46] Bloch I, et al. Atom laser with a CW output coupler [J]. Phys. Rev. Lett., 1999, 82: 3008-3011.

    [47] [47] Strecker K E, et al. Formation and propagation of matter-wave soliton trains [J]. Nature, 2002, 417: 150-153.

    [48] [48] Khaykovich L, et al. Formation of a matter-wave bright solution [J]. Science, 2002, 296: 1290- 1293.

    [49] [49] Baldwin K G H, et al. A bright metastable helium atomic beam for lithography and atom optics [J]. SPIE, 1997,2995: 11-20.

    [50] [50] Anderson M H, et al. Observation of Bose-Einstein condensation in a dilute atomic vapor [J]. Science, 1995, 269:198-201.

    [51] [51] Esslinger T, et al. Bose-Einstein condensation in a quadrupole-Ioffe-configuration trap [J]. Phys. Rev., 1998,A58(4): R 2664.

    [52] [52] Blocj I, et al. Atom laser with a cw output coupler [J]. Phys. Rev. Lett., 1999, 82(15): 3008.

    [53] [53] Blocj I, et al. Optics with an atom laser beam [J]. Phys. Rev. Lett., 2001, 87(3): 030401-1.

    [54] [54] Fujita J, et al. Manipulation of an atomic beam by a computer-generated hologram [J]. Nature, 1996, 380: 691.

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    [in Chinese], [in Chinese]. Generation of cold or ultracold atomic beams and their applications[J]. Chinese Journal of Quantum Electronics, 2005, 22(1): 1

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    Paper Information

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    Received: Sep. 27, 2003

    Accepted: --

    Published Online: May. 15, 2006

    The Author Email: (jpyin@phy.ecnu.edu.cn)

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