• Chinese Journal of Quantum Electronics
  • Vol. 35, Issue 3, 294 (2018)
Wendong ZHANG1、2、3、*, Chuan HE1、2、3, Sitong Yan1、2、3, Sachin Barthwal1、2, Shitong LONG1、2、3, Biao TANG1、2, Lin ZHOU1、2, Jin WANG1、2, and Mingsheng ZHAN1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3969/j.issn.1007-5461. 2018.03.006 Cite this Article
    ZHANG Wendong, HE Chuan, Yan Sitong, Barthwal Sachin, LONG Shitong, TANG Biao, ZHOU Lin, WANG Jin, ZHAN Mingsheng. Multi-frequency time division multiplexing laser amplification control system for atom interferometers[J]. Chinese Journal of Quantum Electronics, 2018, 35(3): 294 Copy Citation Text show less
    References

    [1] Dieckmann K, Spreeuw R J C, Weidemuller M, et al. Two-dimensional magneto-optical trap as a source of slow atoms[J]. Physical Review A, 1998, 58(5): 3891-3895.

    [2] MüMller H, Chiow S W, Chu S. Atom-wave diffraction between the Raman-Nath and the Bragg regime: Effective Rabi frequency, losses, and phase shifts[J]. Physical Review A, 2008, 77(2): 023609.

    [3] Chiow S W, Kovachy T, Chien H C, et al. 102 hk large area atom interferometers[J]. Physical Review Letters, 2011, 107(13): 130403.

    [4] Altin P A, Johnsson M T, Negnevitsky V, et al. Precision atomic gravimeter based on Bragg diffraction[J]. New Journal of Physics, 2012, 15(2): 023009.

    [5] Carraz O, Lienhart F, Charrière R, et al. Compact atomic gravimeter based on a pulsed and accelerated optical lattice[J]. Applied Physics B: Lasers and Optics, 2009, 97(2): 405-411.

    [6] Kasevich M A, Chu S. Atomic interferometry using stimulated Raman transitions[J]. Physical Review Letters, 1991, 67(2): 181-184.

    [8] Zhou L, Long S T, Tang B, et al. Test of equivalence principle at 10-8 level by a dual-species double diffraction Raman atom interferometer[J]. Physical Review Letters, 2015, 115(1): 013004.

    [9] Zhou L, Xiong Z Y, Yang W, et al. Measurement of local gravity via a cold atom interferometer[J]. Chinese Physics Letters, 2011, 28(1): 013701.

    [10] Zhou L, Xiong Z Y, Yang W, et al. Development of an atom gravimeter and of the 10-meter atom interferometer for precision gravity measurement[J]. General Relativity and Gravitation, 2011, 43(7): 1931-1942.

    [11] Bonnin A, Zahzam N, Bidel Y, et al. Simultaneous dual-species matter-wave accelerometer[J]. Physical Review A, 2013, 88(4): 043615.

    [12] Luo H, Li K, Zhang D F, et al. Multiple side-band generation for two-frequency components injected into a tapered amplifier[J]. Optics Letters, 2013, 38(7): 1161-1163.

    [13] Zhan S, Duan X C, Zhou M K, et al. Investigating the frequency-dependent amplification of a tapered amplifier in atom interferometers[J]. Optics Letters, 2015, 40(1): 29-32.

    [14] Yang W, Zhou L, et al. Time-division-multiplexing laser seeded amplification in a tapered amplifier[J]. Chinese Optics Letters, 2015, 13(1): 012601.

    [15] Hanley R K, Gregory P D, Hughes I G, et al. Absolute absorption on the potassium D lines: Theory and experiment[J]. Journal of Physics B-Atomic Molecular and Optical Physics, 2015, 28(19): 195004.

    ZHANG Wendong, HE Chuan, Yan Sitong, Barthwal Sachin, LONG Shitong, TANG Biao, ZHOU Lin, WANG Jin, ZHAN Mingsheng. Multi-frequency time division multiplexing laser amplification control system for atom interferometers[J]. Chinese Journal of Quantum Electronics, 2018, 35(3): 294
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