Chinese Journal of Lasers, Volume. 28, Issue 9, 772(2001)
A-Novel Ac Electro-magnetic Trap for Neutral Atom
[1] [1] T. Stace, A. N. Luiten, R. P. Kovacich. Laser offset-frequency locking using a frequency-to-voltage converter. Meas. Sci. Technol., 1998, 9(9):1635~1637
[2] [2] M. J. Padgett, N. Bett, R. J. Butcher. A simple frequency discriminator circuit for offset locking of lasers. J. Phys. E: Sci. Instrum., 1988, 21(6):554~557
[3] [3] Hu Yu, Li Xian, Wang kai et al.. 10.6 μm laser heterodyne frequency tracking system with high stability. SPIE, 1992, 1635:74~80
[4] [4] Dayong Zhu, Xuecai yu, Naigiong Yie et al.. Research on frequency stabilization and offset frequency locking for coherent CO2 laser radar. SPIE, 1992, 1633:330~336
[5] [5] Paul W. Pace, James M. Cruickshank. A frequency stabilized compact high repetition rate TEA- CO2 laser. IEEE J. Quantum Electron., 1980, QE-16(9):937~944
[6] [6] H. N. Rutt. Heterodyne frequency offset locking of a miniature TEA laser. 12th International Quantum Electronicis Conference. UK, 1982. 286
[7] [7] H. N. Rutt. A heterodyne frequency offset locking technique for pulsed or CW lasers. J. Phys. E: Sci. Instrum., 1984, 17(8):704~709
[8] [8] D. W. Allan. Statistics of atomic frequency standards. Proc. IEEE, 1966, 54(2):221~230
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[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. A-Novel Ac Electro-magnetic Trap for Neutral Atom[J]. Chinese Journal of Lasers, 2001, 28(9): 772