• Acta Optica Sinica
  • Vol. 22, Issue 10, 1181 (2002)
[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], and [in Chinese]*
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    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Third-Harmonic Locking of a Diode Laser to Cesium Saturation Absorption D2 Line without Frequency Dither[J]. Acta Optica Sinica, 2002, 22(10): 1181 Copy Citation Text show less
    References

    [1] Wieman C E, Hollberg L. Using diode lasers for atomic physics. Rev. Sci. Instrum., 1992, 62(1):1~20

    [2] Fox R W, Weimer C S, Hollberg L et al.. The diode laser as a spectroscopic tool. Spectro. Acta Rev., 1993, 15:291~299

    [3] Yamamoto Y, Mukai T, Saito S et al.. Quantum phase noise and linewidth of a semiconductor laser. Electron. Lett., 1981, 17(9):327~329

    [4] Dahmani B, Hollberg L, Drullinger R et al.. Frequency stabilization of semiconductor lasers by resonant optical feedback. Opt. Lett., 1987, 12(11):876~878

    [5] Spano P, Piazzola S, Tamburrini M et al.. Measurement of the injection-locking influence on the frequency noise spectrum of single-mode semiconductor lasers. Opt. Lett., 1985, 10(11):556~558

    [6] Freeman M J, Wang H L, Steel D G et al.. Amplitude-squeezed light from a quantum-well laser. Opt. Lett., 1993, 18(5):379~381

    [7] Coldren L A, Corzine S W. Continuously-tunable single-frequency semiconductor laser. IEEE J. Quant. Electron., 1987, 23(6):903~908

    [8] Koch T L, Koren U, Miller B I et al.. High performance tunable 1.5 μm InGaAs/InGaAsP multiple quantum well distributed Bragg reflector lasers. Appl. Phys. Lett., 1988, 53(12):1036~1038

    [9] Ikegami T, Sudo S, Sakai Y et al.. Frequency Stabilization of Semiconductor Laser Diodes. Boston: Artech Housen. Inc, 1995

    [10] Valenzuela R A, Cimini L J, Wilson R W et al.. Frequency stabilization of AlGaAs lasers to absorption spectrum of rubidium using Zeeman effect. Electron. Lett.,1988,24(12):725~726

    [11] Ikegami T, Oshima S, Ohtsu M et al.. Frequency stabilization of laser diodes to the Cs-D2 line with the Zeeman modulation method. Jpn. J. Appl. Phys., 1989,28:L1839~L1841

    [12] Yanagawa T, Saito S, Machida S et al.. Frequency stabilization of an InGaAsP distributed feedback laser to a NH3 absorption line at 15137 AAU with an external frequency modulator. Appl. Phys. Lett., 1985, 47(10):1036~1038

    [13] Sakai Y, Yokohama L, Kano G et al.. Frequency stabilized laser diode locked to acetylene gas absorption lines using fiber-pigtail-type acoustic optical modulator. IEEE Photon. Tech. Lett.,1992, 4(1):96~98

    [14] Wallard A J. Frequency stabilization of the helium-neon laser by saturated absorption in iodine vapor. J. Phys. (E), 1972, 5(9):926~930

    [15] Balling P, Blabla J, Chartier A et al.. International comparison of 127I2 stabilized He-Ne lasers at λ=633 nm using the third and the fifth harmonic locking technique. IEEE Trans. Instrum. Meas.,1995, 44(2):173~176

    [16] Barwood G P, Gill P, Rowley W R C et al.. Laser diode frequency stabilization to Doppler-free rubidium spectra. Electron. Lett., 1988, 24(3):769~770

    [17] Steck D A. Cesium D line datda. The University of Texas at Austin. http://george.ph.utexas.edu/~dsteck/alkalidata/

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    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Third-Harmonic Locking of a Diode Laser to Cesium Saturation Absorption D2 Line without Frequency Dither[J]. Acta Optica Sinica, 2002, 22(10): 1181
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