Umeda N, Tsukiji M, Takasaki H
Appl Opt. 1980 Feb 1;19(3):442-50. doi: 10.1364/AO.19.000442.
Tuning characteristics of power, intramode beat frequency, and polarization of 633-nm internal mirror lasers filled with natural Ne or (20)Ne are studied. It is found that the tuning curve of a polarization signal is S-shaped for the natural Ne laser, whereas that of the intramode beat frequency is S-shaped for the (20)Ne laser. The characteristic parameters of the tuning curve of the intramode beat frequency are determined. The axial modes of a (3)He-(20)Ne laser are collapsed into one by a transverse magnetic field and frequency stabilized by cooling the laser tube with a fan to keep the intramode beat constant. Frequency fluctuation of 3 x 10(-10) is obtained by the Allan variance analysis for the integration period range of 0.1-100 sec. Absolute accuracy and interinstrumental reproducibility of stabilized wavelengths can be expected for a (3) He-(20)Ne transverse Zeeman laser stabilized at the central frequency of the intramode beat.
研究了充有天然氖或(20)氖的633纳米内腔镜激光器的功率、模内拍频和偏振的调谐特性。发现天然氖激光器的偏振信号调谐曲线为S形,而(20)氖激光器的模内拍频调谐曲线为S形。确定了模内拍频调谐曲线的特征参数。通过横向磁场将(3)He-(20)Ne激光器的轴向模式合并为一个,并通过用风扇冷却激光管来稳定频率,以保持模内拍频恒定。通过对0.1 - 100秒积分周期范围的阿伦方差分析,获得了3×10^(-10)的频率波动。对于稳定在模内拍频中心频率的(3)He-(20)Ne横向塞曼激光器,可以预期其稳定波长的绝对精度和仪器间的再现性。