Laser System Engineering Section, Raja Ramanna Centre for Advanced Technology, Indore 452013, India.
Appl Spectrosc. 2013 Sep;67(9):1036-41. doi: 10.1366/12-06972.
This paper presents studies on the pulsed optogalvanic effect and isotope-selective excitation of Yb 555.648 nm (0 cm(-1) → 17 992.007 cm(-1)) and 581.067 nm (17 992.007 cm(-1) → 35 196.98 cm(-1)) transitions, in a Yb/Ne hollow cathode lamp. The Yb atoms were excited by narrow linewidth (500-1000 MHz) Rh110 and Rh6G dye based pulsed lasers. Optogalvanic signal inversion for ground state transition at 555.648 nm was observed beyond a hollow cathode discharge current of 8.5 mA, in contrast to normal optogalvanic signal at 581.067 nm up to maximum current of 14 mA. The isotope-selective excitation studies of Yb were carried out by recording Doppler limited optogalvanic signals as a function of dye laser wavelength. For the 581.067 nm transition, three even isotopes, (172)Yb, (174)Yb, and (176)Yb, and one odd isotope, (171)Yb, were clearly resolved. These data were compared with selective isotope excitation by 10 MHz linewidth continuous-wave dye laser. For 555.648 nm transition, isotopes were not clearly resolved, although isotope peaks of low modulation were observed.
本文研究了 Yb 555.648nm(0cm(-1)→17992.007cm(-1))和 581.067nm(17992.007cm(-1)→35196.98cm(-1))跃迁的脉冲光电流效应和同位素选择激发,实验采用 Yb/Ne 空心阴极灯。Yb 原子由窄线宽(500-1000MHz)Rh110 和 Rh6G 染料脉冲激光器激发。与在 581.067nm 处的正常光电流信号相比,在空心阴极放电电流超过 8.5mA 时观察到 555.648nm 处基态跃迁的光电流信号反转,而在最大电流 14mA 时达到 581.067nm 处的正常光电流信号。通过记录染料激光波长函数的多普勒限制光电流信号,进行了 Yb 的同位素选择激发研究。对于 581.067nm 跃迁,三个偶数同位素(172)Yb、(174)Yb 和(176)Yb,以及一个奇数同位素(171)Yb,得到了清晰的分辨。这些数据与 10MHz 线宽连续波染料激光的选择性同位素激发进行了比较。对于 555.648nm 跃迁,同位素没有得到清晰分辨,尽管观察到低调制的同位素峰。