Sebbag Yoel, Barash Yefim, Levy Uriel
Opt Lett. 2019 Feb 15;44(4):971-974. doi: 10.1364/OL.44.000971.
The parametric four-wave mixing (4WM) process responsible for the generation of coherent blue light in alkali vapors is a self-seeded process which starts by population inversion and amplified spontaneous emission (ASE). Lately, attention has been turned toward frequency up- and down-conversion in alkali vapors, using relatively low pump powers with CW diode lasers. In this Letter, we investigate the interplay between ASE and 4WM in rubidium (Rb) vapors by studying the mid-infrared (mid-IR) radiation emitted in the forward direction at 5.23 μm. We show that the ASE can be suppressed by 4WM in the CW regime. Thus, we demonstrate the generation of coherent mid-IR light at 5.23 μm in hot Rb vapors via parametric 4WM.
在碱金属蒸汽中产生相干蓝光的参量四波混频(4WM)过程是一个自种子过程,它始于粒子数反转和放大自发辐射(ASE)。最近,人们将注意力转向了碱金属蒸汽中的频率上转换和下转换,使用连续波二极管激光器的相对低泵浦功率。在本信函中,我们通过研究在5.23μm向前方向发射的中红外(mid-IR)辐射,来研究铷(Rb)蒸汽中ASE与4WM之间的相互作用。我们表明,在连续波 regime 中,4WM可以抑制ASE。因此,我们展示了通过参量4WM在热Rb蒸汽中产生5.23μm的相干中红外光。