Krieg J, Klemann A, Gottbehüt I, Thorwirth S, Giesen T F, Schlemmer S
I. Physikalisches Institut, Universität Köln, Zülpicher Str. 77, 50937 Köln, Germany.
Rev Sci Instrum. 2011 Jun;82(6):063105. doi: 10.1063/1.3596569.
We present a continuous-wave optical parametric oscillator (OPO) capable of high resolution spectroscopy at wavelengths between 4.8 μm and 5.4 μm. It is based on periodically poled lithium niobate (PPLN) and is singly resonant for the signal radiation around 1.35 μm. Because of the strong absorption of PPLN at wavelengths longer than 4.5 μm, the OPO threshold rises to the scale of several watts, while it produces idler powers of more than 1 mW and offers continuous tuning over 15 GHz. A supersonic jet spectrometer is used in combination with the OPO to perform measurements of the transient linear molecule Si(2)C(3) at 1968.2 cm(-1). Fifty rovibrational transition frequencies of the ν(3) antisymmetric stretching mode have been determined with an accuracy on the order of 10(-4) cm(-1), and molecular parameters for the ground and the v(3) = 1 state have been determined most precisely.
我们展示了一种连续波光参量振荡器(OPO),它能够在4.8μm至5.4μm波长范围内进行高分辨率光谱分析。该振荡器基于周期性极化铌酸锂(PPLN),并且对于波长约为1.35μm的信号辐射是单共振的。由于PPLN在波长大于4.5μm时具有强烈吸收,OPO阈值上升到数瓦量级,而它产生的闲频光功率超过1mW,并能在15GHz范围内连续调谐。超音速射流光谱仪与OPO结合使用,对瞬态线性分子Si(2)C(3)在1968.2cm(-1)处进行测量。已确定了ν(3)反对称伸缩模式的50个振转跃迁频率,精度约为10(-4)cm(-1),并且最精确地确定了基态和v(3)=1态的分子参数。