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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Infrared-microwave double-resonance spectroscopy of CH_3OH by use of sidebands of CO_2 laser lines
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Infrared-microwave double-resonance spectroscopy of CH_3OH by use of sidebands of CO_2 laser lines

机译:CO_2激光线边带对CH_3OH的红外-微波双共振谱

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摘要

An infrared-microwave double-resonance technique using microwave sidebands of CO_2 laser lines as an infrared source has been applied for observation of rotational lines of the methanol molecule. Frequencies of more than 50 rotational lines in the excited C--O stretching bibrational state (v_(co)=1) have been measured with good precision and have been compared with those reported in infrared studies. Many of them agree within several megahertz, although some lines show differences of >10 MHz. The pressure dependence of the double-resonance signals for two low-J microwave transitions belonging to the ground and the v_(co)=1 states, respectively, have been observed for sample pressures as high as 0.4 Torr. For the former transition the signal has been observed to change its sign at higher pressures. Rate equation analysis explains the observed pressure dependence quantitatively and allows us to understand the physical processes involved in the double resonance.
机译:利用CO_2激光线的微波边带作为红外源的红外-微波双共振技术已被用于观察甲醇分子的旋转线。在激发的C-O拉伸双极化状态下(v_(co)= 1)超过50条旋转线的频率已被高精度测量,并已与红外研究中报道的频率进行了比较。他们中的许多人都同意在几兆赫兹范围内,尽管有些线路显示出相差> 10 MHz。对于高至0.4 Torr的样品压力,已经观察到两个共振信号分别对应于两个处于地面和v_(co)= 1状态的双共振信号的压力依赖性。对于前一个过渡,已观察到信号在较高压力下会改变其符号。速率方程分析定量地解释了观察到的压力依赖性,并使我们能够了解参与双共振的物理过程。

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