Institute of Atomic and Molecular Sciences (IAMS), Academia Sinica, P.O. Box 23-166, Taipei, Taiwan 10617.
J Phys Chem A. 2009 Nov 26;113(47):13133-8. doi: 10.1021/jp902969v.
A novel method is exploited in this report to directly determine the relative detection sensitivity of the (2+1) resonance-enhanced multiphoton ionization (REMPI) bands of CH(3) and CHD(2) radicals. The basic idea is based on the simple fact that in an infrared (IR) absorption process the number of molecules being pumped from the lower state must be the same as the number of molecules in the excited upper state. Hence, the measured intensities of the respective REMPI bands should directly reflect their relative detection sensitivities. In order to ensure the processes involved and better quantify the measurements, extensive IR-UV double resonance spectroscopy was also performed. Using the REMPI-IR scheme, the IR spectrum of the v(1) fundamental (CH stretch) of CHD(2) was obtained and assigned for the first time. Using the IR-REMPI approach, high-resolution (2+1) REMPI spectra via the Rydberg 3p states of both radicals were demonstrated in a rotationally specific manner for both the origin and vibronic-excited bands, from which the predissociation rates of the Rydberg 3p states were deduced.
本报告利用一种新方法直接测定了 CH(3)和 CHD(2)自由基的(2+1)共振增强多光子电离(REMPI)带的相对检测灵敏度。基本思想基于一个简单的事实,即在红外(IR)吸收过程中,从下态泵出的分子数必须与处于激发上态的分子数相同。因此,各自 REMPI 带的测量强度应直接反映其相对检测灵敏度。为了确保所涉及的过程并更好地量化测量,还进行了广泛的 IR-UV 双共振光谱学研究。使用 REMPI-IR 方案,首次获得并分配了 CHD(2)的 v(1)基频(CH 伸缩)的 IR 光谱。使用 IR-REMPI 方法,以旋转特异性的方式展示了两种自由基的 Rydberg 3p 态的高分辨率(2+1)REMPI 光谱,从中推断出 Rydberg 3p 态的预解离速率。