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Photon-trap spectroscopy applied to molecules adsorbed on a solid surface: probing with a standing wave versus a propagating wave

机译:光子捕获光谱法应用于吸附在固体表面上的分子:驻波与传播波的探测

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We apply photon-trap spectroscopy, a generalized scheme of cavity ringdown spectroscopy, to infrared spectroscopy of molecular adsorbates on a solid substrate. The storage lifetime of light in a high-finesse Fabry-Perot cavity provides a high absorbance sensitivity for the substrate sample, which is placed exactly normal to the light beam in the cavity to minimize optical losses. Infrared spectra of the C-H stretching vibration of alkylsiloxane monolayer films on a silicon substrate are measured in three ways, namely by employing pulsed and continuous-wave lasers as well as by conventional Fourier transform infrared spectroscopy. The magnitude of optical absorption is shown to vary by the character of the interacting light used in the measurement, i.e., a standing wave versus a propagating wave.
机译:我们将光子陷阱光谱法(腔衰荡光谱法的一种通用方案)应用于固体基质上分子吸附物的红外光谱法。光在高级Fabry-Perot腔中的存储寿命为衬底样品提供了高吸收灵敏度,该衬底样品与腔中的光束完全垂直放置,以最大程度地减少光学损失。硅基板上烷基硅氧烷单层膜的C-H拉伸振动的红外光谱可以通过三种方式进行测量,即通过使用脉冲和连续波激光以及常规的傅里叶变换红外光谱。显示出光吸收的大小随测量中使用的相互作用光的特性而变化,即驻波对传播波。

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