Characteristics of Escape Probabilities in Single-and Two-Color Multiphoton Ionization of Anthracene in n-Alkanes

S. Yamada
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Abstract

Single-and two-color multiphoton ionization of anthracene have been compared in n- alkane solvents. The simultaneous action of 10-ns laser lights at 355 (UV) and 1064 nm (IR) gave a substantially larger time-integrated photocurrent signal (thus, the escape probability of a geminate cation-electron pair based on the Onsager model) as compared with that obtained when the UV light acted alone. It is suggested that the IR light acts through the geminate cation-electron pair to give its longer thermalization distance. For a solvent with higher electron mobility, escape probabilities for both photoionization methods tended to belarger but the relative increase in the escape probability by the additional action of the IR light tended to be smaller.
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正构烷烃中蒽的单色和双色多光子电离逃逸概率特征
比较了蒽在正构烷烃溶剂中的单色和双色多光子电离。10ns激光在355 (UV)和1064 nm (IR)下同时作用,与单独作用紫外光时相比,产生了更大的时间积分光电流信号(因此,基于Onsager模型的双生阳离子-电子对的逃逸概率)。认为红外光通过阳离子-电子对的双相作用使其具有较长的热化距离。对于电子迁移率较高的溶剂,两种光离方法的逃逸概率都趋于较大,但红外光的附加作用对逃逸概率的相对增加趋向较小。
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