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首页> 外文期刊>Journal of Luminescence >Spectrally selective molecular doped solids: spectroscopy, photophysics and their application to ultrafast optical pulse processing
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Spectrally selective molecular doped solids: spectroscopy, photophysics and their application to ultrafast optical pulse processing

机译:光谱选择性分子掺杂固体:光谱学,光物理及其在超快光脉冲处理中的应用

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摘要

The persistent spectral hole-burning (PSHB) phenomenon observed in molecular doped polymers cooled down to liquid helium temperatures allows the engraving of spectral structures in the inhomogeneous absorption profile of the material. This phenomenon known since 1974 has became a fruitful field for the study of the intimacy of complex molecular systems in the solid state, revealing high-resolution spectroscopy, photophysics, photochemistry and dynamics of molecular doped amorphous media, organic as well as inorganic. A PSHB molecular doped solid can be programmed in spectral domain and therefore, it can be converted in an optical processor capable to achieve user-defined optical functions. Some aspects of this field are illustrated in the present paper. An application is presented where a naphthalocyanine doped polymer film is used in a demonstrative experiment to prove that temporal aberration free re-compression of ultra-short light pulses is feasible. Perspectives for the coherent control of light fields or photochemical processes are also evoked. (c) 2004 Elsevier B.V. All rights reserved.
机译:在冷却至液氦温度的分子掺杂聚合物中观察到的持久光谱空穴燃烧(PSHB)现象使光谱结构雕刻在材料的非均匀吸收曲线中。自1974年以来已知的这一现象已成为研究固态复杂分子系统亲密性的一个富有成果的领域,它揭示了高分辨率光谱,光物理,光化学以及分子掺杂的非晶态介质(有机和无机)的动力学。可以在光谱域中对PSHB分子掺杂的固体进行编程,因此,可以在能够实现用户定义的光学功能的光学处理器中对其进行转换。本文说明了该领域的某些方面。提出了在示范性实验中使用萘酞菁掺杂的聚合物膜的应用,以证明超短光脉冲的无时间像差的再压缩是可行的。还提出了对光场或光化学过程进行相干控制的观点。 (c)2004 Elsevier B.V.保留所有权利。

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