首页> 外文会议>Symposium on Electronic, Optical and Optoelectronic Polymers and Oligomers, Apr 17-20, 2001, San Francisco, California >Third Order Non-Linear Optical Properties of Polyphenylene Vinylene Derivatives in the Infrared Range
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Third Order Non-Linear Optical Properties of Polyphenylene Vinylene Derivatives in the Infrared Range

机译:聚苯撑乙烯衍生物在红外范围内的三阶非线性光学性质

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The non-linear optical properties of poly[l,4-phenylene-l-phenyl vinylene], poly[l,4-phenylene-l,2-di(4'-phenoxyphenyl) vinylene], poly[2,5-dioctyloxy-l,4-phenylene vinylene] and poly[2- methoxy -5- (2'-ethylhexyloxy)-l,4-phenylene vinylene] MEH-PPV with different molecular weights were studied by the Third Harmonic Generation (THG) technique. The dispersion of the X~3 coefficient was measured in the wide infra red range from 1.2 up to 2.1μm. It was shown that the highest X~3 value, observed for the high molecular weight MEH-PPV (Mw 230.000), reaches the maximum of 8x10~(-11) esu at 1.77μm. At the same time, the medium molecular weight MEH-PPV (Mw 95.000) demonstrated not significantly different X~3 value of 6x10~(-11) esu. The dispersion of the X~3 coefficient was compared to the absorption of the third harmonic beam and strong X~3 enhancement relative to the excitonic absorption was observed. However, a surprising shift of about 70 nm towards the longer wavelengths between the two peaks was always observed for all studied PPV derivatives. The results of THG measurements were compared to those obtained by conventional Z-scan technique in the same range. It was shown that the THG X~3 values in infrared range were up to one order of magnitude lower than those of direct Z-scan measurements.
机译:聚[1,4-亚苯基-1-苯基亚乙烯基],聚[1,4-亚苯基-1,2-二(4'-苯氧基苯基)亚乙烯基],聚[2,5-二辛基氧基]的非线性光学性质通过第三谐波产生(THG)技术研究了具有不同分子量的-1,4-亚苯基亚乙烯基]和聚[2-甲氧基-5-(2'-乙基己氧基)-1,4-亚苯基亚乙烯基] MEH-PPV。 X〜3系数的色散在1.2至2.1μm的宽红外范围内测量。结果表明,高分子量MEH-PPV(Mw 230.000)观察到的最高X〜3值在1.77μm处达到最大值8x10〜(-11)esu。同时,中等分子量的MEH-PPV(Mw 95.000)表现出6x10〜(-11)esu的X〜3值没有显着差异。将X〜3系数的色散与三次谐波的吸收进行比较,并观察到相对于激子吸收的X〜3增强。但是,对于所有研究的PPV衍生物,始终观察到两个峰之间的较长波长向约70 nm的惊人位移。在相同范围内,将THG测量结果与通过常规Z扫描技术获得的结果进行比较。结果表明,红外范围内的THG X〜3值比直接Z扫描测量值低了一个数量级。

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