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On the inscription of period and half-period surface relief gratings in azobenzene-functionalized polymers

机译:关于偶氮苯官能化聚合物中的周期和半周期表面凹凸光栅的铭文

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摘要

Laser-light-induced surface relief grating inscription was carried out in the newly synthesized azobenzene-functionalized poly(amide-imide)s having the same main- and side-chain structures but different substituents in the azobenzene groups. The gratings were inscribed employing the two-wave mixing technique with linearly polarized laser beams. Three different polarization configurations were used: s(-)s, p(-)p, and s(-)p. The relatively deep surface relief gratings of period A were formed for the case of s(-)s and p(-)p polarizations, whereas the s(-)p inscription resulted in the half-period grating (Lambda/2) with the weak surface modulation. The origin of the formation of Lambda/2 structure for s-p configuration results from the interference between zeroth- and first-order beams scattered on the polarization refractive index grating and having the same polarization. On the basis of this idea, we presented the simple kinetic model predicting and modeling the half-period grating formation with its temporal evolution. The proposed model is consistent with the experimental findings.
机译:在新合成的具有相同主链和侧链结构,但在偶氮苯基团中具有不同取代基的偶氮苯官能化聚(酰胺-酰亚胺)上进行了激光诱导的表面起伏光栅题写。光栅是采用两波混合技术与线性偏振激光束刻划而成的。使用了三种不同的极化配置:s(-)s,p(-)p和s(-)p。对于s(-)s和p(-)p极化情况,形成了周期A的较深表面起伏光栅,而s(-)p题字导致半周期光栅(Lambda / 2)具有弱表面调制。用于s-p构造的Lambda / 2结构的形成的根源是零级和一级光束在偏振折射率光栅上散射且具有相同偏振的干涉。在此思想的基础上,我们提出了简单的动力学模型来预测和建模半周期光栅的形成及其时间演化。提出的模型与实验结果一致。

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