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Polarized Laser Induced Holographic Surface Relief Gratings on Polymer Films

机译:聚合物薄膜上的偏振激光诱导全息表面浮雕光栅

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Large-amplitude holographic surface relief gratings on azobenzene-containingpolymer films were optically induced without any subsequent steps. The surface relief structures were observed upon exposure to an interference pattern of a polarized Ar+ laser beams. The surface relief structures were investigated using atomic force microscopy. A very regulary spaced surface grating with a surface modulation depth of more than 1000 A was obtained. The surface relief gratings were stable at ambient conditions, and the samples were reusable after erasing the gratings by heating the film above its glass transition temperature. The orientation of the azobenzene groups was induced first and followed by the surface deformation process. The polarization of the writing beam had a significant effect on the surface modulation process. The relation between the surface change and optically induced orientation of the azobenzene groups is discussed. Thermal effects were also investigated by studying the dependence of the writing intensity and grating spacing on the grating formation process. (MM).

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