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运用非傍轴光束传输的矢量矩理论,对任意线偏振高斯光束的非傍轴传输进行了系统的研究,给出了定量计算偏振对束腰、横向远场发散角和光束传输因子贡献的解析通式. 并对高度非傍轴和傍轴两种极端情形,简化了相应的计算式. 在高斯光源线度趋向于零的极限情形下,两个横向的最大发散角均为90°,与偏振态无关. 在高度非傍轴情形下,可以通过所给出的解析通式设计高斯光源的半宽度与激射光波长之比值以及线偏振态来达到所期望的光束传输特性. 对于傍轴情形,不同偏振对束腰和横向远场发散角稍有影响,但这种影响一般可以忽略不计;而光束传输因子却始终保持不变,与偏振态无关. 若介于这两种极端情形之间,则可以根据高斯光源的半宽度之值和所期望的计算精度,确定解析式中级数的项数进而确定任意线偏振高斯光束的非傍轴传输特性.The forming of transmitted-aperture in Sb layer of Super-RENS was studied based on laser-induced thermal model with Gauss assumption. The optical transmit model was created with optical admittance characteristic matrix. A numerical simulation was carried out by FEMLAB to understand the forming process of the aperture. The simulation results showed that transmitted aperture would not be formed until the exposure power exceeded a threshold within a certain pulse time, further more, the aperture size would be increased if the power was raised. The static writing experiment for transmitted-aperture type Super-RENS was carried out. The experiment results well agree with the simulation. It is concluded that a laser-induced thermal model could well describe the forming of aperture in Sb layer of transmitted-aperture type Super-RENS in optical data storage.
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Keywords:
- optical storage /
- transmitted aperture /
- super resolution near-field structure (Super-RENS) /
- laser-induced thermal effect







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