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Theoretical study on optical storage of the transmitted-aperture type Super-RENS

机译:透射光圈型Super-RENS的光存储的理论研究

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In this paper, theoretical work on the transmitted-aperture (TA) type super-RENS was introduced. Firstly, the forming of transmitted-aperture in the mask layer was studied based on laser-induced thermal model with Gauss assumption. A numerical simulation was carried out by FEMLAB. The simulation results showed that transmitted aperture would not be formed until the exposure power exceeded a threshold within a certain pulse time and vice versa. Secondly, a calculation model of electromagnetic field of TA type super-RENS disk was presented based on the three-dimensional finite-difference time-domain method (3D-FDTD) together with a vector method of Gaussian beam. Lorenz dispersive model was employed for mask layer and reflective layer. The distributions of electric field for TA type super-RENS were theoretically analyzed. Lastly, the static writing experiment for TA type Super-RENS was carried out with different power and pulse time, as well as for conventional CD-R/W. The experiment results well satisfied the simulation.
机译:本文介绍了透射孔径(TA)型超级RENS的理论工作。首先,基于高斯假设的激光诱导热模型,研究了掩模层中透射孔的形成。由FEMLAB进行了数值模拟。仿真结果表明,只有在一定的脉冲时间内曝光功率超过阈值,才会形成透射孔径,反之亦然。其次,基于三维有限差分时域法(3D-FDTD)和高斯光束矢量法,提出了TA型super-RENS盘的电磁场计算模型。劳伦兹色散模型用于掩模层和反射层。从理论上分析了TA型超RENS的电场分布。最后,以不同的功率和脉冲时间以及传统的CD-R / W对TA型Super-RENS进行了静态写入实验。实验结果很好地满足了仿真要求。

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