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Vector diffraction and polarization effects in an optical disk system

机译:光盘系统中的矢量衍射和偏振效应

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The track pitch of current optical disks is comparable with the wavelength of the laser source. In this domain of the pitch-to-wavelength ratio, the complex-diffraction amplitudes are different for different incident polarization states, and the validity of the scalar diffraction theory is questionable. Furthermore, the use of multilayer coatings and high-numerical-aperture beams in modern optical disk technology inevitably entails the excitation of surface waves, which can disturb the baseball pattern significantly. To describe the interaction of a focused beam with a grooved multilayer system fully, it is necessary to have a rigorous vector theory. We use a rigorous vector theory to model the diffraction of light at the optical disk. We present the simulation and the experimental results and demonstrate the ability of this approach to predict or model accurately all essential features of beam-disk interaction, including the polarization effects and the excitation of surface waves. # 1998 Optical Society of America OCIS codes: 210.0210, 050.0050, 090.2890, 060.0160, 090.2900.
机译:当前光盘的轨道间距可与激光源的波长相比。在螺距与波长之比的这个域中,对于不同的入射偏振态,复衍射振幅是不同的,并且标量衍射理论的有效性值得怀疑。此外,在现代光盘技术中多层涂层和高数值孔径光束的使用不可避免地需要激发表面波,这会极大地干扰棒球图案。为了充分描述聚焦光束与带凹槽的多层系统的相互作用,必须具有严格的矢量理论。我们使用严格的矢量理论对光在光盘上的衍射进行建模。我们介绍了仿真和实验结果,并证明了这种方法能够准确预测或建模束-盘相互作用的所有基本特征,包括偏振效应和表面波激发。 #1998美国光学学会OCIS编码:210.0210、050.0050、090.2890、060.0160、090.2900。

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