Milster T D, Jo J S, Hirota K
Optical Data Storage Center, Optical Sciences Center, Universityof Arizona, Tucson, Arizona 85721, USA.
Appl Opt. 1999 Aug 10;38(23):5046-57. doi: 10.1364/ao.38.005046.
The electromagnetic field incident on the thin-film layers in a solid immersion lens (SIL) system is decomposed into contributions from homogeneous and inhomogeneous waves, which are commonly referred to as propagating and evanescent waves, respectively. The homogeneous and the inhomogeneous parts have different properties with respect to the field distribution in the gap and inside the recording layers. The homogeneous part is shown to diffract like a focused wave with a numerical aperture of 1, and the inhomogeneous part decays exponentially away from the bottom of the SIL. Two examples are discussed in detail, and the concept of a vector illumination system transfer function, which includes effects of the recording layers, is introduced.
入射到固体浸没透镜(SIL)系统中薄膜层的电磁场被分解为均匀波和非均匀波的贡献,这两种波通常分别被称为传播波和倏逝波。均匀部分和非均匀部分在间隙和记录层内部的场分布方面具有不同的特性。均匀部分表现出像数值孔径为1的聚焦波那样衍射,而非均匀部分从SIL底部向外呈指数衰减。详细讨论了两个例子,并引入了包括记录层效应的矢量照明系统传递函数的概念。