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Numerical analysis of nano-aperture light source for high-density optical data storage

机译:用于高密度光学数据存储的纳米孔径光源的数值分析

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摘要

Two unconventional nano-aperture light sources, an L-shaped nano-aperture source and a 3D nano-aperture source for high-density optical data storage, are numerically investigated. With incidence of a Gaussian beam, the spot size of the Poynting vector coupled into the recording medium is 130 x 175 nm(2) for the L-aperture and 120 x 135 nm(2) for the 3D nano-aperture. The quantitative analyses indicate that the unconventional nano-aperture sources can provide enough power density to record marks in the commercial recording medium. It is feasible to use a laser diode with a nano-aperture as an active nanometer light source for high-density optical data storage.
机译:数值研究了两个非常规纳米孔径光源,一个L形纳米孔径光源和一个3D纳米孔径光源,用于高密度光学数据存储。随着高斯光束的入射,耦合到记录介质中的Poynting矢量的光斑尺寸对于L孔径为130 x 175 nm(2),对于3D纳米孔径为120 x 135 nm(2)。定量分析表明,非常规的纳米孔径源可以提供足够的功率密度,以在商业记录介质中记录标记。将具有纳米孔径的激光二极管用作有源纳米光源用于高密度光学数据存储是可行的。

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