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Below-diffraction-limited hybrid recording using silicon thin film super-resolution structure

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【作者】 焦新兵魏劲松干福熹

【Author】 Jiao Xin-Bing,Wei Jing-Song,and Gan Fu-Xi Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Shanghai 201800,China

【机构】 Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences

【摘要】 We report on new experimental results for below-diffraction-limited hybrid recording.In our experiments,by means of focused laser assisted magnetic recording,the magnetic domains within TbFeCo thin films are obtained under an external perpendicular direct magnetic field.For a single magnetic medium,the domain size is mainly determined by the focused spot,which is about 620 nm for the laser wavelength λ=406 nm,and a numerical aperture of the lens of 0.80.However,when a silicon thin film structure is inserted between the substrate and the magnetic medium,the recording domains can be reduced obviously.By optimizing the experimental condition,even the size can be reduced to about 100 nm,which is below the diffraction limit,i.e.about 1/6 of the spot size.This is very useful for improving the hybrid recording density in practical applications.

【Abstract】 We report on new experimental results for below-diffraction-limited hybrid recording.In our experiments,by means of focused laser assisted magnetic recording,the magnetic domains within TbFeCo thin films are obtained under an external perpendicular direct magnetic field.For a single magnetic medium,the domain size is mainly determined by the focused spot,which is about 620 nm for the laser wavelength λ=406 nm,and a numerical aperture of the lens of 0.80.However,when a silicon thin film structure is inserted between the substrate and the magnetic medium,the recording domains can be reduced obviously.By optimizing the experimental condition,even the size can be reduced to about 100 nm,which is below the diffraction limit,i.e.about 1/6 of the spot size.This is very useful for improving the hybrid recording density in practical applications.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos 50772120 and 60490290);Funds of the Chinese Academy of Sciences for Key Topics in Innovation Engineering (Grant No KJCXZYW.NANO.06);the National Basic Research Program of China (Grant No 2007CB935400)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2009年12期
  • 【分类号】O484.43
  • 【下载频次】19
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