Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, China.
Nanoscale. 2011 Aug;3(8):3233-7. doi: 10.1039/c1nr10395d. Epub 2011 Jun 10.
Nano-optical information storage is very important in meeting information technology requirements. However, obtaining nanometric optical information recording marks by the traditional optical method is difficult due to diffraction limit restrictions. In the current work, the nonlinear saturable absorption effect is used to generate a subwavelength optical spot and to induce nano-optical information recording and readout. Experimental results indicate that information marks below 100 nm are successfully recorded and read out by a high-density digital versatile disk dynamic testing system with a laser wavelength of 405 nm and a numerical aperture of 0.65. The minimum marks of 60 nm are realized, which is only about 1/12 of the diffraction-limited theoretical focusing spot. This physical scheme is very useful in promoting the development of optical information storage in the nanoscale field.
纳米光学信息存储在满足信息技术要求方面非常重要。然而,由于受到衍射极限的限制,通过传统的光学方法获得纳米级光学信息记录标记是困难的。在目前的工作中,利用非线性饱和吸收效应产生亚波长光学光斑,并诱导纳米光学信息的记录和读出。实验结果表明,利用激光波长为 405nm、数值孔径为 0.65 的高密度数字通用磁盘动态测试系统成功地记录和读出了小于 100nm 的信息标记。实现了最小标记为 60nm,这仅约为衍射受限理论聚焦光斑的 1/12。这种物理方案在促进纳米尺度光学信息存储的发展方面非常有用。