Park Sinjeung, Won Hahn Jae
School of Mechanical Engineering, Yonsei University, 262 Seongsanno, Seodaemun-gu, Seoul 120-749, Korea.
Opt Express. 2009 Oct 26;17(22):20203-10. doi: 10.1364/OE.17.020203.
We propose a plasmonic data storage medium with a high-transmission metal aperture array embedded in a dielectric material. Bowtie apertures, having an outline of 80 nm and a ridge gap of 30 nm, are arranged in a two dimensional array with a bit pitch of 100 nm and a track pitch of 280 nm. Using the finite differential time domain (FDTD) method, we calculate the exposure power needed to record optical data, the contrast for readability of recorded data, and cross talk between the main track and adjacent tracks. Compared to a conventional blu-ray disc, the exposure power needed to record optical data in the proposed plasmonic data storage medium is less than a quarter of the conventional threshold power, and the density of the data storage is about 1.8 times larger.
我们提出了一种等离子体数据存储介质,其具有嵌入介电材料中的高透射率金属孔径阵列。蝴蝶结形孔径的轮廓为80纳米,脊间隙为30纳米,以二维阵列形式排列,位间距为100纳米,轨道间距为280纳米。我们使用时域有限差分(FDTD)方法,计算记录光学数据所需的曝光功率、记录数据的可读性对比度以及主轨道与相邻轨道之间的串扰。与传统蓝光光盘相比,在所提出的等离子体数据存储介质中记录光学数据所需的曝光功率小于传统阈值功率的四分之一,并且数据存储密度大约大1.8倍。