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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Bit Length of 57 nm Recording on Domain Wall Displacement Detection Disk Using Turbo Codes with Blue Laser
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Bit Length of 57 nm Recording on Domain Wall Displacement Detection Disk Using Turbo Codes with Blue Laser

机译:使用蓝色激光的Turbo码在畴壁位移检测盘上记录的57 nm位长

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摘要

Turbo codes with max log maximum a posteriori probability (max-log-MAP) algorithm were experimentally applied to a domain wall displacement detection (DWDD) disk using a blue laser. The max-log-MAP algorithm is an approximation of the maximum a posteriori probability (MAP) algorithm; however, it reduces the amount of calculation and consumption of memory. An effective bit length of 56.5 nm recording was achieved using a partial turbo method with a parity bit rate of 1/17 at a bit error rate (bER) of 4 x 10~(-5) using a blue laser, although a bit length of 68.5 nm was the limit using a red laser. According to an analysis of the number of errors, the bER of the turbo method was found to depend on the number of consecutive 2-bit errors that occur with the dropout of the 2T pattern, and a jitter value less than 16% was necessary to keep the bER below 4 x 10~(-5) for the turbo method.
机译:使用蓝色激光将具有最大对数最大后验概率(max-log-MAP)算法的Turbo码实验性地应用于畴壁位移检测(DWDD)磁盘。 max-log-MAP算法是最大后验概率(MAP)算法的近似值;但是,它减少了计算量和内存消耗。使用部分turbo方法,使用蓝色激光,以4 x 10〜(-5)的误码率(bER),以1/17的奇偶校验位速率,实现了56.5 nm的有效记录长度,尽管位长使用红色激光的极限是68.5nm。根据对错误数量的分析,发现turbo方法的bER取决于随着2T模式的丢失而发生的连续2位错误的数量,并且抖动值必须小于16%。对于turbo方法,将bER保持在4 x 10〜(-5)以下。

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