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Pulsed Thermally Assisted Magnetic Recording

机译:脉冲热辅助磁记录

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摘要

In thermally assisted magnetic recording, one of the most important issues is the reliability of the near-field transducer and the magnetic recording head. When the near-field transducer transfers the optical energy to the media through coupling from the waveguide, it inevitably heats itself and its surrounding area, such as the magnetic recording head, which tends to cause long-term performance degradation. To mitigate the problem, one possible solution is to apply a pulsed laser beam instead of a constant one. In this paper, the performance characteristics of the pulsed thermally assisted magnetic recording are analyzed by modeling. Simulation results show that similar recording performance can be achieved through a much reduced laser beam duty cycle ( $sim$30%).
机译:在热辅助磁记录中,最重要的问题之一是近场换能器和磁记录头的可靠性。当近场换能器通过与波导的耦合将光能传递到介质时,不可避免地会加热自身及其周围区域,例如磁记录头,这往往会导致长期性能下降。为了减轻该问题,一种可能的解决方案是施加脉冲激光束而不是恒定的激光束。本文通过建模分析了脉冲热辅助磁记录的性能特征。仿真结果表明,通过大大降低激光束占空比可以实现类似的记录性能( $ sim $ 30%)。

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