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Rewritable phase-change optical recording in Ge_(2)Sb_(2)Te_(5) films induced by picosecond laser pulses

机译:皮秒激光脉冲在Ge_(2)Sb_(2)Te_(5)薄膜中的可重写相变光学记录

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摘要

The phase transformation dynamics induced in Ge_(2)Sb_(2)Te_(5) films by picosecond laser pulses were studied using real-time reflectivity measurements with subnanosecond resolution. Evidence was found that the thermal diffusivity of the substrate plays a crucial role in determining the ability of the films to crystallize and amorphize. A film/substrate configuration with optimized heat flow conditions for ultrafast phase cycling with picosecond laser pulses was designed and produced. In this system, we achieved reversible phase transformations with large optical contrast (>20%) using single laser pulses with a duration of 30 ps within well-defined fluence windows. The amorphization (writing) process is completed within less than 1 ns, whereas crystallization (erasing) needs approximately 13 ns to be completed.
机译:利用亚纳秒分辨率的实时反射率测量研究了皮秒激光脉冲在Ge_(2)Sb_(2)Te_(5)薄膜中诱导的相变动力学。有证据表明,基材的热扩散率在确定薄膜结晶和非晶化的能力方面起着至关重要的作用。设计并生产了具有最佳热流条件的薄膜/基板配置,以实现皮秒激光脉冲的超快相循环。在该系统中,我们使用了清晰的通量窗内持续时间为30 ps的单个激光脉冲,实现了具有大光学对比度(> 20%)的可逆相变。非晶化(写入)过程在不到1 ns的时间内完成,而结晶(擦除)需要大约13 ns的时间才能完成。

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