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Mixing kinetics and write-once optical recording characteristics of Sb/Se bilayer films

机译:Sb / Se双层膜的混合动力学和一次写入光学记录特性

摘要

Bilayer Sb/Se films are irradiated with 12 ns pulses from an ArF laser (extended areas) and from a focused Ar+ laser (micron-sized areas). Real-time reflectivity measurements are used to determine if the process occurs within the solid or liquid phase and the transformation time, in addition to measure the optical contrast and the medium sensitivity. Transmission electron microscopy is used to analyze the structure of the transformed areas and the medium resolution. The results show that mixing is initiated by preferential melting at the gram boundaries and an amorphous phase is produced upon irradiation a high energy densities. Finally, the characteristics of the mixing process in Sb/Se films as a write-once optical recording mechanism are discussed in terms of the sensitivity and resolution of the recorded spots and the time required for recording.
机译:从ArF激光器(扩展区域)和聚焦Ar +激光器(微米大小的区域)以12 ns的脉冲辐照双层Sb / Se膜。实时反射率测量除了用于测量光学对比度和介质灵敏度之外,还用于确定过程是在固相还是液相以及转化时间内进行的。透射电子显微镜用于分析转化区域的结构和中等分辨率。结果表明,混合是通过在克边界上优先熔化而开始的,并且在高能量密度的照射下会产生非晶相。最后,就记录点的灵敏度和分辨率以及记录所需的时间,讨论了作为一次写入光学记录机制的Sb / Se膜中混合过程的特性。

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