Silver photodiffusion into amorphous Ge chalcogenides

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, APPLIED European Physical Journal-applied Physics Pub Date : 2020-06-01 DOI:10.1051/epjap/2020190368
Y. Sakaguchi, T. Hanashima, Al-Amin Ahmed Simon, M. Mitkova
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引用次数: 4

Abstract

Silver photodiffusion into amorphous chalcogenides involves the movement of ions controlled by a UV-visible light illumination, and has potential application to memory devices. Understanding the kinetics of this phenomenon will expand the range of possible applications. Herein, we report the excitation photon energy dependence of the silver photodiffusion kinetics in Ag/amorphous Ge20 S80 /Si substrate stacks, probed by neutron reflectivity using four light-emitting diodes with different peak wavelengths. Time-dependent changes were clearly observed in all three of the Ag/Ag-doped reaction/chalcogenide host layers, in terms of layer thickness, scattering length density, and roughness. Silver photodiffusion effectively occurred when the excitation photon energy was greater than the optical gap of the chalcogenide host material. Excitation of lone-pair electrons to anti-bonding states at the chalcogenide layer therefore appears to play a crucial role in triggering silver photodiffusion.
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银光扩散成无定形锗硫属化合物
银光扩散成无定形硫族化合物涉及到由紫外-可见光照明控制的离子运动,并且在存储器件中有潜在的应用。了解这种现象的动力学将扩大可能的应用范围。本文报道了银在Ag/非晶Ge20 S80 /Si衬底堆中光扩散动力学的激发光子能量依赖,使用四个不同峰值波长的发光二极管用中子反射率探测。在所有三个Ag/Ag掺杂反应/硫属化物宿主层中,在层厚度、散射长度密度和粗糙度方面都可以清楚地观察到随时间的变化。当激发光子能量大于硫系主体材料的光隙时,银的光扩散有效发生。因此,在硫族化物层激发孤对电子到反键状态似乎在触发银光扩散中起着至关重要的作用。
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来源期刊
CiteScore
1.90
自引率
10.00%
发文量
84
审稿时长
1.9 months
期刊介绍: EPJ AP an international journal devoted to the promotion of the recent progresses in all fields of applied physics. The articles published in EPJ AP span the whole spectrum of applied physics research.
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