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Spontaneous emission of charged particles and photons during tensile deformation of oxide‐covered metals under ultrahigh‐vacuum conditions

机译:超高真空条件下氧化物覆盖金属拉伸变形过程中带电粒子和光子的自发发射

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摘要

Using Channeltron‐type detectors and magnetic discrimination techniques, it has been shown that electrons, positive and negative ions, and photons are all emitted spontaneously while oxide‐covered metals such as Al and Ni are being deformed in a tensile mode in a vacuum of approximately 10−10Torr in total darkness. For dense anodically grown Al2O3films of a given thickness on high‐purity Al substrates, the emission yields of all charged particles and photons are found to exhibit identically the same strain dependence. The same applies to compact thermally grown NiO films on Ni. It is concluded from these and other observations that the entire emission spectrum is generated simultaneously as a result of the formation and propagation of cracks in the oxide film during the deformation process. The shortcomings of previously proposed models for this type of triboinduced emission are pointed out, and some alternative suggestions regarding the emission mechanism are offered.
机译:使用Channeltron‐型探测器和磁鉴别技术,已经表明电子、正负离子和光子都是自发发射的,而氧化物&连字符;覆盖的金属(如Al和Ni)在大约10-10Torr的真空中以拉伸模式在完全黑暗中变形。对于在高纯度铝衬底上给定厚度的致密阳极生长的Al2O3薄膜,发现所有带电粒子和光子的发射产率表现出相同的应变依赖性。这同样适用于镍上的紧凑型热生长镍薄膜。从这些和其他观察中得出的结论是,整个发射光谱是由于在变形过程中氧化膜中裂纹的形成和扩展而同时产生的。指出了先前提出的此类摩擦诱发发射模型的不足之处,并就发射机理提出了一些替代建议。

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