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On the Formation of Nanocrystalline Grains in Metallic Glasses by Means of In-Situ Nuclear Forward Scattering of Synchrotron Radiation

机译:同步辐射原位核正向散射在金属玻璃中形成纳米晶粒的研究

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摘要

Application of the so-called nuclear forward scattering (NFS) of synchrotron radiation is presented for the study of crystallization of metallic glasses. In this process, nanocrystalline alloys are formed. Using NFS, the transformation process can be directly observed during in-situ temperature experiments not only from the structural point of view, i.e., formation of nanocrystalline grains, but one can also observe evolution of the corresponding hyperfine interactions. In doing so, we have revealed the influence of external magnetic field on the crystallization process. The applied magnetic field is not only responsible for an increase of hyperfine magnetic fields within the newly formed nanograins but also the corresponding components in the NFS time spectra are better identified via occurrence of quantum beats with higher frequencies. In order to distinguish between these two effects, simulated and experimental NFS time spectra obtained during in-situ temperature measurements with and without external magnetic field are compared.
机译:提出了所谓的同步加速器辐射的核前向散射(NFS)在金属玻璃结晶研究中的应用。在此过程中,形成了纳米晶合金。使用NFS,不仅可以从结构的观点即纳米晶粒的形成直接在原位温度实验中观察到转化过程,而且还可以观察到相应的超细相互作用的演化。通过这样做,我们揭示了外部磁场对结晶过程的影响。所施加的磁场不仅导致新形成的纳米颗粒内超精细磁场的增加,而且通过出现更高频率的量子拍,可以更好地识别NFS时间谱中的相应成分。为了区分这两种效应,比较了在有和没有外部磁场的情况下原位温度测量期间获得的模拟和实验NFS时间谱。

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