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The Prime Beat Components Extraction Method for the Time Spectra Analysis of Nuclear Resonant Forward Scattering

机译:用于核共振前向散射时间谱分析的本振成分提取方法

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摘要

Spectra of quantum beats (QBs) of nuclear resonant forward scattering contain the interference information of all allowed energy transitions of a nucleus, which makes it complicated to extract hyperfine structure directly. Here, we propose a new method, based upon the extraction of prime beat components, to understand QBs. In this method, the origin of major spectral lines in the Fourier Transformation of QBs is studied, and the energy levels of hyperfine structure are obtained directly from the QBs. We applied this method to the temperature dependent QBs of hematite. The Morin temperature and hyperfine structure obtained by this method are in consistent with that by conventional Mössbauer spectroscopy (MS). It serves to interpret the components of QBs of nuclear resonant forward scattering as simple as the conventional (MS).
机译:核共振前向散射的量子拍(QBs)谱包含核的所有允许的能量跃迁的干扰信息,这使得直接提取超精细结构变得复杂。在这里,我们提出了一种基于素拍成分提取的新方法来理解QB。该方法研究了量子点的傅立叶变换中主要谱线的起源,并直接从量子点中获得了超精细结构的能级。我们将此方法应用于赤铁矿的温度相关QB。通过这种方法获得的莫林温度和超精细结构与常规的穆斯堡尔光谱(MS)一致。它用于解释核共振前向散射的QB分量,就像常规(MS)一样简单。

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