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Far-Infrared and Raman Spectroscopy Investigation of Phonon Modes in Amorphous and Crystalline Epitaxial GeTe-Sb2Te3 Alloys

机译:无定形和晶体外延GetE-SB2Te3合金中声子模式的远红外和拉曼光谱研究

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A combination of far-infrared and Raman spectroscopy is employed to investigate vibrational modes and the carrier behavior in amorphous and crystalline ordered GeTe-Sb2Te3 alloys (GST) epitaxially grown on Si(111). The infrared active GST mode is not observed in the Raman spectra and vice versa, indication of the fact that inversion symmetry is preserved in the metastable cubic phase in accordance with the Fm3 space group. For the trigonal phase, instead, a partial symmetry break due to Ge/Sb mixed anion layers is observed. By studying the crystallization process upon annealing with both the techniques, we identify temperature regions corresponding to the occurrence of different phases as well as the transition from one phase to the next. Activation energies of 0.43?eV and 0.08?eV for the electron conduction are obtained for both cubic and trigonal phases, respectively. In addition a metal-insulator transition is clearly identified to occur at the onset of the transition between the disordered and the ordered cubic phase.
机译:使用远红外和拉曼光谱的组合来研究在Si(111)上外延生长的无定形和结晶有序的GetE-Sb2te3合金(GST)中的振动模式和载流子行为。在拉曼光谱中未观察到红外有源GST模式,反之亦然,指示根据FM3空间组在亚稳态立方相中保留反转对称性的事实。对于Trigonal阶段,观察到由于GE / SB混合阴离子层引起的部分对称断裂。通过使用两种技术退火时研究结晶过程,我们识别对应于不同相位的温度区域以及从一个相到接下来的过渡。对于两次和三角相,可以分别获得0.43°的激活能量为0.43?EV和0.08 eV。此外,清楚地识别金属绝缘体转变以发生在无序和有序立方相之间的过渡开始处的发生。

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