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HIGH-RESOLUTION ELECTRON MICROSCOPY OF DISCOMMENSURATION IN THE NEARLY COMMENSURATE PHASE ON WARMING OF 1T-TAS2

机译:1T-TAS2升温接近适度阶段的高分辨电子显微学

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In our previous paper [Phys. Rev. B 44, 2046 (1991)], results of high-resolution transmission electron microscopy (HRTEM) at each stage of the complicated hysteretic phase transformation of 1T-TaS2, are described. Here, on warming from the commensurate (C) phase to the incommensurate (IC) phase, the triclinic (T) phase and the nearly commensurate (NC) phase on warming were found to serve as a discommensuration stage. Although both structures consist of similar discommensuration processes, the temperature dependence of the structure of the T phase can be explained quantitatively by a projected discommensuration model where domains with the commensurate structure are connected by the discommensurate network, but that of the NC phase on warming deviates from the prediction by the same model. In order to understand this discrepancy, a high-resolution (HR) observation of the NC phase on warming was extended to a temperature somewhat above the room temperature. The HR iamge obtained reveals, in the NC phase on warming, a ''melting'' of the commensurate domain into the discommensuration network. Based on this observation, a modified discommensuration model is proposed for the NC phase on warming as an intermediate phase in the commensurate-incommensurate phase transformation. In the Appendix, the difference in the image of the domainlike structure in the discommensurate stage obtained by TEM (projected image) and that of scanning tunneling microscopy (STM) [and of atomic force microscopy (AFM)] is pointed out. Then, the recently reported observation by STM and AFM of the discommensuration process in the NC phase on cooling is critically compared with our observation by TEM in the NC phase on warming. [References: 18]
机译:在我们以前的论文[Phys。 Rev. B 44,2046(1991)],描述了高分辨率透射电子显微镜(HRTEM)在1T-TaS2复杂滞后相变的每个阶段的结果。在此,从相称(C)阶段到不相称(IC)阶段变暖时,三边形(T)阶段和接近相称(NC)阶段变暖被认为是不平衡阶段。尽管两种结构都由相似的失衡过程组成,但是T相结构的温度依赖性可以通过预测的失衡模型进行定量解释,该模型中具有相适结构的畴通过不平衡网络连接,而NC相在变暖时则有所偏离。来自相同模型的预测。为了理解这种差异,在加热时对NC相进行的高分辨率(HR)观察扩展到了略高于室温的温度。获得的HR图像显示,在变暖的NC阶段,相应域“融化”到不对称网络中。在此基础上,提出了变温NC阶段的修正不平衡模型,将其作为相变过程中的中间阶段。在附录中,指出了通过TEM获得的不相称阶段的畴状结构的图像(投影图像)与扫描隧道显微镜(STM)[和原子力显微镜(AFM)]的图像差异。然后,最近通过STM和AFM观察到的关于冷却时NC相中的不平衡过程的观察结果与我们通过TEM在升温中NC相中的TEM观察结果进行了严格的比较。 [参考:18]

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