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Excitonic Metal-Insulator Phase Transition of the Mott Type in Compressed Calcium

机译:压缩钙中的胶质金属绝缘子相变

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摘要

It has been experimentally found that, under the static compression of a calcium crystal at room temperature, it undergoes a series of structural phase transitions: face-centered cubic lattice. body-centered cubic lattice -> simple cubic lattice. It has been decided to investigate precisely the simple cubic lattice (because it is an alternative lattice) with the aim of elucidating the possibility of the existence of other (nonstructural) phase transitions in it by using for this purpose the Hubbard model for electrons with half-filled ns-bands and preliminarily transforming the initial electronic system into an electron-hole system by means of the known Shiba operators (applicable only to alternative lattices). This transformation leads to the fact that, in the new system of fermions, instead of the former repulsion, there is an attraction between electrons and holes. Elementary excitations of this new system are bound boson pairs-excitons. This system of fermions has been quantitatively analyzed by jointly using the equation-of-motion method and the direct algebraic method. The numerical integration of the analytically exact transcendental equations derived from the first principles for alternative (one-, two-, and three-dimensional) lattices has demonstrated that, in systems of two-species (electrons + hole) fermions, temperature-induced metal-insulator phase transitions of the Mott type are actually possible. Moreover, all these crystals are in fact excitonic insulators. This conclusion is in complete agreement with the analytically exact calculations of the ground state of a one-dimensional crystal (with half-filled bands), which were performed by Lieb and Wu with the aim to find out the Mott insulator-metal transition of another type.
机译:已经通过实验发现,在室温下钙晶的静态压缩下,它经历了一系列结构相变:面向中心的立方格。以身体为中心的立方格 - >简单的立方格格子。已经决定精确地调查简单的立方晶格(因为它是一种替代格子),目的是通过为此目的使用其中一半的电子电子模型来阐明其存在的其他(非结构)相转变的可能性 - 通过已知的Shiba运算符(仅适用于替代格子),将初始电子系统预先填充到电子孔系统中的初始电子系统。这种转变导致事实上,在整个柑橘的新系统中,而不是以前的排斥,电子和孔之间存在吸引力。这个新系统的基本刺激是束缚的玻色子对激子。通过使用运动方法和直接代理方法共同地通过共同地分析该码头系统。用于替代(一,二维和三维)格子的第一个原理的分析精确超越方程的数值集成已经证明,在两种(电子+孔)码头的系统中,温度诱导的金属 - 实际上可以是MOTT类型的恒定相位转变。此外,所有这些晶体都是兴趣的绝缘体。该结论与一维晶体(带半填充带)的地面状态的分析精确计算完全一致,这是由LIEB和WU进行的,目的是找出另一个薄荷的绝缘金属转换类型。

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  • 来源
    《Physics of the solid state》 |2017年第5期|共9页
  • 作者单位

    Russian Fed Nucl Ctr All Russia Sci Res Inst Expt Phys Pr Mira 37 Sarov 607188 Nizhny Novgorod Russia;

    Russian Fed Nucl Ctr All Russia Sci Res Inst Expt Phys Pr Mira 37 Sarov 607188 Nizhny Novgorod Russia;

    Russian Fed Nucl Ctr All Russia Sci Res Inst Expt Phys Pr Mira 37 Sarov 607188 Nizhny Novgorod Russia;

    Russian Fed Nucl Ctr All Russia Sci Res Inst Expt Phys Pr Mira 37 Sarov 607188 Nizhny Novgorod Russia;

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  • 正文语种 eng
  • 中图分类 固体物理学;
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