论文标题

在压力下,超导性和巨型声子软化的起源

Origin of superconductivity and giant phonon softening in TlInTe$_2$ under pressure

论文作者

Yesudhas, Sorb, Yedukondalu, N., Jana, Manoj K., Zhang, Jianbo, Huang, Jie, Chen, Bijuan, Deng, Hongshang, Sereika, Raimundas, Xiao, Hong, Sinogeikin, Stanislav, Kenney-Benson, Curtis, Biswas, Kanishka, Parise, John B., Ding, Yang, Mao, Ho-kwang

论文摘要

类似于2D层次过渡金属二分法,带有Zintl型结构的1D链材料的TLSE家族在高压下表现出异国情调现象。在目前的工作中,我们使用拉曼光谱,同步加速器X射线衍射和运输测量结果系统地研究了Tlinte 2的高压行为,并基于晶体结构预测(CSP),基于进化方法和第一原理计算。我们发现,Tlinte $ _2 $在4 GPA处进行压力驱动的半导体,向半分型转变,然后在5.7 GPa(TC = 3.8 K)下进行超导过渡,由LifShitz过渡引起。 LIFSHITZ过渡是由Fermi表面上新电子口袋的出现而引发的,Fermi表面会随着压力而演变,并连接到相邻的电子口袋,形成了布里群区顶部和底部的伞状的费米表面。由于光学声子与传导电子的相互作用,与V形TC行为相关的异常巨型声子软化(AG模式)出现在10-12 GPA处,导致在Ag模式下的Fano线形状不对称性。与AG模式在19-20 GPA时的AG模式软化同时发生的突出的TC异常与半学与金属转变相关。 CSP计算表明,这些转变不伴随着任何结构相变,直至达到最大压力33.5 GPA。我们在Tlinte $ _2 $上的发现打开了一个新的平台,以研究Lifshitz Transition(电子驱动),声子软化和电子量子偶联的TLSE家族中的众多未开发的高压新现象。

Analogous to 2D layered transition metal dichalcogenides, the TlSe family of 1D chain materials with Zintl-type structure exhibits exotic phenomena under high-pressure. In the present work, we have systematically investigated the high-pressure behavior of TlInTe 2 using Raman spectroscopy, synchrotron X-ray diffraction, and transport measurements, in combination with crystal structure prediction (CSP) based on the evolutionary approach and first principles calculations. We found that TlInTe$_2$ undergoes a pressure driven semiconductor to semimetal transition at 4 GPa, followed by a superconducting transition at 5.7 GPa (with Tc = 3.8 K) induced by a Lifshitz transition. The Lifshitz transition is initiated by the appearance of new electron pockets on the Fermi surface, which evolve with pressure and connect to the adjacent electron pockets forming an umbrella shaped Fermi surface at the top and bottom of the Brillouin zone. An unusual giant phonon softening (Ag mode) concomitant with a V-shaped Tc behavior appears at 10-12 GPa as a result of the interaction of optical phonons with the conduction electrons, resulting in Fano line shaped asymmetry in Ag mode. A prominent Tc anomaly concurrent with the Ag mode softening at 19-20 GPa is correlated to the semimetal to metal transition. The CSP calculations reveal that these transitions are not accompanied by any structural phase transitions up to the maximum pressure achieved, 33.5 GPa. Our findings on TlInTe$_2$ open up a new platform to study a plethora of unexplored high pressure novel phenomena in TlSe family induced by Lifshitz transition (electronic driven), phonon softening and electron-phonon coupling.

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