论文标题
GATA的晶体和电子结构$ _4 $ SE $ _8 $从第一原则计算
Crystal and Electronic Structure of GaTa$_4$Se$_8$ From First-Principle Calculations
论文作者
论文摘要
Gata $ _4 $ SE $ _8 $属于Lacunar Spinel家族。尽管对其新特性进行了深入的研究,例如莫特绝缘体相和压力下的超导性,但它的晶体结构仍然是一个难题。在这项工作中,我们通过第一原则计算研究了其声子光谱,并提出它很可能具有晶体结构相变,这与几个实验观察结果一致。对于具有空间群体$ f \ bar {4} 3M $的立方对称性的原型Lacunar尖晶石,其声子光谱在整个Brillouin区域具有三种软模式,表明这种晶体结构的动力不稳定。为了找到动态稳定的晶体结构,进一步的计算表示Gata $ _4 $ SE $ _8 $的两个新结构,对应于$ 3M $和$ P \ bar {4} 2_ {1} M $温度降低。 We also performed electronic structure calculation for $R3m$ and $P\bar{4}2_{1}m$ structure, showing that $P\bar{4}2_{1}m$ structure GaTa$_4$Se$_8$ is band insulator, and obtained Mott insulator state for $R3m$ structure by DMFT calculation under single-band Hubbard model picture when interaction parameter U is大于0.40 eV的带宽度为0.25 eV。可以合理地假设,在降低温度时,$ f \ bar {4} 3M $结构gata $ _4 $ _4 $ se $ _8 $变成$ 3M $ r3M $结构gata $ _4 $ _4 $ se $ _8 $ firon $ p \ bar {4} 2_ {1} m $低于jahn-teller失真后的$ 3M $。结构过渡可以解释在低温下磁化率异常。
GaTa$_4$Se$_8$ belongs to the lacunar spinel family. Its crystal structures is still a puzzle though there have been intensive studies on its novel properties, such as the Mott insulator phase and superconductivity under pressure. In this work, we investigate its phonon spectra through first-principle calculations and proposed it most probably has crystal structure phase transition, which is consistent with several experimental observations. For the prototype lacunar spinel with cubic symmetry of space group $F\bar{4}3m$, its phonon spectra have three soft modes in the whole Brillouin zone, indicating the strong dynamical instability of such crystal structure. In order to find the dynamically stable crystal structure, further calculations indicate two new structures of GaTa$_4$Se$_8$, corresponding to $R3m$ and $P\bar{4}2_{1}m$, verifying that at the ambient pressure, there does exist structure phase transition of GaTa$_4$Se$_8$ from $F\bar{4}3m$ to other structures when the temperature is lowered. We also performed electronic structure calculation for $R3m$ and $P\bar{4}2_{1}m$ structure, showing that $P\bar{4}2_{1}m$ structure GaTa$_4$Se$_8$ is band insulator, and obtained Mott insulator state for $R3m$ structure by DMFT calculation under single-band Hubbard model picture when interaction parameter U is larger than 0.40 eV vs. band width of 0.25 eV. It is reasonable to assume that while lowering the temperature, $F\bar{4}3m$ structure GaTa$_4$Se$_8$ becomes $R3m$ structure GaTa$_4$Se$_8$ first, then $P\bar{4}2_{1}m$ structure GaTa$_4$Se$_8$, because of the symmetry of $P\bar{4}2_{1}m$ is lower than $R3m$ after Jahn-Teller distortion. The structure transition may explain the magnetic susceptibility anomalous at low temperature.