论文标题
单层ba $ _2 $ n电气的超导率:第一原理研究
Superconductivity in monolayer Ba$_2$N electride: a first-principles study
论文作者
论文摘要
几十年来,低维材料中超导性的探索引起了密集的关注。基于第一原理电子结构计算,我们系统地研究了单层极限中二维电气BA $ _2 $ N的电子和超导性能。 Our results show that monolayer Ba$_2$N has a low work function of 3.0 eV and a predicted superconducting transition temperature ($T_c$) of 3.4 K. The superconductivity can be further improved with the tensile strain, which results from the increase of density of states at the Fermi level as well as the enhanced coupling between inner-layer electrons and phonons.值得注意的是,在4 $ \%$拉伸应变下,声学分支在布里鲁因区域的K点和超导体$ t_c $可以达到10.8 k。晶格株对电子从表面区域转移到单层BA $ _2 $ n内层$ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2的影响也可能适用于其他电子材料的影响,并影响他们的其他材料。
The exploration of superconductivity in low-dimensional materials has attracted intensive attention for decades. Based on first-principles electronic structure calculations, we have systematically investigated the electronic and superconducting properties of the two-dimensional electride Ba$_2$N in the monolayer limit. Our results show that monolayer Ba$_2$N has a low work function of 3.0 eV and a predicted superconducting transition temperature ($T_c$) of 3.4 K. The superconductivity can be further improved with the tensile strain, which results from the increase of density of states at the Fermi level as well as the enhanced coupling between inner-layer electrons and phonons. Remarkably, at the 4$\%$ tensile strain, the acoustic branches have noticeable softening at the K point of Brillouin zone and the superconducting $T_c$ can reach 10.8 K. The effect of lattice strain on the electron transfer from the superficial region to the inner-layer region of monolayer Ba$_2$N may also apply to other electride materials and influence their physical properties.