【2h】

Pressure-induced superconductivity in CaC2

机译:CaC2中的压力诱导超导

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摘要

Carbon can exist as isolated dumbbell, 1D chain, 2D plane, and 3D network in carbon solids or carbon-based compounds, which attributes to its rich chemical binding way, including sp-, sp2-, and sp3-hybridized bonds. sp2-hybridizing carbon always captures special attention due to its unique physical and chemical property. Here, using an evolutionary algorithm in conjunction with ab initio method, we found that, under compression, dumbbell carbon in CaC2 can be polymerized first into 1D chain and then into ribbon and further into 2D graphite sheet at higher pressure. The C2/m structure transforms into an orthorhombic Cmcm phase at 0.5 GPa, followed by another orthorhombic Immm phase, which is stabilized in a wide pressure range of 15.2–105.8 GPa and then forced into MgB2-type phase with wide range stability up to at least 1 TPa. Strong electron–phonon coupling λ in compressed CaC2 is found, in particular for Immm phase, which has the highest λ value (0.562–0.564) among them, leading to its high superconducting critical temperature Tc (7.9∼9.8 K), which is comparable with the 11.5 K value of CaC6. Our results show that calcium not only can stabilize carbon sp2 hybridization at a larger range of pressure but also can contribute in superconducting behavior, which would further ignite experimental and theoretical interest in alkaline–earth metal carbides to uncover their peculiar physical properties under extreme conditions.
机译:碳可以以孤立的哑铃,一维链,二维平面和3D网络的形式存在于碳固体或碳基化合物中,这归因于其丰富的化学结合方式,包括sp-,sp 2 -和sp 3 杂化键。 sp 2 -杂化碳由于其独特的物理和化学性质而总是引起特别关注。在这里,使用进化算法与从头算方法相结合,我们发现,在压缩下,CaC2中的哑铃碳可以首先聚合成一维链,然后聚合成带状,再进一步聚合成二维石墨片。 C2 / m结构在0.5 GPa时转变为斜方Cmcm相,然后是另一个斜方Immm相,其在15.2-105.8 GPa的宽压力范围内稳定,然后被迫转变为MgB2型相,具有宽范围的稳定性,直至至少1 TPa。在压缩的CaC2中发现了很强的电子-声子耦合λ,特别是对于Immm相而言,在其中具有最高的λ值(0.562-0.564),从而导致其高超导临界温度Tc(7.9〜9.8 K),这是可比的CaC6的11.5 K值。我们的结果表明,钙不仅可以在更大的压力范围内稳定碳sp 2 杂化,而且可以促进超导行为,这将进一步激发实验和理论上对碱土金属碳化物的发现的兴趣。它们在极端条件下的特殊物理特性。

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