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Metallicity of Ca2Cu6P5 with single and double copper-pnictide layers

机译:Ca2Cu6P5的单双金属层和双金属层的金属性

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摘要

We report thermodynamic and transport properties, and also theoretical calculations, for Cu-based compound Ca2Cu6P5 and compare with CaCu2-delta P2. Both materials have layers of edge-sharing copper pnictide tetrahedral CuP4, similar to Fe-As and Fe-Se layers (with FeAs4, FeSe4) in the iron-based superconductors. Despite the presence of this similar transition-metal pnictide layer, we find that both Ca2Cu6P5 and CaCu2-delta P2 have temperature-independent magnetic susceptibility and show metallic behavior with no evidence of either magnetic ordering or superconductivity down to 1.8 K CaCu2-delta P2 is slightly off-stoichiometric, with delta = 0.14. Theoretical calculations suggest that unlike Fe 3d-based magnetic materials with a large density of states (DOS) at the Fermi surface, Cu have comparatively low DOS, with the majority of the 3d spectral weight located well below Fermi level. The room-temperature resistivity value of Ca2Cu6P5 is only 9 mu Omega-cm, due to a substantial plasma frequency and an inferred electron-phonon coupling lambda of 0.073 (significantly smaller than that of metallic Cu). Also, microscopy result shows that Cu-Cu distance along the c-axis within the double layers can be very short (2.5 angstrom), even shorter than metallic elemental copper bond (2.56 angstrom). The value of d rho/dT for CaCu2-delta P2 at 300 K is approximately three times larger than in Ca2Cu6P5, which suggests the likelihood of stronger electron-phonon coupling. This study shows that the details of Cu-P layers and bonding are important for their transport characteristics. In addition, it emphasizes the remarkable character of the DOS of '122' iron-based materials, despite much structural similarities. Published by Elsevier B.V.
机译:我们报告了铜基化合物Ca2Cu6P5的热力学和输运性质,以及理论计算,并与CaCu2-δP2进行了比较。两种材料都具有边缘共享的三氧化锡铜四面体CuP4层,类似于铁基超导体中的Fe-As和Fe-Se层(具有FeAs4,FeSe4)。尽管存在类似的过渡金属磷化物层,但我们发现Ca2Cu6P5和CaCu2-δP2均具有与温度无关的磁化率,并且显示出金属行为,没有证据表明低至1.8 K的CaCu2-δP2的磁有序或超导性稍微偏离化学计量,δ= 0.14。理论计算表明,与在费米表面具有高态密度(DOS)的基于Fe 3d的磁性材料不同,Cu的DOS相对较低,大多数3d光谱权重都远低于费米能级。 Ca2Cu6P5的室温电阻率值仅为9μOmega-cm,这是由于较高的等离子体频率和0.073的推断的电子-声子耦合λ(显着小于金属Cu的λ)。此外,显微镜结果表明,双层内沿c轴的Cu-Cu距离可能非常短(2.5埃),甚至比金属元素铜键(2.56埃)还短。 CaCu2-δP2在300 K时的d rho / dT值大约是Ca2Cu6P5中的d rho / dT值的三倍,这表明可能存在较强的电子-声子耦合。这项研究表明,Cu-P层和键合的细节对于它们的传输特性很重要。此外,尽管在结构上有很多相似之处,但它强调了“ 122”铁基材料的DOS的显着特征。由Elsevier B.V.发布

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