论文标题
应变诱导的SR2IRO4中的超导性
Strain-induced superconductivity in Sr2IrO4
论文作者
论文摘要
具有较强相互作用的多轨量子材料可以容纳各种新型阶段。在这项工作中,我们研究了在劳累和掺杂下,偶然化合物SR $ _2 $ iro $ _4 $中相互作用驱动的超导性的可能性。我们发现,配对结构取决于模型参数的众多应变诱导的超导性方案。通过随机相近似计算的有效粒子相互作用的Hubbard-Kanamori模型对自旋 - 裂开介导的超导性进行建模。使用石匠标准发现磁性顺序。我们发现的最有可能的超导订单具有$ D $ - 波配对,主要是在总角度动量,$ j = 1/2 $状态。此外,在High Hund的耦合以及高应变各向异性$ S $ - 和$ D $ - Wave订单中出现了$ s _ {\ pm} $ - 混合不同带的订单。最后,我们表明,在一个微调的参数区域中,存在旋转三键$ p $ - 波订单。强旋轨耦合,相互作用以及带状结构对应变的敏感性的结合证明了工程新的量子相的富有成果的途径。
Multi-orbital quantum materials with strong interactions can host a variety of novel phases. In this work we study the possibility of interaction-driven superconductivity in the iridate compound Sr$_2$IrO$_4$ under strain and doping. We find numerous regimes of strain-induced superconductivity in which the pairing structure depends on model parameters. Spin-fluctuation mediated superconductivity is modeled by a Hubbard-Kanamori model with an effective particle-particle interaction, calculated via the random phase approximation. Magnetic orders are found using the Stoner criterion. The most likely superconducting order we find has $d$-wave pairing, predominantly in the total angular momentum, $J=1/2$ states. Moreover, an $s_{\pm}$-order which mixes different bands is found at high Hund's coupling, and at high strain anisotropic $s$- and $d$-wave orders emerge. Finally, we show that in a fine-tuned region of parameters a spin-triplet $p$-wave order exists. The combination of strong spin-orbit coupling, interactions, and a sensitivity of the band structure to strain proves a fruitful avenue for engineering new quantum phases.