论文标题

双轨相关链中的激子密度波,双孔和轨道选择性配对

Excitonic density-waves, bi-excitons and orbital selective pairing in two-orbital correlated chains

论文作者

Yang, Chun, Feiguin, Adrian E.

论文摘要

我们介绍了对季度和低于四分之一的一维二大模型的全面研究,该模型实现了许多非常规阶段。特别是,我们发现了一个激发器密度波,其中具有有限的质量动量中心和一个随波矢量$ q $更改相位的订单参数的示意性符号。在此阶段,激子的行为是无需收费顺序的硬核玻色子。此外,激子可以配对以在接近电荷密度波不稳定性的状态下形成双脱子。当配对在轨道间排斥上占主导地位时,我们遇到了一个轨道是金属的制度,而另一个轨道是一种旋转的超导体,即真正的轨道选择性配对状态。所有这些结果都得到分析和数值计算的支持。通过假设准经典近似,我们解决了三体孔 - 电子旋转问题,并表明激子通过与蜘蛛网形成结合状态来结合在一起。为了保留抗磁性背景,激子获得了$ k = 0 $的分散体。通过广泛的密度基质重质化组计算获得了不同阶段的完整表征。

We present a comprehensive study of a one-dimensional two-orbital model at and below quarter-filling that realizes a number of unconventional phases. In particular, we find an excitonic density wave in which excitons quasi-condense with finite center of mass momentum and an order parameter that changes phase with wave-vector $Q$. In this phase, excitons behave as hard-core bosons without charge order. In addition, excitons can pair to form bi-excitons in a state that is close to a charge density-wave instability. When pairing dominates over the inter-orbital repulsion, we encounter a regime in which one orbital is metallic, while the other forms a spin gapped superconductor, a genuine orbital selective paired state. All these results are supported by both, analytical and numerical calculations. By assuming a quasi-classical approximation, we solve the three-body hole-electron-spinon problem and show that excitons are held together by forming a bound state with spinons. In order to preserve the antiferromagnetic background, excitons acquire a dispersion that has a minimum away from $k=0$. The full characterization of the different phases is obtained by means of extensive density matrix renormalization group calculations.

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