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Penetration depth anisotropy in d-density wave scenario

机译:d密度波情形下的穿透深度各向异性

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摘要

We present the in-plane and c-axis penetration depths of the underdoped cuprates. The pseudogap phase is addressed within the framework of the ordered d-density wave (DDW). The above scenario is considered using a mean-field calculation of the tight binding model which incorporates two types of layers stacked in an alternating fashion. The normal layers become superconducting due to the proximity to the planes below the critical temperature. We observe distinct behaviors for the penetration depth results along the two directions for a range of interlayer coupling strengths. We discuss the effects of the interlayer coupling strength and doping. Moreover, we compare our results with the experimental observations.
机译:我们介绍了掺杂不足的铜酸盐的面内和c轴穿透深度。伪间隙相位在有序d密度波(DDW)的框架内解决。使用紧密绑定模型的平均场计算来考虑以上情况,该模型包含以交替方式堆叠的两种类型的图层。由于接近临界温度以下的平面,正常层变得超导。对于一定范围的层间耦合强度,我们沿两个方向观察到了渗透深度结果的不同行为。我们讨论了层间耦合强度和掺杂的影响。此外,我们将我们的结果与实验观察结果进行比较。

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