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Edge states and quantum Hall effects in d+id' superconductors

机译:边缘状态和Quantum Hall效果在D + ID'超导体中

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摘要

Broken time reversal symmetry (BTRS) in d wave superconductors is studied and is shown to yield current carrying surface states. We evaluate the temperature and thickness dependence of the resulting spontaneous magnetization and show a marked difference between weak and strong BTRS. We also derive the Hall conductance which vanishes at zero wavevector q and finite frequency ω, however at finite q,ω it has an unusual structure. The chirality of the surface states leads to quantum Hall effects for spin and heat transport. Simulations of a network model show a new universality class for the corresponding Hall transition.
机译:研究了D波超导体中的断开时间反转对称(BTR),并显示为屈服于电流承载表面状态。我们评估所产生的自发磁化的温度和厚度依赖性,并显示出弱和强的BTR之间的显着差异。我们还导出了在零波动Q和有限频率ω处消失的霍尔电导,但是在有限Q,ω它具有异常结构。表面状态的手性导致旋转和热传输的量子霍尔效果。网络模型的模拟显示相应霍尔过渡的新普遍课程。

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