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The high temperature superconductivity in cuprates: physics of the pseudogap region

机译:铜酸盐中的高温超导:伪间隙区域的物理学

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We discuss the physics of the high temperature superconductivity in hole doped copper oxide ceramics in the pseudogap region. Starting from an effective reduced Hamiltonian relevant to the dynamics of holes injected into the copper oxide layers proposed in a previous paper, we determine the superconductive condensate wavefunction. We show that the low-lying elementary condensate excitations are analogous to the rotons in superfluid He-4. We argue that the rotons-like excitations account for the specific heat anomaly at the critical temperature. We discuss and compare with experimental observations the London penetration length, the Abrikosov vortices, the upper and lower critical magnetic fields, and the critical current density. We give arguments to explain the origin of the Fermi arcs and Fermi pockets. We investigate the nodal gap in the cuprate superconductors and discuss both the doping and temperature dependence of the nodal gap. We suggest that the nodal gap is responsible for the doping dependence of the so-called nodal Fermi velocity detected in angle resolved photoemission spectroscopy studies. We discuss the thermodynamics of the nodal quasielectron liquid and their role in the low temperature specific heat. We propose that the ubiquitous presence of charge density wave in hole doped cuprate superconductors in the pseudogap region originates from instabilities of the nodal quasielectrons driven by the interaction with the planar CuO2 lattice. We investigate the doping dependence of the charge density wave gap and the competition between charge order and superconductivity. We discuss the effects of external magnetic fields on the charge density wave gap and elucidate the interplay between charge density wave and Abrikosov vortices. Finally, we examine the physics underlying quantum oscillations in the pseudogap region.
机译:我们讨论了伪间隙区域中掺杂有孔的氧化铜陶瓷中高温超导的物理学。从有效减少的哈密顿量开始,该哈密顿量与先前论文中提出的注入氧化铜层中空穴的动力学有关,我们确定了超导冷凝水波函数。我们表明,低层的基本凝析水激发类似于超流体He-4中的rotons。我们认为,类似棒的激发解释了临界温度下的比热异常。我们讨论并与实验观察结果进行比较,将伦敦穿透长度,阿布里科索夫涡旋,上下临界磁场以及临界电流密度进行比较。我们给出论据来解释费米弧和费米口袋的起源。我们研究了铜酸盐超导体中的节点间隙,并讨论了该节点间隙的掺杂和温度依赖性。我们建议节点间隙负责在角度分辨光发射光谱研究中检测到的所谓节点费米速度的掺杂依赖性。我们讨论了节点准电子液体的热力学及其在低温比热中的作用。我们认为伪间隙区域中的空穴掺杂的铜酸盐超导体中普遍存在电荷密度波,这是由于与平面CuO2晶格相互作用所驱动的节点准电子的不稳定性所致。我们研究了电荷密度波隙的掺杂依赖性以及电荷序和超导之间的竞争。我们讨论了外部磁场对电荷密度波隙的影响,并阐明了电荷密度波与Abrikosov涡旋之间的相互作用。最后,我们研究了伪间隙区域中量子振动的物理基础。

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