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相关论文: Condensation Energy and Spectral Functions in High…

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The condensation energy can be shown to be a moment of the change in the occupied part of the spectral function when going from the normal to the superconducting state. As a consequence, there is a one to one correspondence between the…

超导电性 · 物理学 2015-06-24 M. R. Norman , M. Randeria , B. Janko , J. C. Campuzano

The spectral energy gap is an important signature that defines states of quantum matter: insulators, density waves, and superconductors have very different gap structures. The momentum resolved nature of angle-resolved photoemission…

超导电性 · 物理学 2015-03-03 Makoto Hashimoto , Inna M. Vishik , Rui-Hua He , Thomas P. Devereaux , Zhi-Xun Shen

We present an overview of angle-resolved photoemission spectroscopy (ARPES) studies of high-temperature cuprate superconductors aiming at elucidating the relationship between the superconductivity, the pseudogap, and the Fermi arc. ARPES…

超导电性 · 物理学 2012-03-06 Teppei Yoshida , Makoto Hashimoto , Inna M. Vishik , Zhi-Xun Shen , Atsushi Fujimori

The existence of coherent quasiparticles near the Fermi energy in the low temperature state of high-temperature superconductors has been well established by angle-resolved photoemission spectroscopy (ARPES). This technique directly probes…

A detailed phenomenology of low energy excitations is a crucial starting point for microscopic understanding of complex materials such as the cuprate high temperature superconductors. Because of its unique momentum-space discrimination,…

A simple model to describe the energetic phase diagram of electron-doped cuprate superconductor is developed. Interband pairing operates between the UHB and the defect states created by doping and supplied by both extincting HB-s. Two…

超导电性 · 物理学 2009-11-13 N. Kristoffel , P. Rubin

Within the t-t'-J model, the physical properties of doped cuprates in the superconducting-state are discussed based on the kinetic energy driven superconducting mechanism. We show that the superconducting-state in cuprate superconductors is…

超导电性 · 物理学 2007-06-13 Shiping Feng , Tianxing Ma

We present angle-resolved photoemission spectroscopy (ARPES) studies of the cuprate high-temperature superconductors which elucidate the relation between superconductivity and the pseudogap and highlight low-energy quasiparticle dynamics in…

超导电性 · 物理学 2012-10-08 I. M. Vishik , W. S. Lee , R. -H. He , M. Hashimoto , T. P. Devereaux , Z. -X. Shen

A pairing gap and coherence are the two hallmarks of superconductivity. In a classical BCS superconductor they are established simultaneously at Tc. In the cuprates, however, an energy gap (pseudogap) extends above Tc. The origin of this…

超导电性 · 物理学 2009-02-10 Takeshi Kondo , Rustem Khasanov , Tsunehiro Takeuchi , Joerg Schmalian , Adam Kaminski

The loss of single-particle coherence going from the superconducting state to the normal state in underdoped cuprates is a dramatic effect that has yet to be understood. Here, we address this issue by performing angle resolved photoemission…

超导电性 · 物理学 2017-03-21 A. Kaminski , S. Rosenkranz , M. R. Norman , M. Randeria , Z. Z. Li , H. Raffy , J. C. Campuzano

The normal state single particle spectral function of the high temperature superconducting cuprates, measured by the angle resolved photoelectron spectroscopy (ARPES), has been considered both anomalous and crucial to understand. Here we…

强关联电子 · 物理学 2011-08-09 G. -H. Gweon , B. S. Shastry , G. D. Gu

Based on the slave-boson theory of the two-dimensional $t-t'-J$ model, we calculate the superconducting condensation energy for optimally doped and overdoped high $T_{c}$ cuprates at finite temperatures using a renormalized random phase…

超导电性 · 物理学 2019-08-17 Jian-Xin Li , Chung-Yu Mou , Chang-De Gong , T. K. Lee

The doping and temperature dependence of the thermodynamic properties in cuprate superconductors is studied based on the kinetic energy driven superconducting mechanism. By considering the interplay between the superconducting gap and…

超导电性 · 物理学 2012-04-20 Huaisong Zhao , Lulin Kuang , Shiping Feng

Experimental evidence indicates that the superconducting transition in high $T_c$ cuprates is an 'undressing' transition. Microscopic mechanisms giving rise to this physics were discussed in the first paper of this series. Here we discuss…

超导电性 · 物理学 2009-10-31 J. E. Hirsch

Cuprate superconductors have long been known to exhibit an energy gap that persists high above the superconducting transition temperature ($T_c$). Debate has continued now for decades as to whether it is a precursor superconducting gap or a…

超导电性 · 物理学 2017-07-28 J. G. Storey

We describe here a minimal theory of tight binding electrons moving on the square planar Cu lattice of the hole-doped cuprates and mixed quantum mechanically with pairs of them (Cooper pairs). Superconductivity occurring at the transition…

强关联电子 · 物理学 2013-05-29 Sumilan Banerjee , T V Ramakrishnan , C Dasgupta

From an analysis of the specific heat of one of the cuprate superconductors it is shown, that even if a large part of the experimental specific heat associated with the superconducting phase transition is due to fluctuations, this part must…

强关联电子 · 物理学 2009-11-07 D. van der Marel , A. J. Leggett , J. W. Loram , J. R. Kirtley

This paper reviews the most recent ARPES results on the cuprate superconductors and their insulating parent and sister compounds, with the purpose of providing an updated summary of the extensive literature in this field. The low energy…

超导电性 · 物理学 2009-11-07 Andrea Damascelli , Zhi-Xun Shen , Zahid Hussain

In the course of seeking the microscopic mechanism of superconductivity in cuprate high temperature superconductors, the pseudogap phase\textemdash the very abnormal 'normal' state on the hole-doped side\textemdash has proven to be as big…

超导电性 · 物理学 2018-04-02 Inna Vishik

The new development in sublattice-phase-resolved imaging of electronic structure now allow for the visualisation of the nematic-order state characteristic energy of cuprate superconductors in a wide doping regime. However, it is still…

超导电性 · 物理学 2022-01-11 Zhangkai Cao , Xingyu Ma , Yiqun Liu , Huaiming Guo , Shiping Feng
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