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Angle resolved photoemission spectroscopy (ARPES) enables direct observation of the Fermi surface and underlying electronic structure of crystals---the basic concepts to describe all the electronic properties of solids and to understand the…

Superconductivity · Physics 2014-06-12 A. A. Kordyuk

We observe apparent hole pockets in the Fermi surfaces of single-layer Bi-based cuprate superconductors from angle-resolved photoemission (ARPES). From detailed low-energy electron diffraction measurements and an analysis of the ARPES…

Angle-resolved photoemission spectroscopy (ARPES) is used to study the band dispersion and the quasiparticle scattering rates in two ferropnictides systems. Our ARPES results show linear-in-energy dependent scattering rates which are…

The pseudogap phenomena have been a long-standing mystery of the cuprate high-temperature superconductors. The pseudogap in the electron-doped cuprates has been attributed to band folding due to antiferromagnetic (AFM) long-range order or…

Superconductivity · Physics 2025-01-03 M. Horio , S. Sakai , H. Suzuki , Y. Nonaka , M. Hashimoto , D. Lu , Z. -X. Shen , T. Ohgi , T. Konno , T. Adachi , Y. Koike , M. Imada , A. Fujimori

The underdoped cuprate superconductors are characterized by the opening of the pseudogap, while such an aspect of the pseudogap effect should be reflected in the low-energy electronic structure (LEES). Here the effect of the pseudogap on…

Superconductivity · Physics 2025-07-24 Xiang Li , Minghuan Zeng , Huaiming Guo , Shiping Feng

Angle-resolved photoemission spectroscopy (ARPES) has been performed on the single- to triple-layered Bi-family high-{\it T$_c$} superconductors (Bi$_2$Sr$_2$Ca$_{n-1}$Cu$_n$O$_{2n+4}$, $\it{n}$=1-3). We found a sharp quasiparticle peak as…

Superconductivity · Physics 2009-11-07 T. Sato , H. Matsui , S. Nishina , T. Takahashi , T. Fujii , T. Watanabe , A. Matsuda

We consider photoemission from cuprate high-temperature superconductors taking into account joint relaxation of strongly coupled fields: a field of correlated electrons and phonon field. Such relaxation occurs in systems with predominantly…

Superconductivity · Physics 2017-05-08 A. E. Myasnikova , E. A. Gileeva , D. V. Moseykin

Recently, angle-resolved photoemission spectroscopy (ARPES) has been used to highlight an anomalously large band renormalization at high binding energies in cuprate superconductors: the high energy 'waterfall' or high energy anomaly (HEA).…

Strongly Correlated Electrons · Physics 2009-09-30 B. Moritz , F. Schmitt , W. Meevasana , S. Johnston , E. M. Motoyama , M. Greven , D. H. Lu , C. Kim , R. T. Scalettar , Z. -X. Shen , T. P. Devereaux

We analyze the ultra high resolution laser angle resolved photo-emission spectroscopy (ARPES) intensity from the slightly underdoped Bi$_2$Sr$_2$CaCu$_2$O$_{8+\delta}$ in the superconductive (SC) state. The momentum distribution curves…

Superconductivity · Physics 2015-05-30 Jae Hyun Yun , Jin Mo Bok , Han-Yong Choi , Wentao Zhang , X. J. Zhou , Chandra M. Varma

Angle resolved photoemission (ARPES) experiments reveal the coherent electronic excitation in the energy spectrum of under- and optimally doped cuprates at temperatures above their temperature of transition into superconducting state only…

Superconductivity · Physics 2013-09-04 Lev P. Gor'kov , Gegory B. Teitel'baum

We present an angle resolved photoemission (ARPES) doping dependence study of the n-type cuprate superconductor Nd_2-xCe_xCuO_4, from the half-filled Mott-insulator to the T_c=24K superconductor. In Nd2CuO4, we reveal the charge-transfer…

Angle-resolved photoemission spectroscopy (ARPES) is used to study the energy and momentum dependence of the inelastic scattering rates and the mass renormalization of charge carriers in LiFeAs at several high symmetry points in the…

Near the antiferromagnetic quantum critical point (QCP) of electron-doped cuprate superconductors, angle-resolved photoemission experiments detect hot spots where the Fermi surface disappears. Here we demonstrate, using the two-particle…

Strongly Correlated Electrons · Physics 2022-03-01 C. Gauvin-Ndiaye , M. Setrakian , A. -M. S. Tremblay

The angle-resolved photoemission spectroscopy (ARPES) is one powerful experimental technique to study the electronic structure of materials. As many electron materials show unusual many-body correlations, the technique to detect directly…

Superconductivity · Physics 2020-05-12 Yuehua Su , Chao Zhang

Motivated by recent photoemission experiments on cuprates, the low-lying excitations of a strongly correlated superconducting state are studied numerically. It is observed that along the nodal direction these low-lying one-particle…

Strongly Correlated Electrons · Physics 2011-11-09 S. Yunoki , E. Dagotto , S. Sorella

Within the framework of the kinetic energy driven d-wave superconductivity, the electronic structure of the electron doped cuprate superconductors is studied. It is shown that although there is an electron-hole asymmetry in the phase…

Superconductivity · Physics 2007-05-23 Li Cheng , Huaiming Guo , Shiping Feng

Recent experiments find that the pseudogap phase of the high-T$_{c}$ cuprates ends suddenly at an electron doping $x^{*}$ when the Fermi surface change its shape from hole-like to electron-like. In this short note, we argue that the…

Superconductivity · Physics 2018-12-04 Tao Li

Angle-resolved photoemission spectroscopy (ARPES) is a technique used to map the occupied electronic structure of solids. Recent progress in X-ray focusing optics has led to the development of ARPES into a microscopic tool, permitting the…

Knowledge of the gap function is important to understand the pairing mechanism for high-temperature ($T_\mathrm{c}$) superconductivity. However, Fourier transform scanning tunneling spectroscopy (FT STS) and angle-resolved photoemission…

Angle-resolved photoemission spectroscopy (ARPES) is used to study the spectral function of the optimally doped high-T$_c$ superconductor (Bi,Pb)$_2$Sr$_2$CaCu$_2$O$_{8+\delta}$ in the vicinity of the antinodal point in the superconducting…

Superconductivity · Physics 2009-11-11 J. Fink , A. Koitzsch , J. Geck , V. Zabolotnyy , M. Knupfer , B. Büchner , A. Chubukov , H. Berger