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Dive into the research topics where A. Lanzara is active.

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Featured researches published by A. Lanzara.


Physical Review Letters | 2000

Evidence for an Energy Scale for Quasiparticle Dispersion in Bi{sub 2}Sr{sub 2}CaCu{sub 2}O{sub 8}

P. V. Bogdanov; A. Lanzara; S.A Kellar; X. Zhou; E. D. Lu; W. J. Zheng; G.D. Gu; Jun-ichi Shimoyama; K. Kishio; H. Ikeda; R. Yoshizaki; Z. Hussain; Z.-X. Shen

Quasiparticle dispersion in Bi2Sr2CaCu2O8 is investigated with improved angular resolution as a function of temperature and doping. Unlike the linear dispersion predicted by the band calculation, the data show a sharp break in dispersion at 50+/-15 meV binding energy where the velocity changes by a factor of 2 or more. This change provides an energy scale in the quasiparticle self-energy. This break in dispersion is evident at and away from the d-wave node line, but the magnitude of the dispersion change decreases with temperature and with increasing doping.


Physical Review Letters | 2001

Bilayer Splitting in the Electronic Structure of Heavily Overdoped Bi2Sr2CaCu2O8 + delta

D. L. Feng; N. P. Armitage; D. H. Lu; A. Damascelli; Jin Hu; P. V. Bogdanov; A. Lanzara; F. Ronning; Kang Shen; H. Eisaki; C. Kim; Zhi-Xun Shen; Jun-ichi Shimoyama; K. Kishio

The electronic structure of heavily overdoped Bi(2)Sr(2)CaCu(2)O(8+delta) is investigated by angle-resolved photoemission spectroscopy. The long-sought bilayer band splitting in this two-plane system is observed in both normal and superconducting states, which qualitatively agrees with the bilayer Hubbard model calculations. The maximum bilayer energy splitting is about 88 meV for the normal state feature, while it is only about 20 meV for the superconducting peak.


Physical Review Letters | 2001

Dual nature of the electronic structure of (La2-x-yNdySrx)CuO4 and La1.85Sr0.15CuO4

X. Zhou; T. Yoshida; Scot A. Kellar; P. V. Bogdanov; E. D. Lu; A. Lanzara; Mitsutaka Nakamura; T. Noda; T. Kakeshita; H. Eisaki; S. Uchida; A. Fujimori; Z. Hussain; Zhi-Xun Shen

High resolution angle-resolved photoemission measurements have been carried out on (La_1.4-xNd_0.6Sr_x)CuO_4, a model system with static stripes, and (La_1.85Sr_0.15)CuO_4, a high temperature superconductor (T_c=40K) with dynamic stripes. In addition to the straight segments near (pi, 0) and (0, pi) antinodal regions, we have identified the existence of nodal spectral weight and its associated Fermi surface in the electronic structure of both systems. The ARPES spectra in the nodal region show well-defined Fermi cut-off, indicating a metallic character of this charge-ordered state. This observation of nodal spectral weight, together with the straight segments near antinodal regions, reveals dual nature of the electronic structure of the stripes due to the competition of order and disorder.


Physical Review B | 2001

Photoemission study of Pb doped Bi 2 Sr 2 CaCu 2 O 8 : A Fermi surface picture

P. V. Bogdanov; A. Lanzara; X. Zhou; S.A Kellar; D. L. Feng; E. D. Lu; H. Eisaki; K. Kishio; Z. Hussain; Z.-X. Shen

High resolution angle resolved photoemission data from Pb doped Bi_2Sr_2CaCu_2O_8 (Bi2212) with suppressed superstructure is presented. Improved resolution and very high momentum space sampling at various photon energies reveal the presence of two Fermi surface pieces. One has the hole-like topology, while the other one has its van Hove singularity very close to (pi,0), its topology at some photon energies resembles the electron-like piece. This result provides a unifying picture of the Fermi surface in the Bi2212 compound and reconciles the conflicting reports.


Physical Review B | 2010

Crossover region between nodal and antinodal states at the Fermi level of optimally doped and overdoped Bi2Sr1.6Nd0.4CuO6+δ

Daniel Garcia; Jeff Graf; C. Jozwiak; Choongyu Hwang; H. Eisaki; A. Lanzara

We have studied Bi


Physical Review Letters | 2001

Dual nature of the electronic structure of (La(2--x--y)Nd(y)Sr(x))CuO(4) and La(1.85)Sr(0.15)CuO(4).

X. J. Zhou; T. Yoshida; Scot A. Kellar; P. V. Bogdanov; E. D. Lu; A. Lanzara; Mitsutaka Nakamura; T. Noda; T. Kakeshita; H. Eisaki; S. Uchida; A. Fujimori; Z. Hussain; Z.-X. Shen

_{2}


Physical Review Letters | 2000

Dual Nature of the Electronic Structure of the Stripe Phase

X. Zhou; T. Yoshida; Scot A. Kellar; P. V. Bogdanov; E. D. Lu; A. Lanzara; Masaaki Nakamura; T. Noda; T. Kakeshita; H. Eisaki; Shin-ichi Uchida; Atsushi Fujimori; Z. Hussain; Zhi-Xun Shen

Sr


Physical Review B | 2010

Crossover region between nodal and anti-nodal states at the Fermi level of optimally and overdoped Bi

Daniel Garcia; Jeff Graf; C. Jozwiak; Choongyu Hwang; H. Eisaki; A. Lanzara

_{1.6}


Frontiers in Optics 2009/Laser Science XXV/Fall 2009 OSA Optics & Photonics Technical Digest (2009), paper LSWJ3 | 2009

_{2}

Hyunyong Choi; Ferenc Borondics; David Siegel; Shuyun Zhou; Michael C. Martin; A. Lanzara; Robert A. Kaindl

Nd


Physica C-superconductivity and Its Applications | 2003

Sr

T. Yoshida; X. Zhou; T. Sasagawa; Wanli Yang; P. V. Bogdanov; A. Lanzara; Z. Hussain; T. Mizokawa; A. Fujimori; H. Eisaki; Zhi-Xun Shen; T. Kakeshita; S. Uchida

_{0.4}

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H. Eisaki

National Institute of Advanced Industrial Science and Technology

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Z. Hussain

Lawrence Berkeley National Laboratory

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Scot A. Kellar

Lawrence Berkeley National Laboratory

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Jeff Graf

Lawrence Berkeley National Laboratory

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Zhi-Xun Shen

SLAC National Accelerator Laboratory

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