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Nodal quasiparticles and antinodal charge ordering in Ca2-xNaxCuO2Cl2
by
SHEN, Kyle M
, TAKAGI, H
, SHEN, Z.-X
, RONNING, F
, INGLE, N. J. C
, LEE, W. S
, MEEVASANA, W
, KOHSAKA, Y
, TAKANO, M
, LU, D. H
, AZUMA, M
, BAUMBERGER, F
in
Condensed matter: electronic structure, electrical, magnetic, and optical properties
/ Cuprates superconductors (high tc and insulating parent compounds)
/ Exact sciences and technology
/ Physics
/ Superconductivity
/ Theory and models of superconducting state
2005
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Nodal quasiparticles and antinodal charge ordering in Ca2-xNaxCuO2Cl2
by
SHEN, Kyle M
, TAKAGI, H
, SHEN, Z.-X
, RONNING, F
, INGLE, N. J. C
, LEE, W. S
, MEEVASANA, W
, KOHSAKA, Y
, TAKANO, M
, LU, D. H
, AZUMA, M
, BAUMBERGER, F
in
Condensed matter: electronic structure, electrical, magnetic, and optical properties
/ Cuprates superconductors (high tc and insulating parent compounds)
/ Exact sciences and technology
/ Physics
/ Superconductivity
/ Theory and models of superconducting state
2005
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Nodal quasiparticles and antinodal charge ordering in Ca2-xNaxCuO2Cl2
by
SHEN, Kyle M
, TAKAGI, H
, SHEN, Z.-X
, RONNING, F
, INGLE, N. J. C
, LEE, W. S
, MEEVASANA, W
, KOHSAKA, Y
, TAKANO, M
, LU, D. H
, AZUMA, M
, BAUMBERGER, F
in
Condensed matter: electronic structure, electrical, magnetic, and optical properties
/ Cuprates superconductors (high tc and insulating parent compounds)
/ Exact sciences and technology
/ Physics
/ Superconductivity
/ Theory and models of superconducting state
2005
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Nodal quasiparticles and antinodal charge ordering in Ca2-xNaxCuO2Cl2
Journal Article
Nodal quasiparticles and antinodal charge ordering in Ca2-xNaxCuO2Cl2
2005
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Overview
Understanding the role of competing states in the cuprates is essential for developing a theory for high-temperature superconductivity. We report angle-resolved photoemission spectroscopy experiments which probe the 4a0 x 4a0 charge-ordered state discovered by scanning tunneling microscopy in the lightly doped cuprate superconductor Ca2-xNaxCuO2Cl2. Our measurements reveal a marked dichotomy between the real- and momentum-space probes, for which charge ordering is emphasized in the tunneling measurements and photoemission is most sensitive to excitations near the node of the d-wave superconducting gap. These results emphasize the importance of momentum anisotropy in determining the complex electronic properties of the cuprates and places strong constraints on theoretical models of the charge-ordered state.
Publisher
American Association for the Advancement of Science
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