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Electron scattering, charge order, and pseudogap physics in La1.6-xNd0.4SrxCuO4 An angle-resolved photoemission spectroscopy study

Matt, C. E. (author)
Fatuzzo, C. G. (author)
Sassa, Yasmine (author)
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Mansson, M. (author)
Fatale, S. (author)
Bitetta, V. (author)
Shi, X. (author)
Pailhes, S. (author)
Berntsen, M. H. (author)
Kurosawa, T. (author)
Oda, M. (author)
Momono, N. (author)
Lipscombe, O. J. (author)
Hayden, S. M. (author)
Yan, J. -Q (author)
Zhou, J. -S (author)
Goodenough, J. B. (author)
Pyon, S. (author)
Takayama, T. (author)
Takagi, H. (author)
Patthey, L. (author)
Bendounan, A. (author)
Razzoli, E. (author)
Shi, M. (author)
Plumb, N. C. (author)
Radovic, M. (author)
Grioni, M. (author)
Mesot, J. (author)
Tjernberg, O. (author)
Chang, J. (author)
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 (publisher)
2015
2015
English.
In: Physical Review B. Condensed Matter and Materials Physics. - 1098-0121. ; 92:13
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Abstract Subject headings
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  • We report an angle-resolved photoemission study of the charge stripe ordered La1.6-xNd0.4SrxCuO4 (Nd-LSCO) system. A comparative and quantitative line-shape analysis is presented as the system evolves from the overdoped regime into the charge ordered phase. On the overdoped side (x = 0.20), a normal-state antinodal spectral gap opens upon cooling below 80 K. In this process, spectral weight is preserved but redistributed to larger energies. A correlation between this spectral gap and electron scattering is found. A different line shape is observed in the antinodal region of charge ordered Nd-LSCO x = 1/8. Significant low-energy spectral weight appears to be lost. These observations are discussed in terms of spectral-weight redistribution and gapping originating from charge stripe ordering.

Subject headings

Natural Sciences  (hsv)
Physical Sciences  (hsv)
Subatomic Physics  (hsv)
Naturvetenskap  (hsv)
Fysik  (hsv)
Subatomär fysik  (hsv)

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