ARPES on high-temperature superconductors: simplicity vs. complexity

A notable role in understanding of microscopic electronic properties of high temperature superconductors
 (HTSC) belongs to angle resolved photoemission spectroscopy (ARPES). This technique
 supplies a direct window into the reciprocal space of solids: the momentum–energy space&#...

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Published in:Физика низких температур
Date:2006
Main Authors: Kordyuk, A.A., Borisenko, S.V.
Format: Article
Language:English
Published: Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України 2006
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Online Access:https://nasplib.isofts.kiev.ua/handle/123456789/120184
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Journal Title:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Cite this:ARPES on high-temperature superconductors:
 simplicity vs. complexity / A.A. Kordyuk, S.V. Borisenko // Физика низких температур. — 2006. — Т. 32, № 4-5. — С. 401-410. — Бібліогр.: 57 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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author Kordyuk, A.A.
Borisenko, S.V.
author_facet Kordyuk, A.A.
Borisenko, S.V.
citation_txt ARPES on high-temperature superconductors:
 simplicity vs. complexity / A.A. Kordyuk, S.V. Borisenko // Физика низких температур. — 2006. — Т. 32, № 4-5. — С. 401-410. — Бібліогр.: 57 назв. — англ.
collection DSpace DC
container_title Физика низких температур
description A notable role in understanding of microscopic electronic properties of high temperature superconductors
 (HTSC) belongs to angle resolved photoemission spectroscopy (ARPES). This technique
 supplies a direct window into the reciprocal space of solids: the momentum–energy space
 where quasiparticles (electrons dressed in clouds of interactions) dwell. Any interaction in the
 electronic system, e.g., superconducting pairing, leads to modification of the quasiparticle spectrum—to
 redistribution of the spectral weight over the momentum–energy space probed by
 ARPES. Continued development of the technique had the effect that the picture seen through the
 ARPES window became clearer and sharper until the complexity of the electronic band structure
 of the cuprates had been resolved. Now, in the doping range optimal for superconductivity, the
 cuprates much resemble a normal metal with well-predicted electronic structure, though with
 rather strong electron–electron interaction. This principal disentanglement of the complex physics
 from complex structure reduced the mystery of HTSC to the tangible problem of the interaction responsible
 for quasiparticle formation. Here we present a short overview of resent ARPES results,
 which, we believe, suggest a way to resolve the HTSC puzzle.
first_indexed 2025-12-07T19:46:26Z
format Article
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id nasplib_isofts_kiev_ua-123456789-120184
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
issn 0132-6414
language English
last_indexed 2025-12-07T19:46:26Z
publishDate 2006
publisher Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
record_format dspace
spelling Kordyuk, A.A.
Borisenko, S.V.
2017-06-11T12:02:37Z
2017-06-11T12:02:37Z
2006
ARPES on high-temperature superconductors:
 simplicity vs. complexity / A.A. Kordyuk, S.V. Borisenko // Физика низких температур. — 2006. — Т. 32, № 4-5. — С. 401-410. — Бібліогр.: 57 назв. — англ.
0132-6414
PACS: 74.25.Jb, 74.72.Hs, 79.60.–i, 71.18.+y
https://nasplib.isofts.kiev.ua/handle/123456789/120184
A notable role in understanding of microscopic electronic properties of high temperature superconductors
 (HTSC) belongs to angle resolved photoemission spectroscopy (ARPES). This technique
 supplies a direct window into the reciprocal space of solids: the momentum–energy space
 where quasiparticles (electrons dressed in clouds of interactions) dwell. Any interaction in the
 electronic system, e.g., superconducting pairing, leads to modification of the quasiparticle spectrum—to
 redistribution of the spectral weight over the momentum–energy space probed by
 ARPES. Continued development of the technique had the effect that the picture seen through the
 ARPES window became clearer and sharper until the complexity of the electronic band structure
 of the cuprates had been resolved. Now, in the doping range optimal for superconductivity, the
 cuprates much resemble a normal metal with well-predicted electronic structure, though with
 rather strong electron–electron interaction. This principal disentanglement of the complex physics
 from complex structure reduced the mystery of HTSC to the tangible problem of the interaction responsible
 for quasiparticle formation. Here we present a short overview of resent ARPES results,
 which, we believe, suggest a way to resolve the HTSC puzzle.
We acknowledge the stimulating discussions with
 J. Fink, M. Knupfer, V.B. Zabolotnyy, M.S. Golden,
 A.N. Yaresko, S.-L. Drechsler, O.K. Andersen, I.
 Eremin, A.V. Chubukov, N.M. Plakida, Yu.N. Kucherenko,
 V.M. Loktev, and many others. The project
 is part of the Forschergruppe FOR538.
en
Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
Физика низких температур
General Aspects
ARPES on high-temperature superconductors: simplicity vs. complexity
Article
published earlier
spellingShingle ARPES on high-temperature superconductors: simplicity vs. complexity
Kordyuk, A.A.
Borisenko, S.V.
General Aspects
title ARPES on high-temperature superconductors: simplicity vs. complexity
title_full ARPES on high-temperature superconductors: simplicity vs. complexity
title_fullStr ARPES on high-temperature superconductors: simplicity vs. complexity
title_full_unstemmed ARPES on high-temperature superconductors: simplicity vs. complexity
title_short ARPES on high-temperature superconductors: simplicity vs. complexity
title_sort arpes on high-temperature superconductors: simplicity vs. complexity
topic General Aspects
topic_facet General Aspects
url https://nasplib.isofts.kiev.ua/handle/123456789/120184
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AT borisenkosv arpesonhightemperaturesuperconductorssimplicityvscomplexity