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Electrostatic Modulation of Superconductivity in Ultrathin GdBa$_2$Cu$_3$O$_{7-x}$ Films

The polarization field of the ferroelectric oxide lead zirconate titanate [Pb(Zr$_x$Ti$_{1-x}$)O$_3$] was used to tune the critical temperature of the high-temperature superconducting cuprate gadolinium barium copper oxide (GdBa$_2$Cu$_3$O$_{7-x}$) in a reversible, nonvolatile fashion. For slightly... Full description

Main Author: Ahn, C. H.
Contributors: Gariglio, S. | Author
Paruch, P. | Author
Tybell, T. | Author
Antognazza, L. | Author
Contained in: Science Vol. 284, No. 5417 (1999), p. 1152-1155
Journal Title: Science
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Links: Volltext (www.jstor.org)
ISSN: 1095-9203
Additional Keywords: research-article
Language: English
Notes: Copyright: Copyright 1999 American Association for the Advancement of Science
Physical Description: Online-Ressource
ID (e.g. DOI, URN): 2899031
PPN (Catalogue-ID): JST078726263
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520 |a The polarization field of the ferroelectric oxide lead zirconate titanate [Pb(Zr$_x$Ti$_{1-x}$)O$_3$] was used to tune the critical temperature of the high-temperature superconducting cuprate gadolinium barium copper oxide (GdBa$_2$Cu$_3$O$_{7-x}$) in a reversible, nonvolatile fashion. For slightly underdoped samples, a uniform shift of several Kelvin in the critical temperature was observed, whereas for more underdoped samples, an insulating state was induced. This transition from superconducting to insulating behavior does not involve chemical or crystalline modification of the material. 
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700 1 |a Antognazza, L.  |e verfasserin  |4 aut 
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