Polar metals by geometric design
T. H. Kim,
D. Puggioni,
Y. Yuan,
L. Xie,
H. Zhou,
N. Campbell,
P. J. Ryan,
Y. Choi,
J.-W. Kim,
J. R. Patzner,
S. Ryu,
J. P. Podkaminer,
J. Irwin,
Y. Ma,
C. J. Fennie,
M. S. Rzchowski,
X. Q. Pan,
V. Gopalan,
J. M. Rondinelli and
C. B. Eom ()
Additional contact information
T. H. Kim: University of Wisconsin-Madison
D. Puggioni: Northwestern University
Y. Yuan: Pennsylvania State University
L. Xie: University of California-Irvine
H. Zhou: Advanced Photon Source, Argonne National Laboratory
N. Campbell: University of Wisconsin-Madison
P. J. Ryan: Advanced Photon Source, Argonne National Laboratory
Y. Choi: Advanced Photon Source, Argonne National Laboratory
J.-W. Kim: Advanced Photon Source, Argonne National Laboratory
J. R. Patzner: University of Wisconsin-Madison
S. Ryu: University of Wisconsin-Madison
J. P. Podkaminer: University of Wisconsin-Madison
J. Irwin: University of Wisconsin-Madison
Y. Ma: University of Wisconsin-Madison
C. J. Fennie: School of Applied and Engineering Physics, Cornell University
M. S. Rzchowski: University of Wisconsin-Madison
X. Q. Pan: University of California-Irvine
V. Gopalan: Pennsylvania State University
J. M. Rondinelli: Northwestern University
C. B. Eom: University of Wisconsin-Madison
Nature, 2016, vol. 533, issue 7601, 68-72
Abstract:
Ab initio calculations are used to identify the structural conditions under which a polar state in metals might be stabilized; this information is used to guide the experimental realization of new room-temperature polar metals.
Date: 2016
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Citations: View citations in EconPapers (3)
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Persistent link: https://EconPapers.repec.org/RePEc:nat:nature:v:533:y:2016:i:7601:d:10.1038_nature17628
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DOI: 10.1038/nature17628
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