Temperature-Dependent Coercive Field Measured by a Quantum Dot Strain Gauge

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autorschaft

  • Yan Chen
  • Yang Zhang
  • Robert Keil
  • Michael Zopf
  • Fei Ding
  • Oliver G. Schmidt

Organisationseinheiten

Externe Organisationen

  • Leibniz-Institut für Festkörper- und Werkstoffforschung Dresden (IFW) e.V.
  • Technische Universität Chemnitz
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Details

OriginalspracheEnglisch
Seiten (von - bis)7864-7868
Seitenumfang5
FachzeitschriftNano Letters
Jahrgang17
Ausgabenummer12
PublikationsstatusVeröffentlicht - 15 Nov. 2017

ASJC Scopus Sachgebiete

Zitieren

Temperature-Dependent Coercive Field Measured by a Quantum Dot Strain Gauge. / Chen, Yan; Zhang, Yang; Keil, Robert et al.
in: Nano Letters, Jahrgang 17, Nr. 12, 15.11.2017, S. 7864-7868.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Chen Y, Zhang Y, Keil R, Zopf M, Ding F, Schmidt OG. Temperature-Dependent Coercive Field Measured by a Quantum Dot Strain Gauge. Nano Letters. 2017 Nov 15;17(12):7864-7868. doi: 10.15488/5473, 10.1021/acs.nanolett.7b04138
Chen, Yan ; Zhang, Yang ; Keil, Robert et al. / Temperature-Dependent Coercive Field Measured by a Quantum Dot Strain Gauge. in: Nano Letters. 2017 ; Jahrgang 17, Nr. 12. S. 7864-7868.
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title = "Temperature-Dependent Coercive Field Measured by a Quantum Dot Strain Gauge",
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author = "Yan Chen and Yang Zhang and Robert Keil and Michael Zopf and Fei Ding and Schmidt, {Oliver G.}",
note = "Funding information: The work was financially supported by the ERC Starting Grant No. 715770 (QD-NOMS), the BMBF Q.Com-H (16KIS0106) and the European Union Seventh Framework Programme 209 (FP7/2007?2013) under Grant Agreement No. 601126 210 (HANAS). F.D. acknowledges the generous support of IFW Excellence Program. We thank B. Eichler, R. Engelhard, M. Bauer, S. Nestler, Dr. S. Baunack, and Dr. S. Harazim for technical supports. Y.C. would like to thank Dr. Zhao Dong at Max Planck Institute for Solid State Research for fruitful discussions.",
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Download

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T1 - Temperature-Dependent Coercive Field Measured by a Quantum Dot Strain Gauge

AU - Chen, Yan

AU - Zhang, Yang

AU - Keil, Robert

AU - Zopf, Michael

AU - Ding, Fei

AU - Schmidt, Oliver G.

N1 - Funding information: The work was financially supported by the ERC Starting Grant No. 715770 (QD-NOMS), the BMBF Q.Com-H (16KIS0106) and the European Union Seventh Framework Programme 209 (FP7/2007?2013) under Grant Agreement No. 601126 210 (HANAS). F.D. acknowledges the generous support of IFW Excellence Program. We thank B. Eichler, R. Engelhard, M. Bauer, S. Nestler, Dr. S. Baunack, and Dr. S. Harazim for technical supports. Y.C. would like to thank Dr. Zhao Dong at Max Planck Institute for Solid State Research for fruitful discussions.

PY - 2017/11/15

Y1 - 2017/11/15

KW - Coercive field

KW - low temperature

KW - piezoelectricity

KW - quantum dot

KW - strain gauge

U2 - 10.15488/5473

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JO - Nano Letters

JF - Nano Letters

SN - 1530-6984

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ER -

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