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Unipolar resistive switching effect in YMn1−δO3 thin films
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Zeitschriftentitel: | Applied Physics Letters |
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Personen und Körperschaften: | , , , |
In: | Applied Physics Letters, 96, 2010, 1 |
Format: | E-Article |
Sprache: | Englisch |
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AIP Publishing
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author_facet |
Yan, Z. B. Li, S. Z. Wang, K. F. Liu, J.-M. Yan, Z. B. Li, S. Z. Wang, K. F. Liu, J.-M. |
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author |
Yan, Z. B. Li, S. Z. Wang, K. F. Liu, J.-M. |
spellingShingle |
Yan, Z. B. Li, S. Z. Wang, K. F. Liu, J.-M. Applied Physics Letters Unipolar resistive switching effect in YMn1−δO3 thin films Physics and Astronomy (miscellaneous) |
author_sort |
yan, z. b. |
spelling |
Yan, Z. B. Li, S. Z. Wang, K. F. Liu, J.-M. 0003-6951 1077-3118 AIP Publishing Physics and Astronomy (miscellaneous) http://dx.doi.org/10.1063/1.3280380 <jats:p>Steady unipolar resistive switching of Pt/YMn1−δO3/Pt MIM structure is investigated. High resistance ratio (&gt;104) of high resistance state (HRS) over low resistance state (LRS) and long retention (&gt;105 s) are achieved. It is suggested that the Joule heating and Poole–Frenkel effect dominate respectively the conduction of the LRS and HRS in high electric field region. The resistive switching is explained by the rupture and formation of conductive filaments in association with the local Joule-heat-induced redox inside YMn1−δO3.</jats:p> Unipolar resistive switching effect in YMn1−δO3 thin films Applied Physics Letters |
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10.1063/1.3280380 |
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AIP Publishing, 2010 |
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2010 |
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AIP Publishing |
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Applied Physics Letters |
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49 |
title |
Unipolar resistive switching effect in YMn1−δO3 thin films |
title_unstemmed |
Unipolar resistive switching effect in YMn1−δO3 thin films |
title_full |
Unipolar resistive switching effect in YMn1−δO3 thin films |
title_fullStr |
Unipolar resistive switching effect in YMn1−δO3 thin films |
title_full_unstemmed |
Unipolar resistive switching effect in YMn1−δO3 thin films |
title_short |
Unipolar resistive switching effect in YMn1−δO3 thin films |
title_sort |
unipolar resistive switching effect in ymn1−δo3 thin films |
topic |
Physics and Astronomy (miscellaneous) |
url |
http://dx.doi.org/10.1063/1.3280380 |
publishDate |
2010 |
physical |
|
description |
<jats:p>Steady unipolar resistive switching of Pt/YMn1−δO3/Pt MIM structure is investigated. High resistance ratio (&gt;104) of high resistance state (HRS) over low resistance state (LRS) and long retention (&gt;105 s) are achieved. It is suggested that the Joule heating and Poole–Frenkel effect dominate respectively the conduction of the LRS and HRS in high electric field region. The resistive switching is explained by the rupture and formation of conductive filaments in association with the local Joule-heat-induced redox inside YMn1−δO3.</jats:p> |
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author | Yan, Z. B., Li, S. Z., Wang, K. F., Liu, J.-M. |
author_facet | Yan, Z. B., Li, S. Z., Wang, K. F., Liu, J.-M., Yan, Z. B., Li, S. Z., Wang, K. F., Liu, J.-M. |
author_sort | yan, z. b. |
container_issue | 1 |
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container_title | Applied Physics Letters |
container_volume | 96 |
description | <jats:p>Steady unipolar resistive switching of Pt/YMn1−δO3/Pt MIM structure is investigated. High resistance ratio (&gt;104) of high resistance state (HRS) over low resistance state (LRS) and long retention (&gt;105 s) are achieved. It is suggested that the Joule heating and Poole–Frenkel effect dominate respectively the conduction of the LRS and HRS in high electric field region. The resistive switching is explained by the rupture and formation of conductive filaments in association with the local Joule-heat-induced redox inside YMn1−δO3.</jats:p> |
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imprint | AIP Publishing, 2010 |
imprint_str_mv | AIP Publishing, 2010 |
institution | DE-D161, DE-Gla1, DE-Zi4, DE-15, DE-Pl11, DE-Rs1, DE-105, DE-14, DE-Ch1, DE-L229, DE-D275, DE-Bn3, DE-Brt1 |
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spelling | Yan, Z. B. Li, S. Z. Wang, K. F. Liu, J.-M. 0003-6951 1077-3118 AIP Publishing Physics and Astronomy (miscellaneous) http://dx.doi.org/10.1063/1.3280380 <jats:p>Steady unipolar resistive switching of Pt/YMn1−δO3/Pt MIM structure is investigated. High resistance ratio (&gt;104) of high resistance state (HRS) over low resistance state (LRS) and long retention (&gt;105 s) are achieved. It is suggested that the Joule heating and Poole–Frenkel effect dominate respectively the conduction of the LRS and HRS in high electric field region. The resistive switching is explained by the rupture and formation of conductive filaments in association with the local Joule-heat-induced redox inside YMn1−δO3.</jats:p> Unipolar resistive switching effect in YMn1−δO3 thin films Applied Physics Letters |
spellingShingle | Yan, Z. B., Li, S. Z., Wang, K. F., Liu, J.-M., Applied Physics Letters, Unipolar resistive switching effect in YMn1−δO3 thin films, Physics and Astronomy (miscellaneous) |
title | Unipolar resistive switching effect in YMn1−δO3 thin films |
title_full | Unipolar resistive switching effect in YMn1−δO3 thin films |
title_fullStr | Unipolar resistive switching effect in YMn1−δO3 thin films |
title_full_unstemmed | Unipolar resistive switching effect in YMn1−δO3 thin films |
title_short | Unipolar resistive switching effect in YMn1−δO3 thin films |
title_sort | unipolar resistive switching effect in ymn1−δo3 thin films |
title_unstemmed | Unipolar resistive switching effect in YMn1−δO3 thin films |
topic | Physics and Astronomy (miscellaneous) |
url | http://dx.doi.org/10.1063/1.3280380 |