Peculiarly strong room-temperature ferromagnetism from low Mn-doping in ZnO grown by molecular beam epitaxy
Strong room-temperature ferromagnetism is demonstrated in single crystalline Mn-doped ZnO thin films grown by molecular beam epitaxy. Very low Mn doping concentration is investigated, and the measured magnetic moment is much larger than what is expected for an isolated ion based on Hund's rules...
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Veröffentlicht in: | AIP advances 2013-03, Vol.3 (3), p.032110-032110 |
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creator | Zuo, Zheng Morshed, Muhammad Beyermann, W. P. Zheng, Jian-Guo Xin, Yan Liu, Jianlin |
description | Strong room-temperature ferromagnetism is demonstrated in single crystalline Mn-doped ZnO thin films grown by molecular beam epitaxy. Very low Mn doping concentration is investigated, and the measured magnetic moment is much larger than what is expected for an isolated ion based on Hund's rules. The ferromagnetic behavior evolves with Mn concentration. Both magnetic anisotropy and anomalous Hall effect confirm the intrinsic nature of ferromagnetism. While the Mn dopant plays a crucial role, another entity in the system is needed to explain the observed large magnetic moments. |
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P.</au><au>Zheng, Jian-Guo</au><au>Xin, Yan</au><au>Liu, Jianlin</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Peculiarly strong room-temperature ferromagnetism from low Mn-doping in ZnO grown by molecular beam epitaxy</atitle><jtitle>AIP advances</jtitle><date>2013-03-01</date><risdate>2013</risdate><volume>3</volume><issue>3</issue><spage>032110</spage><epage>032110</epage><pages>032110-032110</pages><issn>2158-3226</issn><eissn>2158-3226</eissn><coden>AAIDBI</coden><abstract>Strong room-temperature ferromagnetism is demonstrated in single crystalline Mn-doped ZnO thin films grown by molecular beam epitaxy. Very low Mn doping concentration is investigated, and the measured magnetic moment is much larger than what is expected for an isolated ion based on Hund's rules. The ferromagnetic behavior evolves with Mn concentration. Both magnetic anisotropy and anomalous Hall effect confirm the intrinsic nature of ferromagnetism. While the Mn dopant plays a crucial role, another entity in the system is needed to explain the observed large magnetic moments.</abstract><cop>United States</cop><pub>AIP Publishing LLC</pub><doi>10.1063/1.4794799</doi><tpages>16</tpages><oa>free_for_read</oa></addata></record> |
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subjects | ANISOTROPY CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY Crystal structure Dopants DOPED MATERIALS FERROMAGNETIC MATERIALS FERROMAGNETISM HALL EFFECT IONS Magnetic moment MAGNETIC MOMENTS MANGANESE MATERIALS SCIENCE MOLECULAR BEAM EPITAXY MONOCRYSTALS SEMICONDUCTOR MATERIALS TEMPERATURE RANGE 0273-0400 K THIN FILMS Zinc oxide ZINC OXIDES |
title | Peculiarly strong room-temperature ferromagnetism from low Mn-doping in ZnO grown by molecular beam epitaxy |
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