Room-temperature surface multiferroicity in Y2NiMnO6 nanorods

被引:2
|
作者
Mishra, Shubhankar [1 ]
Roy, Amritendu [2 ]
Sahoo, Aditi [3 ,7 ]
Satpati, Biswarup [4 ]
Roychowdhury, Anirban [5 ]
Mohanty, P. K. [6 ]
Ghosh, Chandan Kumar [1 ]
Bhattacharya, Dipten [3 ]
机构
[1] Jadavpur Univ, Sch Mat Sci & Nanotechnol, Kolkata 700032, India
[2] Indian Inst Technol, Sch Minerals Met & Mat Engn, Bhubaneswar 752050, India
[3] CSIR Cent Glass & Ceram Res Inst, Adv Mat & Chem Characterizat Div, Kolkata 700032, India
[4] Saha Inst Nucl Phys, Homi Bhabha Natl Inst, A CI, 1 AF Salt Lake, Kolkata 700064, India
[5] Krishnath Coll, Dept Phys, Berhampur 742101, W Bengal, India
[6] IISER, Dept Phys Sci, Mohanpur 741246, W Bengal, India
[7] Indian Inst Technol, Dept Phys, Gandhinagar 382355, India
关键词
482.2 Minerals - 641.1 Thermodynamics - 701.1 Electricity: Basic Concepts and Phenomena - 701.2 Magnetism: Basic Concepts and Phenomena - 708.4 Magnetic Materials - 761 Nanotechnology - 933 Solid State Physics - 951 Materials Science;
D O I
10.1103/PhysRevB.105.235429
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We report observation of surface-defect-induced room-temperature multiferroicity-surface ferromagnetism (M-S at 50 kOe approximate to 0.005 emu/g), ferroelectricity (P-R approximate to 2nC/cm(2)), and significantly large magnetoelectric coupling (decrease in P-R by approximate to 80% under approximate to 15 kOe field)-in nanorods (diameter approximate to 100 nm) of double perovskite Y2NiMnO6 compound. In bulk form, this system exhibits multiferroicity only below its magnetic transition temperature T-N approximate to 70 K. On the other hand, the oxygen vacancies, formed at the surface region (thickness approximate to 10 nm) of the nanorods, yield long-range magnetic order as well as ferroelectricity via Dzyloshinskii-Moriya exchange coupling interactions with strong Rashba spin-orbit coupling. Sharp drop in P-R under magnetic field indicates strong cross coupling between magnetism and ferroelectricity as well. Observation of room-temperature magnetoelectric coupling in nanoscale for a compound which, in bulk form, exhibits multiferroicity only below 70 K underscores an alternative pathway for inducing magnetoelectric multiferroicity via surface defects and, thus, in line with magnetoelectric property observed, for example, in domain walls or boundaries or interfaces of heteroepitaxially grown thin films which do not exhibit such features in their bulk.
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页数:9
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