We present the structural and magnetic properties of fully epitaxial Fe(110)/MgO(111)/GaN(0001) tunnel barrier structures grown by molecular beam epitaxy. In-situ reflection high-energy electron diffraction and ex-situ X-ray diffraction measurements indicate epitaxial Fe(110) films on top of an epitaxial 2 nm MgO(111) tunnel barrier on GaN(0001). X-ray reflectivity measurements confirm a roughness of approximately 0.3 nm and 0.7 nm for the MgO/GaN and the Fe/MgO interfaces, respectively. Results of in-situ magneto-optical Kerr effect measurements indicate that 1 nm thick Fe film shows signs of in-plane ferromagnetism at room temperature. Vibrating sample magnetometer measurements determine the saturation magnetisation of the 5 nm thick film to be 1660 ± 100 emu/cm3 and show that this system has a predominant uniaxial anisotropy contribution despite the presence of cyclic twinned crystals. We estimate the values of effective uniaxial () and cubic () anisotropy constants to be 11700 ± 170 erg cm−3 and −3300 ± 700 erg cm−3 by fitting the angular dependence of the magnetising energy.
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14 March 2018
Research Article|
March 09 2018
Structure and magnetic properties of an epitaxial Fe(110)/MgO(111)/GaN(0001) heterostructure Available to Purchase
N. Khalid;
N. Khalid
1
Cavendish Laboratory, University of Cambridge
, Cambridge CB3 0HE, United Kingdom
2
Department of Physics, Government College University
, 54000 Lahore, Pakistan
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J.-Y. Kim
;
J.-Y. Kim
1
Cavendish Laboratory, University of Cambridge
, Cambridge CB3 0HE, United Kingdom
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A. Ionescu;
A. Ionescu
a)
1
Cavendish Laboratory, University of Cambridge
, Cambridge CB3 0HE, United Kingdom
a)Author to whom correspondence should be addressed: [email protected]
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T. Hussain
;
T. Hussain
3
Centre for Advanced Studies in Physics, Government College University
, 54000 Lahore, Pakistan
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F. Oehler;
F. Oehler
4
Department of Material Science and Metallurgy, University of Cambridge
, Cambridge CB3 0FS, United Kingdom
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T. Zhu
;
T. Zhu
4
Department of Material Science and Metallurgy, University of Cambridge
, Cambridge CB3 0FS, United Kingdom
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R. A. Oliver
;
R. A. Oliver
4
Department of Material Science and Metallurgy, University of Cambridge
, Cambridge CB3 0FS, United Kingdom
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I. Farrer
;
I. Farrer
1
Cavendish Laboratory, University of Cambridge
, Cambridge CB3 0HE, United Kingdom
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R. Ahmad;
R. Ahmad
2
Department of Physics, Government College University
, 54000 Lahore, Pakistan
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C. H. W. Barnes
C. H. W. Barnes
1
Cavendish Laboratory, University of Cambridge
, Cambridge CB3 0HE, United Kingdom
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N. Khalid
1,2
J.-Y. Kim
1
A. Ionescu
1,a)
T. Hussain
3
F. Oehler
4
R. A. Oliver
4
I. Farrer
1
R. Ahmad
2
C. H. W. Barnes
1
1
Cavendish Laboratory, University of Cambridge
, Cambridge CB3 0HE, United Kingdom
2
Department of Physics, Government College University
, 54000 Lahore, Pakistan
3
Centre for Advanced Studies in Physics, Government College University
, 54000 Lahore, Pakistan
4
Department of Material Science and Metallurgy, University of Cambridge
, Cambridge CB3 0FS, United Kingdom
a)Author to whom correspondence should be addressed: [email protected]
J. Appl. Phys. 123, 103901 (2018)
Article history
Received:
January 15 2018
Accepted:
February 06 2018
Citation
N. Khalid, J.-Y. Kim, A. Ionescu, T. Hussain, F. Oehler, T. Zhu, R. A. Oliver, I. Farrer, R. Ahmad, C. H. W. Barnes; Structure and magnetic properties of an epitaxial Fe(110)/MgO(111)/GaN(0001) heterostructure. J. Appl. Phys. 14 March 2018; 123 (10): 103901. https://doi.org/10.1063/1.5022433
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