By I. Galanakis, K. Özdog̃an, E. Şaşiog̃lu (auth.), Professor Dr. Bekir Aktas, Dr. Faik Mikailov (eds.)
The booklet goals to supply an outline of contemporary development within the figuring out of magnetic houses in nanoscale via contemporary result of a number of theoretical and experimental investigations. The papers describe a variety of actual features, including theoretical and experimental tools. it truly is of crucial curiosity to researchers and experts in magnetism and magnetic fabrics technology, either in educational and commercial examine, in addition to complex students.
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Extra resources for Advances in Nanoscale Magnetism: Proceedings of the International Conference on Nanoscale Magnetism ICNM-2007 June 25–29, Istanbul, Turkey
So, angular dependence of the resonance ﬁeld can be found out using the written a computer program. 3 Ferromagnetic Resonance in Single Crystalline Film Magneto Crystalline Anisotropy Many magnetic phenomena in nanoscale structures are strongly aﬀected from the interaction of orbital magnetic moments and spin moments. The spinorbit interaction bonds the electron spin and orbital momentum together and makes the energy of atomic magnetic moments depending on their orientation with respect to crystalline axes .
Therefore, perpendicular anisotropy expression can be written as F⊥ = −K⊥ cos2 θ . 2 Resonance Field for Polycrystalline Film The coordinate system shown in Fig. 2 (out-of-plane geometry where the ﬁeld rotated with respect to ﬁlm normal) was used to obtain the resonance frequency for the out-of-plane geometry. The total energy density is assumed as F = −MS H[sin θH sin θ cos(ϕH − ϕ) + cos θH cos θ] + 2πMS2 cos2 θ − K⊥ cos2 θ . 11) In the out-of-plane geometry, the azimuthal angle set to zero, ϕ = ϕH = 0, and polar angle θH is varied.
M. Temmerman, Z. Szotek, A. Svane, H. Winter, J. Phys. Condens. Matter 16, 5061 (2004) 43. A. Stroppa, S. Picozzi, A. J. Freeman, Phys. Rev. B 68, 155203 (2003) 44. H. Akai, Phys. Rev. Lett. 81, 3002 (1998) 45. -H. Park, E. -J. Kim, C. Kwon, R. Ramesh, T. Venkatesan, Nature 392, 794 (1998) 46. S. Datta, B. Das, Appl. Phys. Lett. 56, 665 (1990) 47. A. H. Victora, J. Appl. Phys. 87, 7064 (2000) 48. T. Tanaka, J. S. Moodera, J. Appl. Phys. 86, 6239 (1999) 49. A. D. R. Childress, J. -C. C. P. , F. Petroﬀ, J.
Advances in Nanoscale Magnetism: Proceedings of the International Conference on Nanoscale Magnetism ICNM-2007 June 25–29, Istanbul, Turkey by I. Galanakis, K. Özdog̃an, E. Şaşiog̃lu (auth.), Professor Dr. Bekir Aktas, Dr. Faik Mikailov (eds.)