The Experts below are selected from a list of 312 Experts worldwide ranked by ideXlab platform
R. Miranda - One of the best experts on this subject based on the ideXlab platform.
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Symmetry breaking effects in epitaxial magnetic thin films: Nonsymmetric reversal and butterfly remanence behavior
Physical Review B: Condensed Matter and Materials Physics, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, J.m. Gallego, Jan Vogel, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in gamma'-Fe4N(100) thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
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symmetry breaking effects in epitaxial magnetic thin films nonsymmetric reversal and butterfly remanence behavior
Physical Review B, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, Jan Vogel, Jose Gallego, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in ${\ensuremath{\gamma}}^{\ensuremath{'}}\text{\ensuremath{-}}{\mathrm{Fe}}_{4}\mathrm{N}(100)$ thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
D. Ecija - One of the best experts on this subject based on the ideXlab platform.
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Symmetry breaking effects in epitaxial magnetic thin films: Nonsymmetric reversal and butterfly remanence behavior
Physical Review B: Condensed Matter and Materials Physics, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, J.m. Gallego, Jan Vogel, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in gamma'-Fe4N(100) thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
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symmetry breaking effects in epitaxial magnetic thin films nonsymmetric reversal and butterfly remanence behavior
Physical Review B, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, Jan Vogel, Jose Gallego, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in ${\ensuremath{\gamma}}^{\ensuremath{'}}\text{\ensuremath{-}}{\mathrm{Fe}}_{4}\mathrm{N}(100)$ thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
Julio Camarero - One of the best experts on this subject based on the ideXlab platform.
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Symmetry breaking effects in epitaxial magnetic thin films: Nonsymmetric reversal and butterfly remanence behavior
Physical Review B: Condensed Matter and Materials Physics, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, J.m. Gallego, Jan Vogel, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in gamma'-Fe4N(100) thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
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symmetry breaking effects in epitaxial magnetic thin films nonsymmetric reversal and butterfly remanence behavior
Physical Review B, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, Jan Vogel, Jose Gallego, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in ${\ensuremath{\gamma}}^{\ensuremath{'}}\text{\ensuremath{-}}{\mathrm{Fe}}_{4}\mathrm{N}(100)$ thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
N. Sacristan - One of the best experts on this subject based on the ideXlab platform.
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Symmetry breaking effects in epitaxial magnetic thin films: Nonsymmetric reversal and butterfly remanence behavior
Physical Review B: Condensed Matter and Materials Physics, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, J.m. Gallego, Jan Vogel, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in gamma'-Fe4N(100) thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
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symmetry breaking effects in epitaxial magnetic thin films nonsymmetric reversal and butterfly remanence behavior
Physical Review B, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, Jan Vogel, Jose Gallego, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in ${\ensuremath{\gamma}}^{\ensuremath{'}}\text{\ensuremath{-}}{\mathrm{Fe}}_{4}\mathrm{N}(100)$ thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
N. Mikuszeit - One of the best experts on this subject based on the ideXlab platform.
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Symmetry breaking effects in epitaxial magnetic thin films: Nonsymmetric reversal and butterfly remanence behavior
Physical Review B: Condensed Matter and Materials Physics, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, J.m. Gallego, Jan Vogel, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in gamma'-Fe4N(100) thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.
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symmetry breaking effects in epitaxial magnetic thin films nonsymmetric reversal and butterfly remanence behavior
Physical Review B, 2008Co-Authors: D. Ecija, E. Jimenez, N. Mikuszeit, N. Sacristan, Julio Camarero, Jan Vogel, Jose Gallego, R. MirandaAbstract:A consistent picture which explains the effects of magnetic anisotropy symmetry breaking on the magnetic properties of epitaxial magnetic thin films is provided, including experimental results in ${\ensuremath{\gamma}}^{\ensuremath{'}}\text{\ensuremath{-}}{\mathrm{Fe}}_{4}\mathrm{N}(100)$ thin films and numerical simulations. As expected for a thin film with fourfold crystal symmetry, the results show the existence of two easy and two hard magnetization axes. However, in this case, the easy axes are not orthogonal, the hard axes are not equivalent, the magnetization reversal behavior around the two easy axes is not symmetric, and the reversal behaviors of the two hard axes are not alike. As a consequence, the Polar Plot of the remanence displays a butterfly shape behavior. These effects depend on additional terms of the magnetic anisotropy. Our results are extended to other symmetry breaking epitaxial magnetic systems.