Exchange biasing was studied in an exchange-spring system consisting of two ferrimagnetic films with different coercivity. Magnetite and Co-Fe ferrite were chosen as the soft and hard magnetic bilayer components, respectively. The samples were epitaxially grown on MgO single crystal substrates by pulsed laser deposition. The exchange-bias field was investigated as a function of system size and shape, magnetic field direction and magnetization reversal in the hard layer. A clear dependence of the exchange-bias field on the sample size and shape was found. This was attributed to an interplay between exchange and dipolar energies. Micromagnetic simulations agree with the experimental results. Copyright EDP Sciences/Società Italiana di Fisica/S...
Balluff J, Meinert M, Schmalhorst J-M, Reiss G, Arenholz E. Exchange bias in epitaxial and polycryst...
A qualitative model explanation of the experimentally obtained field dependences of the magnetizatio...
I have studied Exchange Bias in epitaxial α-Fe2O3 and polycrystalline FeMn and CoMn antiferromagnets...
Exchange biasing was studied in an exchange-spring system consisting of two ferrimagnetic films with...
The exchange bias of antiferromagnetic-ferromagnetic (AFM-FM) bilayers is found to be strongly depen...
Modern applications for thin film magnets involve unique requirements for the control and design of ...
Exchange biasing has been studied for a series of [100] and [111] oriented, epitaxial Fe3O4/CoO bila...
Interfaces in magnetically coupled bilayer heterostructures play a vital role in novel spintronics d...
Sterwerf C, Meinert M, Arenholz E, Schmalhorst J-M, Reiss G. Room Temperature Exchange Bias in BiFeO...
Magnetoelectric coupling in ferromagnetic/multiferroic systems is often manifested in the exchange b...
When a ferromagnet/antiferromagnet (FM/AF) bilayer is cooled below the Neel temperature TN& lt;/...
International audienceIn Gd 40 Fe 60 /Tb 12 Fe 88 exchange-coupled bilayer system, both negative and...
We present results on the magnetic reversal process in epitaxial Sm-Co (1{bar 1}00)/TM (TM = Fe, Co)...
International audiencePositive exchange bias is shown to occur in (ferromagnetic (FeSn)/ferrimagneti...
One of the most interesting topics in material science is the effect of geometric confinement on nan...
Balluff J, Meinert M, Schmalhorst J-M, Reiss G, Arenholz E. Exchange bias in epitaxial and polycryst...
A qualitative model explanation of the experimentally obtained field dependences of the magnetizatio...
I have studied Exchange Bias in epitaxial α-Fe2O3 and polycrystalline FeMn and CoMn antiferromagnets...
Exchange biasing was studied in an exchange-spring system consisting of two ferrimagnetic films with...
The exchange bias of antiferromagnetic-ferromagnetic (AFM-FM) bilayers is found to be strongly depen...
Modern applications for thin film magnets involve unique requirements for the control and design of ...
Exchange biasing has been studied for a series of [100] and [111] oriented, epitaxial Fe3O4/CoO bila...
Interfaces in magnetically coupled bilayer heterostructures play a vital role in novel spintronics d...
Sterwerf C, Meinert M, Arenholz E, Schmalhorst J-M, Reiss G. Room Temperature Exchange Bias in BiFeO...
Magnetoelectric coupling in ferromagnetic/multiferroic systems is often manifested in the exchange b...
When a ferromagnet/antiferromagnet (FM/AF) bilayer is cooled below the Neel temperature TN& lt;/...
International audienceIn Gd 40 Fe 60 /Tb 12 Fe 88 exchange-coupled bilayer system, both negative and...
We present results on the magnetic reversal process in epitaxial Sm-Co (1{bar 1}00)/TM (TM = Fe, Co)...
International audiencePositive exchange bias is shown to occur in (ferromagnetic (FeSn)/ferrimagneti...
One of the most interesting topics in material science is the effect of geometric confinement on nan...
Balluff J, Meinert M, Schmalhorst J-M, Reiss G, Arenholz E. Exchange bias in epitaxial and polycryst...
A qualitative model explanation of the experimentally obtained field dependences of the magnetizatio...
I have studied Exchange Bias in epitaxial α-Fe2O3 and polycrystalline FeMn and CoMn antiferromagnets...