Magnetoelectronic multilayer devices are widely used in today’s information and sensor technology. Their functionality, however, is limited by the inherent properties of magnetic exchange or dipolar coupling which constrain possible spin configurations to collinear or perpendicular alignments of adjacent layers. Here, a deposition procedure is introduced that allows for a new class of layered materials in which complex spin structures can be accurately designed to result in a multitude of new and precisely adjustable spintronic and magnetoresistive properties. The magnetization direction and coercivity of each individual layer are determined by the deposition process in oblique incidence geometry and can be completely decoupled from neighbo...
Half a century of magnetic data storage has changed the world. A constantly increasing storage densi...
GMR Spin-Valve test structures have been fabricated in collaboration with Veeco/CVC. Various multi-l...
Abstract: The author has been actively engaged in research on nanomagnetic materials for about 50 ye...
Magnetoelectronic multilayer devices are widely used in today’s information and sensor technology. T...
A new deposition method allows to produce spintronic multilayer devices with freely adjustable magne...
A new deposition method allows to produce spintronic multilayer devices with freely adjustable magne...
My research belongs to the field of nanomagnetism and spintronic. The work I performed, since the en...
Obtaining highly sensitive ferromagnetic, FM, and nonmagnetic, NM, multilayers with a large room-tem...
My research belongs to the field of nanomagnetism and spintronic. The work I performed, since the en...
Obtaining highly sensitive ferromagnetic, FM, and nonmagnetic, NM, multilayers with a large room-tem...
Materials exhibiting new functionalities due to interdependent electric (e.g. conductivity) and magn...
During the past 20 years, layered structures consisting of ferromagnetic layers and spacers of vario...
Magneto-electronics is certainly one of the most rapidly expanding fields in basic research and indu...
One of the most promising new systems for both basic research and technical development are the peri...
Dissertation (Ph.D.) University of Alaska Fairbanks, 1998Ferromagnetic multilayers showing perpendic...
Half a century of magnetic data storage has changed the world. A constantly increasing storage densi...
GMR Spin-Valve test structures have been fabricated in collaboration with Veeco/CVC. Various multi-l...
Abstract: The author has been actively engaged in research on nanomagnetic materials for about 50 ye...
Magnetoelectronic multilayer devices are widely used in today’s information and sensor technology. T...
A new deposition method allows to produce spintronic multilayer devices with freely adjustable magne...
A new deposition method allows to produce spintronic multilayer devices with freely adjustable magne...
My research belongs to the field of nanomagnetism and spintronic. The work I performed, since the en...
Obtaining highly sensitive ferromagnetic, FM, and nonmagnetic, NM, multilayers with a large room-tem...
My research belongs to the field of nanomagnetism and spintronic. The work I performed, since the en...
Obtaining highly sensitive ferromagnetic, FM, and nonmagnetic, NM, multilayers with a large room-tem...
Materials exhibiting new functionalities due to interdependent electric (e.g. conductivity) and magn...
During the past 20 years, layered structures consisting of ferromagnetic layers and spacers of vario...
Magneto-electronics is certainly one of the most rapidly expanding fields in basic research and indu...
One of the most promising new systems for both basic research and technical development are the peri...
Dissertation (Ph.D.) University of Alaska Fairbanks, 1998Ferromagnetic multilayers showing perpendic...
Half a century of magnetic data storage has changed the world. A constantly increasing storage densi...
GMR Spin-Valve test structures have been fabricated in collaboration with Veeco/CVC. Various multi-l...
Abstract: The author has been actively engaged in research on nanomagnetic materials for about 50 ye...