DocumentCode
1565333
Title
Ultrafast generation of magnetic fields in a Schottky diode
Author
Buess, M. ; Acremann, Y. ; Back, C.H. ; Dumm, M. ; Bayreuther, G. ; Pescia, D.
Author_Institution
Lab. fur Festkorperphys., Eidgenossische Tech. Hochschule, Zurich, Switzerland
fYear
2002
Abstract
Summary form only given. For the development of future magnetic data storage technologies, the ultrafast generation of local magnetic fields is essential. Subnanosecond excitation of the magnetic state has so far been achieved by launching current pulses into micro-coils and micro-striplines and by using the high-energy electron beams. Local injection of a spin-polarized current through an all-metal junction has been proposed as an efficient method of switching magnetic elements, and experiments seem to confirm this. Here we introduce a different scheme for the ultrafast generation of local magnetic fields in such a hybrid structure. The basis of our approach is to optically pump a Schottky diode with a focused, /spl sim/150-fs laser pulse. The laser generates a current across the semiconductor-metal junction, which in turn gives rise to an in-plane magnetic field. This scheme combines the localization of current injection techniques with the speed of current generation at a Schottky barrier. Specific advantages include the ability to rapidly create local fields along any in-plane direction anywhere on the sample, the ability to scan the field over many magnetic elements and the ability to tune the magnitude of the field with the diode bias voltage.
Keywords
Schottky diodes; magnetic storage; spin polarised transport; 150 fs; Schottky diode; all-metal junction; diode bias voltage; hybrid structure; local magnetic fields; magnetic data storage technologies; spin-polarized current local injection; switching magnetic elements; ultrafast generation; Electron beams; Hybrid power systems; Magnetic fields; Magnetic switching; Memory; Optical pumping; Pump lasers; Schottky diodes; Semiconductor lasers; Ultrafast optics;
fLanguage
English
Publisher
ieee
Conference_Titel
Magnetics Conference, 2002. INTERMAG Europe 2002. Digest of Technical Papers. 2002 IEEE International
Conference_Location
Amsterdam, The Netherlands
Print_ISBN
0-7803-7365-0
Type
conf
DOI
10.1109/INTMAG.2002.1000802
Filename
1000802
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