DocumentCode
2827984
Title
Ultrafast spin torque memory based on magnetic tunnel junctions with combined in-plane and perpendicular polarizers
Author
Krivorotov, I.N. ; Rowlands, G.E. ; Rahman, T. ; Katine, J.A. ; Langer, J. ; Lyle, A. ; Zhao, H. ; Alzate, J.G. ; Kovalev, A.A. ; Tserkovnyak, Y. ; Zeng, Z.M. ; Jiang, H.W. ; Galatsis, K. ; Huai, Y.M. ; Amiri, P. Khalili ; Wang, K.L. ; Wang, J. -P
Author_Institution
Phys. & Astron., Univ. of California, Irvine, CA, USA
fYear
2012
fDate
18-20 June 2012
Firstpage
211
Lastpage
212
Abstract
Since the initial prediction and experimental demonstration of magnetization reversal by spin transfer torque (STT), there has been continuous progress toward the development of nonvolatile magnetic random access memory based on STT switching (STT-RAM) in nanoscale magnetic tunnel junctions (MTJs). In the most common STT-RAM configuration shown in Fig. 1(a), the magnetic moments of the free layer and the pinned polarizing layer of an MTJ lie collinear to one another in the plane of the junction. In this configuration (in-plane STT-RAM or IST-RAM), STT is small during the initial stages of the free layer´s magnetic moment reversal, resulting in a relatively long nanosecond-scale switching time. Switching can be greatly accelerated in an alternative STT-RAM configuration, in which a second polarizer with magnetic moment perpendicular to the MTJ plane is added to the magnetic multilayer (orthogonal STT-RAM or OST-RAM). The initial STT from the perpendicular polarizer is large and has been predicted to induce ultrafast precessional switching of the free layer´s magnetization on a time scale of 100 ps. The differences in the reversal modes expected for the IST-RAM and OST-RAM devices are illustrated in Figs. 1(c) and 1(d), wherein magnetization switching trajectories are shown for the two types of memory.
Keywords
magnetic moments; magnetic storage; magnetic tunnelling; random-access storage; STT switching; STT-RAM configuration; in-plane polarizer; magnetic moments; nanoscale magnetic tunnel junctions; nanosecond-scale switching time; nonvolatile magnetic random access memory; perpendicular polarizer; spin transfer torque; ultrafast precessional switching; ultrafast spin torque memory; Educational institutions; Magnetic tunneling; Magnetization; Nonhomogeneous media; Random access memory; Switches; USA Councils;
fLanguage
English
Publisher
ieee
Conference_Titel
Device Research Conference (DRC), 2012 70th Annual
Conference_Location
University Park, TX
ISSN
1548-3770
Print_ISBN
978-1-4673-1163-2
Type
conf
DOI
10.1109/DRC.2012.6256944
Filename
6256944
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