DocumentCode :
1989304
Title :
Rigorous simulation study of a novel non-volatile magnetic flip-flop
Author :
Windbacher, Thomas ; Mahmoudi, Hiwa ; Sverdlov, Viktor ; Selberherr, Siegfried
Author_Institution :
Inst. for Microelectron., Tech. Univ. Wien, Vienna, Austria
fYear :
2013
fDate :
3-5 Sept. 2013
Firstpage :
368
Lastpage :
371
Abstract :
The ever increasing demand in fast and cheap bulk memory as well as electronics in general has driven the scaling efforts in CMOS since its very beginnings. Today, pushing the limits of integration density is still a major concern, but gradually power efficient computing gains more and more interest. A possible way to reduce power consumption is to introduce non-volatility into the devices. Thus power is consumed only, when information is written or read out, while the rest of the time the devices preserve the information with out any power demand. In this work we propose a novel non-volatile magnetic flip-flop which shifts the actual logic operation from the electric signal domain to the magnetic domain, operating via constructive and destructive superposition of spin waves generated by the spin transfer torque effect. Furthermore we carried out a rigorous simulation study for three different device sizes and found them operational between ≈4×1010A/m2 and ≈1012A/m2 at switching times from tens of nanoseconds to picoseconds.
Keywords :
MRAM devices; flip-flops; actual logic operation; bulk memory; device sizes; electric signal domain; integration density; magnetic domain; nonvolatile magnetic flip-flop; power consumption; power demand; rigorous simulation study; spin transfer torque effect; spin waves; Current density; Magnetic domains; Magnetic tunneling; Magnetization; Oscillators; Switches; Torque;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Simulation of Semiconductor Processes and Devices (SISPAD), 2013 International Conference on
Conference_Location :
Glasgow
ISSN :
1946-1569
Print_ISBN :
978-1-4673-5733-3
Type :
conf
DOI :
10.1109/SISPAD.2013.6650651
Filename :
6650651
Link To Document :
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