Title :
Spin Wave Logic Circuit on Silicon Platform
Author :
Khitun, A. ; Bao, M. ; Wu, Y. ; Kim, J.-Y. ; Hong, A. ; Jacob, A. ; Galatsis, K. ; Wang, K.L.
Author_Institution :
Univ. of California, Los Angeles
Abstract :
We analyze spin wave-based logic circuits for information transmission and processing in integrated magneto-electric circuits. A bit of information is encoded into the phase of the spin wave propagating in the magnetic waveguide referred to as spin wave bus. It makes possible to transmit and process a number of bits at constant time. By exploiting sin wave superposition, a set of logic gates such as AND, OR, and Majority gate can be realized in one circuit. This paper presents the realization of a spin-wave based logic circuit fabricated on a silicon platform. The prototype micrometer scale circuit operates in the GHz frequency range and offers exciting potential as a multifunctional logic gate that could be scaled down to 0.1 mum2 with energy per bit as low as 10-18 J. Another potential advantage of the spin wave-based logic circuitry is the ability to implement logic gates with fewer elements as compared to CMOS- based circuits in achieving same functionality. The shortcomings and disadvantages of the spin wave-based devices are discussed.
Keywords :
logic circuits; logic gates; magnetoelectronics; spin waves; information transmission; logic circuit; logic gates; magnetoelectric circuits; silicon platform; spin wave-based logic circuits; Logic circuits; Logic devices; Logic gates; Magnetic analysis; Magnetic field measurement; Microstrip; Nanoelectronics; Prototypes; Silicon; Temperature; logic circuit; nanoscale architectures; spin waves.;
Conference_Titel :
Information Technology: New Generations, 2008. ITNG 2008. Fifth International Conference on
Conference_Location :
Las Vegas, NV
Print_ISBN :
0-7695-3099-0
DOI :
10.1109/ITNG.2008.39