Domain Wall Programmable Magnetic Logic
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References
1. G.A. Prinz, Magnetoelectronics. Science 282, 1660 (1998)
2. S.A. Wolf et al., Spintronics: a spin-based electronic vision for the future. Science 294, 1488
(2001)
3. A. Imre et al., Majority logic gate for magnetic quantum-dot cellular automata. Science 311,
205 (2006)
4. I. Amlani et al., Digital logic gate using quantum-dot cellular automata. Science 284, 289–291
(1999)
5. R.P. Cowburn, M.E. Welland, Room temperature magnetic quantum cellular automata. Science
287, 1466–1468 (2000)
6. D.A. Allwood et al., Submicrometer ferromagnetic NOT gate and shift register. Science 296,
2003–2006 (2002)
7. D.A. Allwood et al., Magnetic domain-wall logic. Science 309, 1688–1692 (2005)
8. S. Goolaup, M. Ramu, C. Murapaka, W.S. Lew, Transverse domain wall profile for logic
applications. Sci Rep 5, 9603 (2015)
9. P. Xu, et al. An all-metallic logic gate based on current-induced domain wall motion. Nat.
Nanotech. 3, 97–100 (2008)
10. G. Reiss et al., New materials and applications for magnetic tunnel junctions. Phys. Stat. Sol.
201, 1628–1634 (2004)
11. B. Behin-Aein, D. Datta, S. Salahuddin, S. Datta, Proposal for an all-spin logic device with
built-in memory. Nat. Nanotech. 5, 266–270 (2010)
12. S. Patil, A. Lyle, J. Harms, D. Lilja, J.-P. Wang, Spintronic logic gates for spintronic data using
magnetic tunnel junctions, in Proceedings of IEEE International Conference Computer Design,
pp. 125–131 (2010)
13. Z. Navabi, Digital Design and Implementation with Field Programmable Devices (Kulwer
Academic Publishers, Dordrecht, Netherlands, 2005)
14. A. Ney, C. Pampuch, R. Koch, K.H. Ploog, Programmable computing with a single
magnetoresistive element. Nature 425, 485–487 (2003)
15. H. Dery, P. Dalal, L. Cywinski, L.J. Sham, Spin-based logic in semiconductors for reconfigurable large-scale circuits. Nature 447, 573–576 (2007)
16. S. Joo et al., Magnetic-field-controlled reconfigurable semiconductor logic. Nature 494, 72–76
(2013)
17. S.S.P. Parkin, M. Hayashi, L. Thomas, Magnetic domain wall racetrack memory. Science 320,
190 (2008)
18. M. Hayashi, L. Thomas, R. Moriya, C. Rettner, S.S.P. Parkin, Current controlled magnetic
domain wall nanowire Shift register. Science 320, 209 (2008)
19. J.H. Franken, H.J.K. Swagten, B. Koopmans, Shift registers based on magnetic domain wall
ratchets with perpendicular anisotropy. Nat. Nanotech. 7, 499 (2012)
20. S. Glathe et al., Splitting of a moving transverse domain wall in a magnetic nanostripe in a
transverse field. Phys. Rev. B 81, 020412 (2010)
21. Tretiakov, O. A. et al. Dynamics of domain walls in magnetic nanostrips. Phys. Rev. Lett. 100,
127204 (2008)
22. T. Ono et al., Propagation of a magnetic domain wall in a submicrometer magnetic wire. Science
284, 468 (1999)
23. G.S.D. Beach et al., Dynamics of field driven domain wall propagation in ferromagnetic
nanowires. Nat. Mater. 4, 741 (2005)
24. X. Jiang et al., Enhanced stochasticity of domain wall in magnetic racetracks due to dynamic
pinning. Nat. Comm. 1, 25 (2010)
25. D. Atkinson et al., Magnetic domain wall dynamics in a submicrometer ferromagnetic structure.
Nat. Mater. 2, 85 (2003)
26. L.K. Bogart et al., Dependence of domain wall pinning potential landscapes on domain wall
chirality and pinning site geometry in planar nanowires. Phys. Rev. B 79, 054414 (2009)
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