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Spintronics: Fundamentals and applications
Spintronics, or spin electronics, involves the study of active control and manipulation of spin degrees of freedom in solid-state systems. This article reviews the current status of this subject,…
Spintronics refers commonly to phenomena in which the spin of electrons in a solid state environment plays the determining role. In a more narrow sense spintronics is an emerging research field of…
New moves of the spintronics tango.
A brief overview of the connections between five emerging subfields suggests exciting things to come in spintronics.
Handbook of spin transport and magnetism
Introduction Historical Overview: From Electron Transport in Magnetic Materials to Spintronics Albert Fert Spin Transport and Magnetism in Magnetic Metallic Multilayers Basics of Nano-Thin Film…
Spin inversion in graphene spin valves by gate-tunable magnetic proximity effect at one-dimensional contacts
- Jinsong Xu, Simranjeet Singh, +4 authors R. Kawakami
- Physics, Materials ScienceNature Communications
- 21 February 2018
Gate-tunable spin transport in encapsulated graphene-based spin valves with one-dimensional ferromagnetic edge contacts with magnetization reversal by an applied magnetic field or a high-density spin-polarized current is demonstrated.
Phase-sensitive tests of the pairing state symmetry in Sr(2)RuO(4).
It is shown that an overlooked chiral spin-singlet pairing is also compatible with the observed phase shifts in Josephson junctions and proposed further experiments which would distinguish it from its spin-triplet counterpart.
Roadmap for Emerging Materials for Spintronic Device Applications
- A. Hirohata, H. Sukegawa, +4 authors R. Swaminathan
- Materials Science, PhysicsIEEE Transactions on Magnetics
- 16 July 2015
The Technical Committee of the IEEE Magnetics Society has selected seven research topics to develop their roadmaps, where major developments should be listed alongside expected timelines: 1) hard…
Tailoring ferromagnetic chalcopyrites
This work explores theoretically relationships within 64 members of a single materials class, the Mn-doped II-IV-V2 chalcopyrites, and reveals a variation of magnetic properties across different materials that cannot be explained by either of the two dominant models of ferromagnetism in semiconductor.