New Measurements Show Spin Transistor is Within Reach
January 22, 2018 | University of GroningenEstimated reading time: 2 minutes
University of Groningen physicists Siddhartha Omar and professor Bart van der Wees have shown that it is possible to influence the lifetime of spin in graphene. They used tungsten disulfide to induce spin orbit coupling in graphene and were able to tune the effect with an electric field. This confirms that it is possible to make a graphene-based spin transistor, which is a vital component in spin-based electronics or spintronics.
Spinning electrons unleash microelectronics revolution
Spintronics could form a low-power alternative to electronic devices. It is based not on a charge current but on a current of electron spins. Bart van Wees, professor of Physics of Nanodevices at the University of Groningen: “The spin is a quantum mechanical property of electrons, which can best be imagined as small spheres spinning around their own axis, causing them to behave like small compass needles. This spin can assume two values, ‘up’ or ‘down’, which in principle makes it suitable for storing or transporting information.”
Manipulation
As graphene, the two-dimensional form of carbon, is an excellent conductor of spin currents, this material would be ideal for spintronics. However, it is very difficult to manipulate spin currents in graphene. Earlier work from the lab of Bart van Wees has shown that it is possible to affect spins in graphene by placing a layer of material containing heavy atoms on top of the graphene.
PhD student Siddhartha Omar placed a strip of graphene on top of a flake of tungsten disulfide. First, he investigated claims that spins are absorbed from graphene by the tungsten material. His measurements made it clear that this is not the case, but that the spin lifetime in graphene is reduced by the heavy atoms. “The electrons moving close to the tungsten atoms experience a “magnetic field”, which pulls on the electrons in the graphene and affects their spin direction.” This effect is called spin orbit coupling.
Magnetic Field
Next, he put a voltage on the device, creating an electric field. “With this field, we could change the direction of the “magnetic field” created by the tungsten material. And changing this magnetic field means applying a stronger or weaker spin orbit coupling. This means we could tune the lifetime of the spins in graphene.”
Although this was not done in the current experiments, shortening the lifetime of a spin current is a way of turning this current off. “So we have now shown that we are able to induce spin orbit coupling in graphene and use this to control spin relaxation time and thereby the spin current. These are the two basic requirements needed to make a spin transistor.” As far as he is aware, a proper spin transistor has never yet been realized. “But theoretical models predict how it can be done. And that will certainly be our next step.”o make this a reality.
Suggested Items
Groundbreaking Ceremony Marks the Beginning of a New Era for Newccess Industrial; The Construction of the MINGXIN Building
04/12/2024 | Newccess IndustrialOn a clear and sunny day in March, the groundbreaking ceremony for the MINGXIN Building took place in Shenzhen, China. This moment marked the official commencement of construction for a project that will reshape the semiconductor materials industry.
The Need for a Holistic Global Sustainability Standard
04/10/2024 | Michael Ford, Aegis SoftwareNo one can deny that the resources of our fragile planet are finite. The environment seems like a third party, subject to constant degradation. We’re acutely aware of the effects of pollution on our climate, and despite our “throw-away” culture, recycling and recovery of materials has remained relatively expensive, even as we use more energy just to survive.
Altus Group Celebrates 30 Years of Innovation with Scienscope
04/08/2024 | Altus GroupAltus Group, a prominent distributor of capital equipment within the electronics industry across the UK and Ireland, is pleased to commemorate the 30th anniversary of Scienscope International, a leading supplier of advanced inspection solutions.
iNEMI Publishes Four Roadmap Topics
04/04/2024 | iNEMIThe International Electronics Manufacturing Initiative (iNEMI) announces the availability of the first roadmap topics in the new iNEMI Roadmap format. Printed circuit boards, sustainable electronics, smart manufacturing, and mmWave materials and test are now available online.
Insulectro’s 'Storekeepers' Extend Their Welcome to Technology Village at IPC APEX EXPO
04/03/2024 | InsulectroInsulectro, the largest distributor of materials for use in the manufacture of PCBs and printed electronics, welcomes attendees to its TECHNOLOGY VILLAGE during this year’s IPC APEX EXPO at the Anaheim Convention Center, April 9-11, 2024.