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Showing posts with label spintronics. Show all posts
Showing posts with label spintronics. Show all posts

2010-03-09

Novel material paves the way for next-generation information technology

From PhysOrg.com:

University of Queensland researchers have successfully demonstrated a futuristic semiconductor technology that will pave the way for the next generation of electrical and information technology systems.
Full article


2009-12-09

Toshiba develops essential technology for spintronics-based MOS field-effect transistor

From PhysOrg.com:

Toshiba Corporation today announced that it has developed MOSFET cell based on spin transport electronics, or spintronics, an advanced semiconductor technology that makes use of the spin and magnetic moment inherent in electrons. Toshiba has fabricated a spintronics cell and verified its stable performance for the first time, and will present full details of the cell and its technologies on December 7 (EST), at the International Electronics Devices Meeting in Baltimore, Maryland, U.S.A.
Full article


2009-11-27

Spin polarization achieved in room temperature silicon

From PhysOrg.com:

A group in The Netherlands has achieved a first: injection of spin-polarized electrons in silicon at room temperature. This has previously been observed only at extremely low temperatures, and the achievement brings spintronic devices using silicon as a semiconductor a step closer.
Full article


2009-10-27

Researchers create all-electric spintronics

From PhysOrg.com:

Until now, scientists have attempted to develop spin transistors by incorporating local ferromagnets into device architectures. This results in significant design complexities, especially in view of the rising demand for smaller and smaller transistors," says Philippe Debray, research professor in the Department of Physics in the McMicken College of Arts & Sciences. "A far better and practical way to manipulate the orientation of an electron's spin would be by using purely electrical means, like the switching on and off of an electrical voltage. This will be spintronics without ferromagnetism or all-electric spintronics, the holy grail of semiconductor spintronics."
Full article


2009-09-18

SKoreans demonstrate spin-injected field effect transistor

From PhysOrg.com:

Researchers at the state-run Korea Institute of Science and Technology (KIST) said the new transistor uses not only the on-off state of electric current but also electrons' spinning directions -- clockwise and counter-clockwise -- to handle information. It consumes less energy than existing semiconductors and opens the way for no-booting computers.
Full article


2009-09-09

Proposed Quantum Computer Consists of Billions of Electron Spins

From PhysOrg.com:

While researchers have already demonstrated the building blocks for few-bit quantum computers, scaling these systems up to large quantum computers remains a challenge. One of the biggest problems is developing physical systems that can reliably store thousands of qubits, and enabling bits and pairs to be addressed individually for gate operations.
Full article


2009-08-20

Let there be light: Teaching magnets to do more than just stick around

From PhysOrg.com:

"This provides a completely new approach to microelectronics, if you can use spin instead of charge to process information and use photons to manipulate that process," Gamelin said. "It opens the door to materials that store information and perform logic functions at the same time without the need for super cooling."
Full article


2009-06-15

New exotic material could revolutionize electronics

From PhyOrg.com:

Move over, silicon—it may be time to give the Valley a new name. Physicists at the Department of Energy's (DOE) SLAC National Accelerator Laboratory and Stanford University have confirmed the existence of a type of material that could one day provide dramatically faster, more efficient computer chips.
Full article


2009-04-02

Keep on spinning: A persistent spin state that could revolutionize spintronics

From PhyOrg.com:

By controlling the collective spin state of highly mobile electrons in semiconductors, researchers in the Materials Sciences Division (MSD) at the U.S. Department of Energy's Lawrence Berkeley National Laboratory have taken a major step forward in the technology of spintronics. At the same time they have discovered a new conservation law, an important advance in fundamental physics.
Full article


2009-03-11

Physicist develops battery using new source of energy

From PhyOrg.com:

Researchers at the University of Miami and at the Universities of Tokyo and Tohoku, Japan, have been able to prove the existence of a "spin battery," a battery that is "charged" by applying a large magnetic field to nano-magnets in a device called a magnetic tunnel junction (MTJ). The new technology is a step towards the creation of computer hard drives with no moving parts, which would be much faster, less expensive and use less energy than current ones. In the future, the new battery could be developed to power cars.
Full article


2007-12-03

Scientists generate, modulate, and electrically detect pure spin currents in silicon


Scientists generate, modulate, and electrically detect pure spin currents in silicon from PhysOrg.com

Scientists at the Naval Research Laboratory (NRL) have generated, modulated and electrically detected a pure spin current in silicon, the semiconductor used most widely in the electronic device industry. Magnetic contacts on the surface of an n-type silicon layer enable generation of a spin current which flows separately from a charge current.

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