Friday, May 7, 2010

Nanomagnetic Imaging

Superconductivity and Quantum Interference at the Nanoscale

Exploiting nanoscale interactions to design new multiferroics and magnetoelectrics

Magnetic Rings for Memory and Logic

Photon Science and the Coming Revolution Enabled by X-ray Free Electron Lasers

Ferromagnetic III-V Semiconductors

Holding Quantum Information in Electron Spins

Coherently Control of Photon Emission from Semiconductor Nanostructures

Manipulation of matter at the nanometer scale: the imaging revolution

Spintronics: a nanotechnology to control spin for normally-off-computer



Spintronics: Nanoscience and Nanoelectronics by H. Ohno

Wednesday, March 24, 2010

Laser Manipulation of Atoms and Spins by : Theo Rasing

Phantom ferromagnetism

From lodestone to spintronics and magnonics

Tuesday, March 23, 2010

Silicon Quantum Information Processing

Monday, March 22, 2010

New Spintronic Devices: Everspin Technologies

Racetrack Memory with Stuart Parkin

Saturday, October 17, 2009

Happy Deepawali (Festival of light)

Wednesday, October 14, 2009

'Magnetic electricity' discovered

a, In zero field, magnetic charges occur as bound pairs, but some dissociate to give a fluctuating magnetic moment (green arrow). b, The field energy -QBrz competes with the Coulomb potential -mu_0Q^2/4pi.r to lower the activation barrier to dissociation. c, The application of a transverse field causes dissociation as charges are accelerated by the field. d, In the applied field, these charges remain dissociated while more bound pairs form to restore equilibrium. Magnetic moment fluctuations due to free charges produce local fields that are detected by implanted muons (mu^+).
For details click here. More news Nature Wikipedia link PhysicsOrg Sciencenow Scientificamerican

Researchers have discovered a magnetic equivalent to electricity: single magnetic charges that can behave and interact like electrical ones.
The work is the first to make use of the magnetic monopoles that exist in special crystals known as spin ice. By engineering different spin ice materials to modify the ways monopoles move through them, the materials might in future be used in "magnetic memory" storage devices or in spintronics - a field which could boost future computing power.

Tuesday, October 13, 2009

Modern Ferrite Technology

Modern Ferrite Technology