New Study Achieves Coherent Manipulation of Electron Spins in Silicon

Electrons in silicon experience a coupling between their spin (up and down arrows) and valley states (blue and red orbitals). In the presence of a DC voltage (blue glow) an electron can undergo coherent spin-valley oscillation.

Researchers at the University of Rochester have recently introduced a new strategy to coherently manipulate either single or multiple electron spins in silicon quantum dots. This method, introduced in a paper published in Nature Physics, could open new possibilities for the development of reliable and highly performing quantum computers.

The post New Study Achieves Coherent Manipulation of Electron Spins in Silicon appeared first on HPCwire.

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