For the first time, physicists have convincingly demonstrated that physically separated particles in solid-state devices can be quantum-mechanically entangled. The achievement is analogous to the quantum entanglement of light, except that it involves particles in circuitry instead of photons in optical systems. Both optical and solid-state entanglement offer potential routes to quantum computing and secure communications, but solid-state versions may ultimately be easier to incorporate into electronic devices.
I try to post some interesting "any stuff" which I call "etc..." and QUITE SIMPLE physics
Showing posts with label superconductivity. Show all posts
Showing posts with label superconductivity. Show all posts
Wednesday, November 17, 2010
Friday, May 21, 2010
Vitaly Lazarevich Ginzburg
Thursday, September 17, 2009
U of S helps discover new family of superconductors
The superconductor family Tse discovered in conjunction with a number of international researchers is a group of hydrogen compounds known as molecular hydrides. Tse and graduate student Yansun Yao worked out the theoretical basis for the experiment as well as the key chemical structures involved, while German scientist Mikhail Eremets did the lab work.
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