Andreas Glatz Veniamin I. Kozub Valerii M. Vinokur
A new science emerges at the intersection of modern physics, computer s- ence, andmaterialscience. Thestruggletofurtherminiaturizeisputtingna- technology to the verge of creating single-electron and/or single-spin devices that operate by moving a single electron (spin) and can serve as transistors, memory cells, and for logic gates. These devices take advantage of quantum physics that dominates nanometer size scales. The devices that utilize met- based hybrid nanostructures may possess signi?cant advantages over those exploiting purely semiconducting materials. First, the chemistry of metals...
A new science emerges at the intersection of modern physics, computer s- ence, andmaterialscience. Thestruggletofurtherminiaturizeisputtingna- technol...
Andreas Glatz Veniamin I. Kozub Valerii M. Vinokur
A new science emerges at the intersection of modern physics, computer s- ence, andmaterialscience. Thestruggletofurtherminiaturizeisputtingna- technology to the verge of creating single-electron and/or single-spin devices that operate by moving a single electron (spin) and can serve as transistors, memory cells, and for logic gates. These devices take advantage of quantum physics that dominates nanometer size scales. The devices that utilize met- based hybrid nanostructures may possess signi?cant advantages over those exploiting purely semiconducting materials. First, the chemistry of metals...
A new science emerges at the intersection of modern physics, computer s- ence, andmaterialscience. Thestruggletofurtherminiaturizeisputtingna- technol...