Silicon nanodevice qubits based on quantum dots and dopants
Quantum physics applied to computing is predicted to lead to revolutionary enhancements in computational speed and power. The interest in the implementation of an impurity spin based qubit in silicon for quantum computation is motivated by exceedingly long coherence times of the order of seconds, an...
Main Author: | Chatterjee, A. |
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Other Authors: | Morton, J. J. L. |
Published: |
University College London (University of London)
2017
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Online Access: | https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.746536 |
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