Semiconductor quantum computer design with 100 nm separation of nuclear-spin qubits
Quantum Physics
2016-02-23 v1 Mesoscale and Nanoscale Physics
Abstract
We combine elements of the 1998 quantum computing proposals by Privman, Vagner and Kventsel, and by Kane, with the new idea of nuclear-spin qubit interactions mediated indirectly via the bound outer electrons of impurity atoms whose nuclear spins 1/2 are the qubits. These electrons, in turn, interact via the two-dimensional electron gas in the quantum Hall effect regime. The resulting quantum computing scheme retains all the gate-control and measurement aspects of the proposal by Kane, but allows qubit spacing at distances of order 100 nm, attainable with the present-day semiconductor-heterostructure device technologies.
Cite
@article{arxiv.quant-ph/0103116,
title = {Semiconductor quantum computer design with 100 nm separation of nuclear-spin qubits},
author = {Vladimir Privman and Dima Mozyrsky},
journal= {arXiv preprint arXiv:quant-ph/0103116},
year = {2016}
}
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