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Suguru Furuta, Crispin Barnes and Chris Doran
Single-qubit gates and measurements in the surface acoustic
wave quantum computer
Phys. Rev. B 70, 205320 (2004)
Abstract: In the surface acoustic wave quantum
computer, the spin state of an electron trapped in a moving quantum
dot comprises the physical qubit of the scheme. Via detailed analytic
and numerical modeling of the qubit dynamics, we discuss the effect
of excitations into higher-energy orbital states of the quantum
dot that occur when the qubits pass through magnetic fields. We
describe how single-qubit quantum operations, such as single-qubit
rotations and single-qubit measurements, can be performed using
only localized static magnetic fields. The models provide useful
parameter regimes to be explored experimentally when the requirements
on semiconductor gate fabrication and the nanomagnetics technology
are met in the future.
Available on: cond-mat/0406167
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