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Long-distance coherent coupling in a quantum dot array

delete2013-04-28
delete137
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OA
AI
F
Floris Braakman
P
Pierre Barthelemy
C
Christoph Reichl
W
W. Wegscheider
L
Lieven M. K. Vandersypen *
DOI:10.1038/NNANO.2013.67delete
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摘要

摘要

En 中文
Controlling long-distance quantum correlations is central to quantum computation and simulation. In quantum dot arrays, experiments so far rely on nearest-neighbour couplings only, and inducing long-distance correlations requires sequential local operations. Here, we show that two distant sites can be tunnel-coupled directly. The coupling is mediated by virtual occupation of an intermediate site, with a strength that is controlled via the energy detuning of this site. It permits a single charge to oscillate coherently between the outer sites of a triple dot array without passing through the middle, as demonstrated through the observation of Landau-Zener-Stuckelberg interference. The long-distance coupling significantly improves the prospects of fault-tolerant quantum computation using quantum dot arrays, and opens up new avenues for performing quantum simulations in nanoscale devices.
Keyword:
SPINS
QUBITS
CAVITY
COMPUTATION
GATE

期刊

Nature Nanotechnology 封面图
Nature Nanotechnology
IF:
34.9
论文数:
4.8K
被引数:
8.1W

机构

D
Delft University of Technology
学者数:
2.6W
论文数: 2.5W
被引数: 3.8W
S
swiss federal institutes of technology domain
学者数:
9.0W
论文数: 8.0W
被引数: 163
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