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On demand entanglement in double quantum dots via coherent carrier scattering

Academic Article
Publication Date:
2011
abstract:
We show how two qubits encoded in the orbital states of two quantum dots can be entangled or disentangled in a controlled way through their interaction with a weak electron current. The transmission/reflection spectrum of each scattered electron, acting as an entanglement mediator between the dots, shows a signature of the dot-dot entangled state. Strikingly, while a few scattered carriers produce decoherence of the whole two-dot system, a larger number of electrons injected from one lead with proper energy are able to recover its quantum coherence. Our numerical simulations are based on a real-space solution of the three-particle Schrodinger equation with open boundaries. The computed transmission amplitudes are inserted in the analytical expression for the system density matrix to evaluate the entanglement.
Document Type: Article
Iris type:
01.01 Articolo in rivista
Keywords:
DECOHERENCE; COMPUTATION; CONDUCTANCE; ENVIRONMENT; COMPUTER
List of contributors:
Bordone, Paolo; Bertoni, Andrea
Authors of the University:
BERTONI ANDREA
Handle:
https://iris.cnr.it/handle/20.500.14243/74191
Published in:
NEW JOURNAL OF PHYSICS
Journal
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URL

http://stacks.iop.org/1367-2630/13/i=1/a=013023
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