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Quantum computing with trapped particles in microscopic potentials

Abstract:
We review recent proposals for performing entanglement manipulation via controlled interactions between trapped atoms. State-dependent, time-varying microscopic potentials allow one to obtain with high fidelity a conditional phase shift realizing a universal quantum gate. We discuss possible physical implementations with existing experimental techniques, for example optical lattices and magnetic micro-traps.
Publication status:
Published

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Journal:
FORTSCHRITTE DER PHYSIK-PROGRESS OF PHYSICS
Volume:
48
Issue:
9-11
Pages:
945-955
Publication date:
2000-01-01
DOI:
EISSN:
1521-3978
ISSN:
0015-8208
URN:
uuid:ad27a873-b4f8-4a0e-8744-d188153f15f9
Source identifiers:
3970
Local pid:
pubs:3970
Language:
English

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