|
| related topics |
| {level, atom, field} |
| {trap, ion, state} |
| {qubit, qubits, gate} |
| {spin, pulse, spins} |
| {state, phys, rev} |
| {error, code, errors} |
| {time, decoherence, evolution} |
| {light, field, probe} |
|
Scalable solid-state quantum processor using subradiant two-atom states
David Petrosyan, Gershon Kurizki
abstract: We propose a realization of a scalable, high-performance quantum processor
whose qubits are represented by the ground and subradiant states of effective
dimers formed by pairs of two-level systems coupled by resonant dipole-dipole
interaction. The dimers are implanted in low-temperature solid host material at
controllable nanoscale separations. The two-qubit entanglement either relies on
the coherent excitation exchange between the dimers or is mediated by external
laser fields.
- oai_identifier:
- oai:arXiv.org:quant-ph/0205174
- categories:
- quant-ph
- comments:
- 4 pages, 3 figures
- doi:
- 10.1103/PhysRevLett.89.207902
- arxiv_id:
- quant-ph/0205174
- journal_ref:
- Phys. Rev. Lett. 89, 207902 (2002)
- created:
- 2002-05-28
Full article ▸
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