|
related topics |
{qubit, qubits, gate} |
{time, decoherence, evolution} |
{energy, state, states} |
{state, states, coherent} |
{operator, operators, space} |
{phase, path, phys} |
{temperature, thermal, energy} |
{state, phys, rev} |
{trap, ion, state} |
{field, particle, equation} |
{cos, sin, state} |
{cavity, atom, atoms} |
{error, code, errors} |
{group, space, representation} |
|
Quantum information processing in bosonic lattices
Radu Ionicioiu, Paolo Zanardi
abstract: We consider a class of models of self-interacting bosons hopping on a
lattice. We show that properly tailored space-temporal coherent control of the
single-body coupling parameters allows for universal quantum computation in a
given sector of the global Fock space. This general strategy for encoded
universality in bosonic systems has in principle several candidates for
physical implementation.
- oai_identifier:
- oai:arXiv.org:quant-ph/0204118
- categories:
- quant-ph
- comments:
- 4 pages, 2 figs, RevTeX 4; updated to the published version
- doi:
- 10.1103/PhysRevA.66.050301
- arxiv_id:
- quant-ph/0204118
- journal_ref:
- Phys.Rev. A66, 050301(R) (2002)
- created:
- 2002-04-19
- updated:
- 2002-11-08
Full article ▸
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