| related words |
| holonomy |
| holonomies |
| cloner |
| berrys |
| anandan |
| homotopy |
| wilczek |
| sjqvist |
| entwined |
| pachos |
| adiabaticity |
| ericsson |
| enclosed |
| centroid |
| rasetti |
| polygon |
| carollo |
| bargmann |
| wilson |
| bhandari |
|
| related documents |
| Quantum Holonomies for Quantum Computing [0007110v2] |
| Decoherence Correction by the Zeno Effect and Non-Holonomic Control [0211003v1] |
| Evaluating holonomic quantum computation: beyond adiabatic limitation [0208120v1] |
| Adiabatic Approximation for weakly open systems [0504046v2] |
| Spin-1/2 particles moving on a 2D lattice with nearest-neighbor
interactions can realize an autonomous quantum computer [0506270v2] |
| Abelian and non-Abelian geometric phases in adiabatic open quantum
systems [0507012v3] |
| Quantum gates with topological phases [0304199v1] |
| Holonomic quantum computation in decoherence-free subspaces [0506086v2] |
| Semiconductor-based Geometrical Quantum Gates [0207019v2] |
| Quantum Equivalence Principle for Path Integrals in Spaces with
Curvature and Torsion [9511020v1] |
| Holonomic Quantum Computation Using Rf-SQUIDs Coupled Through A
Microwave Cavity [0407069v2] |
| Holonomic Quantum Computation [9904011v3] |
| Non-adiabatic geometrical quantum gates in semiconductor quantum dots [0301089v1] |
| Holonomic Quantum Computation [0504205v1] |
| Isoholonomic Problem and Holonomic Quantum Computation [0505033v1] |
| Robustness of adiabatic quantum computation [0108048v1] |
| Berry phase in a composite system [0309053v3] |
| Proposal for measurment of harmonic oscillator Berry phase in ion traps [0006112v3] |
| Quantum optical implementation of quantum information processing [0405030v1] |
| Exact solution of qubit decoherence models by a transfer matrix method [0511021v2] |
|
| related topics |
| {phase, path, phys} |
| {state, algorithm, problem} |
| {operator, operators, space} |
| {state, phys, rev} |
| {time, decoherence, evolution} |
| {cos, sin, state} |
| {qubit, qubits, gate} |
| {trap, ion, state} |
| {let, theorem, proof} |
| {equation, function, exp} |
| {cavity, atom, atoms} |
| {time, wave, function} |
| {error, code, errors} |
| {spin, pulse, spins} |
| {group, space, representation} |
| {states, state, optimal} |
| {classical, space, random} |
| {level, atom, field} |
| {energy, state, states} |
| {time, systems, information} |
|