| related words |
| bremner |
| factorisation |
| compiler |
| initialised |
| onequbit |
| haselgrove |
| assemble |
| reused |
| moores |
| controllednot |
| simulators |
| programmed |
| cancelling |
| exploitation |
| unsuccessful |
| dawson |
| temporary |
| littlewood |
| singlequbit |
| exhaustively |
|
| related documents |
| An introduction to measurement based quantum computation [0508124v2] |
| Spin-1/2 particles moving on a 2D lattice with nearest-neighbor
interactions can realize an autonomous quantum computer [0506270v2] |
| Fast and robust two-qubit gates for scalable ion trap quantum computing [0306006v1] |
| Optimal quantum circuits for general phase estimation [0609160v1] |
| Coin Tossing is Strictly Weaker Than Bit Commitment [9810067v3] |
| Mesoscopic interference [0105110v1] |
| Quantum cellular automata quantum computing with endohedral fullerenes [0210202v1] |
| Pole_Factorization Theorem in Quantum Electrodynamics [9601008v1] |
| Multiple Particle Interference and Quantum Error Correction [9601029v3] |
| Scalable Error Correction in Distributed Ion Trap Computers [0606226v1] |
| Deterministic constant-temperature dynamics for dissipative quantum
systems [0701242v2] |
| Quantum Electrodynamics at Large Distances I: Extracting the
Correspondence-Principle Part. [9503002v1] |
| Solvable PT-symmetric model with a tunable interspersion of non-merging
levels [0410196v2] |
| Do quantum states evolve? Apropos of Marchildon's remarks [0307113v1] |
| Unambiguous discrimination among oracle operators [0702245v5] |
| On the practicality of time-optimal two-qubit Hamiltonian simulation [0303070v1] |
| Parallel Quantum Computation and Quantum Codes [9808027v1] |
|
| related topics |
| {qubit, qubits, gate} |
| {state, algorithm, problem} |
| {temperature, thermal, energy} |
| {vol, operators, histories} |
| {equation, function, exp} |
| {key, protocol, security} |
| {measurement, state, measurements} |
| {particle, mechanics, theory} |
| {trap, ion, state} |
| {time, decoherence, evolution} |
| {operator, operators, space} |
| {energy, state, states} |
| {classical, space, random} |
| {spin, pulse, spins} |
| {time, systems, information} |
| {wave, scattering, interference} |
| {energy, gaussian, time} |
| {theory, mechanics, state} |
| {error, code, errors} |
| {cos, sin, state} |
|