| related words |
| interactive |
| goldreich |
| michele |
| weaknesses |
| requested |
| intractability |
| soundness |
| papadimitriou |
| verifiers |
| adleman |
| servers |
| decodable |
| hardness |
| ronald |
| ettinger |
| rivest |
| decidable |
| shamir |
| randomize |
| certificate |
|
| related documents |
| Efficient Quantum Transforms [9702028v1] |
| Quantum Algorithms for Weighing Matrices and Quadratic Residues [0008059v3] |
| Adiabatic Quantum Computing for Random Satisfiability Problems [0206059v2] |
| No nonlocal box with uniform outputs is universal [0609166v1] |
| Minimum entangled state dimension required for pseudo-telepathy [0412136v2] |
| Dephasing due to Intermode Coupling in Superconducting Stripline
Resonators [0511033v2] |
| From quantum-codemaking to quantum code-breaking [9703035v1] |
| Why the quantum? [0402149v1] |
| A Practical Trojan Horse for Bell-inequality-based Quantum Cryptography [0111073v2] |
| SECOQC White Paper on Quantum Key Distribution and Cryptography [0701168v1] |
| Classicality of quantum information processing [0108102v2] |
| Coordinating quantum agents' perspectives: convex operational theories,
quantum information, and quantum foundations [0611110v1] |
| Shor's Quantum Factoring Algorithm [0010034v1] |
| Deterministic Secure Direct Communication Using Ping-pong protocol
without public channel [0301048v1] |
| How the no-cloning theorem got its name [0205076v1] |
| A common algebraic description for probabilistic and quantum computations [0212096v1] |
| Almost-Everywhere Superiority for Quantum Computing [9910033v4] |
| The lambda-q calculus can efficiently simulate quantum computers [9702057v1] |
| Efficient Quantum Algorithms for Estimating Gauss Sums [0207131v1] |
| Spectra of Quantized Walks and a $\sqrt{\delta\epsilon}$ rule [0401053v1] |
|
| related topics |
| {algorithm, log, probability} |
| {key, protocol, security} |
| {state, algorithm, problem} |
| {alice, bob, state} |
| {vol, operators, histories} |
| {state, states, coherent} |
| {theory, mechanics, state} |
| {let, theorem, proof} |
| {observables, space, algebra} |
| {photon, photons, single} |
| {cavity, atom, atoms} |
| {error, code, errors} |
| {qubit, qubits, gate} |
| {bell, inequality, local} |
| {energy, gaussian, time} |
| {group, space, representation} |
| {level, atom, field} |
| {light, field, probe} |
| {time, systems, information} |
| {time, decoherence, evolution} |
|