Properties (55)
Predicate | Object |
---|---|
gptkbp:instanceOf |
gptkb:concept
|
gptkbp:base |
computational complexity.
quantum_mechanics. quantum_theory. |
gptkbp:can_be |
gptkb:Google
|
gptkbp:challenges |
software development.
scalability. error rates. hardware limitations. quantum noise. |
gptkbp:consequences |
advancements in cryptography.
|
gptkbp:criticism |
claims of practical usefulness.
|
gptkbp:defines |
the point at which a quantum computer can perform a calculation that is infeasible for a classical computer.
|
gptkbp:electronic_systems |
Sycamore
|
gptkbp:environmental_impact |
logistics.
artificial intelligence. materials science. finance. pharmaceuticals. |
gptkbp:fieldOfStudy |
quantum_mechanics
|
gptkbp:first_appearance |
2019
|
gptkbp:future_plans |
solving complex problems.
|
https://www.w3.org/2000/01/rdf-schema#label |
quantum supremacy
|
gptkbp:is_a_key_player_in |
gptkb:D-Wave_Systems
gptkb:IBM gptkb:Microsoft Rigetti Computing |
gptkbp:judges |
data privacy.
accessibility. military applications. security. job displacement. |
gptkbp:notableWork |
random circuit sampling.
|
gptkbp:opposedBy |
classical computing
|
gptkbp:public_perception |
skepticism.
excitement. hype. |
gptkbp:related_to |
gptkb:quantum_computing
decoherence. superposition. quantum_advantage. quantum_bits_(qubits). quantum_entanglement. |
gptkbp:research_areas |
quantum_algorithms.
|
gptkbp:significance |
demonstrates the potential of quantum computing.
|
gptkbp:technology |
quantum annealing.
quantum key distribution. quantum_cryptography. quantum_algorithms. quantum_communication. quantum_error_correction. quantum_networking. quantum_sensors. quantum_simulation. quantum_teleportation. |