Quantum Annealers

GPTKB entity

Properties (53)
Predicate Object
gptkbp:instanceOf gptkb:physicist
gptkbp:appearsIn Finance
Logistics
Machine Learning
Pharmaceuticals
Material Science
gptkbp:designedFor Optimization Problems
gptkbp:developedBy gptkb:D-Wave_Systems
gptkbp:has Hybrid Algorithms
Quantum_States
gptkbp:hasRelatedPatent Artificial Intelligence
https://www.w3.org/2000/01/rdf-schema#label Quantum Annealers
gptkbp:integration Classical_Systems
gptkbp:isAccessibleBy gptkb:Quantum_Gate_Computers
gptkbp:isAssociatedWith Statistical Mechanics
Quantum_Information_Theory
Complex_Systems
gptkbp:isBasedOn gptkb:Adiabatic_Quantum_Computing
gptkbp:isCounteredBy Routing Problems
Scheduling Problems
Resource Allocation Problems
gptkbp:isEvaluatedBy Performance Metrics
Benchmarking Techniques
gptkbp:isExploredIn gptkb:Quantum_Error_Correction
gptkb:Quantum_Networks
gptkb:Quantum_Algorithms
gptkb:Quantum_Complexity_Theory
gptkb:Quantum_Communication
gptkb:Quantum_Cryptography
Quantum_Hardware
Quantum_Simulation
Quantum_Software
Quantum_Applications
Quantum_Control
gptkbp:isInfluencedBy Computer Science
Mathematics
Quantum_Theory
gptkbp:isPartOf Quantum_Computing_Ecosystem
gptkbp:isSubjectTo Research_and_Development
gptkbp:isUsedBy Research Institutions
Corporations
gptkbp:isUsedFor Combinatorial Optimization
Sampling Problems
gptkbp:isVisitedBy Noise
Decoherence
gptkbp:mayHave NP-hard_Problems
gptkbp:offers Speedup over Classical Methods
gptkbp:operatesIn Qubits
gptkbp:relatedTo Classical Annealers
gptkbp:requires Low Temperature
gptkbp:uses gptkb:Quantum_Mechanics
gptkbp:utilizes gptkb:Quantum_Tunneling
Quantum_Superposition