Adiabatic Quantum Computation

GPTKB entity

Properties (51)
Predicate Object
gptkbp:instanceOf gptkb:physicist
gptkbp:appliesTo cryptography
gptkbp:basedOn energy gaps
gptkbp:can_be classical algorithms
Ising model problems
quantum_speedup
gptkbp:has_implications_for NP-hard_problems
gptkbp:hasPrograms machine learning
quantum_state_preparation
transitions_between_Hamiltonians
https://www.w3.org/2000/01/rdf-schema#label Adiabatic Quantum Computation
gptkbp:impact error correction techniques
thermal noise
quantum_decoherence
gptkbp:influenced quantum_tunneling
gptkbp:involves slowly_varying_Hamiltonians
gptkbp:is_a quantum annealing
computational model
quantum_computing_research
gptkbp:is_a_document_that exploits quantum mechanics
preserves quantum coherence
gptkbp:is_a_model_for can_be_used_to_study_quantum_systems.
gptkbp:is_a_platform_for quantum_problem_solving
gptkbp:is_a_subject_of theoretical research
has theoretical implications
quantum_physics
quantum_algorithms
gptkbp:is_a_time_for finding ground states
quantum_optimization
gptkbp:is_characterized_by ground state evolution
gptkbp:is_recognized_for D-Wave systems
gptkbp:is_studied_in gptkb:quantum_supremacy
adiabatic perturbation theory
quantum_information_theory
gptkbp:is_supported_by gptkb:quantum_annealers
gptkbp:is_used_in complex systems
solving optimization problems
quantum_simulations
gptkbp:isConnectedTo quantum phase transitions
gptkbp:opposedBy gate-based quantum computing
gptkbp:related_to topological quantum computing
classical computation
quantum_entanglement
gptkbp:requires initial ground state preparation
gptkbp:research_areas quantum_technology
gptkbp:technique can be implemented in various architectures
minimizes energy transitions
requires precise control of parameters
utilizes_quantum_states
gptkbp:usedIn quantum_mechanics
gptkbp:uses adiabatic theorem