topological quantum computers
GPTKB entity
Statements (94)
Predicate | Object |
---|---|
gptkbp:instance_of |
gptkb:Quantum_Computing
|
gptkbp:aims_to |
fault tolerance
|
gptkbp:application |
financial modeling
machine learning algorithms secure communication quantum information processing automated trading systems |
gptkbp:associated_with |
gptkb:quantum_entanglement
quantum networks quantum annealing quantum optics quantum algorithms research quantum research initiatives quantum topology quantum simulation techniques quantum technology advancements quantum computing research community |
gptkbp:based_on |
topological quantum computing
|
gptkbp:benefits |
energy efficiency
resilience to decoherence |
gptkbp:can_be_used_to |
gptkb:Majorana_fermions
|
gptkbp:can_involve |
non-abelian statistics
|
gptkbp:can_lead_to |
advancements in AI
new quantum algorithms new materials research |
gptkbp:can_provide |
new insights into quantum mechanics
|
gptkbp:challenges |
error rates
interdisciplinary collaboration scalability issues public understanding of technology material fabrication |
gptkbp:characterized_by |
topological order
|
gptkbp:currently_researching |
various platforms
|
gptkbp:dependency |
braiding of anyons
|
gptkbp:developed_by |
gptkb:Physics
|
gptkbp:enhances |
gptkb:machine_learning
gptkb:supply_chain_management data security network security data mining techniques |
gptkbp:facilitates |
high-performance computing
personalized medicine real-time data processing quantum simulations advanced manufacturing processes |
gptkbp:field_of_study |
gptkb:quantum_computing
|
https://www.w3.org/2000/01/rdf-schema#label |
topological quantum computers
|
gptkbp:impact |
gptkb:Telecommunications
computational complexity |
gptkbp:influence |
gptkb:quantum_cryptography
|
gptkbp:inspired_by |
topological phases of matter
|
gptkbp:is_compared_to |
conventional quantum computers
|
gptkbp:is_explored_in |
gptkb:Quantum_Computing
quantum algorithms condensed matter physics |
gptkbp:is_linked_to |
gptkb:quantum_field_theory
quantum teleportation quantum information theory quantum supremacy quantum sensors quantum communication systems quantum error correction techniques quantum chaos quantum cryptography research |
gptkbp:is_studied_in |
gptkb:physicists
mathematical physics |
gptkbp:is_subject_to |
experimental verification
|
gptkbp:may_aid_in |
gptkb:sustainable_development
drug discovery energy storage solutions climate modeling |
gptkbp:may_enable |
gptkb:smart_grid_technology
scalable quantum computing faster computations advanced simulations |
gptkbp:may_revolutionize |
gptkb:health_services
information technology transportation systems |
gptkbp:may_transform |
gptkb:cloud_computing
data analysis robotics technology digital communication. |
gptkbp:model |
gptkb:Kitaev_model
|
gptkbp:offers |
increased stability
|
gptkbp:proposed_by |
gptkb:Alexei_Kitaev
|
gptkbp:requires |
special materials
quantum gates |
gptkbp:research_focus |
quantum coherence
|
gptkbp:support |
biological modeling
complex system modeling |
gptkbp:underlying_principle |
topological invariance
|
gptkbp:utilizes |
anyons
|
gptkbp:bfsParent |
gptkb:Kitaev_model
|
gptkbp:bfsLayer |
6
|