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Physics: Quantum Technology
People
Engineering Science
Physics
Chemistry: Photonics and Sensing
Physics: Quantum Matter Theory
Mathematics
Computer Science
Materials
Physics: Quantum Networks
Statistics
Biochemistry
Chemistry
Chemistry: Modelling Quantum Systems
Chemistry: Quantum Materials
Quantum Dynamics and Controlling Quantum Systems
Research Areas
Quantum Technologies for Fundamental Physics
Spin Chemistry, CAESAR EPR Facility
Magnetic Sensing and Spin Correlation
Quantitative Molecular Sensing
Molecular Switches and Sensors
Microcavity Chemical Sensing
Witnessed Quantum Measurement
Measurement-induced Quantum Steering
Quantum Spin Chains
Quantum Magnetism and Quantum Phase Transitions
Quantum Chaos
Quantum Many-body Localisation
Topological Quantum Matter
Secure Quantum Communication and Computation
Studies of Randomness
Quantum Chaos, quantum systems, random matrix theory
Computer Science: Research
Quantum Technology Theory
Quantum Information Processing
Quantum Systems Engineering
Climate Modelling
Quit Programming Protocols
Statistics: Computational Molecular Biology
Biochemistry: Computational Molecular Biology
Quantum Simulations for Chemical Applications
Quantum Magnetoreception
Quantum processes in macromolecular systems
Machine Learning Approaches to Materials Modelling
Electronic Structure of Molecules and Solids
Electronic Structure of Biomimetic Materials
Strongly Correlated Systems
Dipolar Quantum Gases
Ultracold Quantum Matter
Strong Quantum Fluids
Correlated Electron Fluids
Correlated Superconductors
Ultra-high Field Quantum Matter
Quantum Spin Liquids
Quantum Magnonics
Quantum Spin Dynamics
Dynamical Quantum Magnets
Visualizing Quantum Matter
Quantum and Topological Magnetism
Magnetic Monopole Fluids
New Materials: superconductors, magnetic materials
New Materials: multiferroics, magnetic materials
Structure and Disorder in Functional Materials
Single Molecule Charge Transport
State-resolved Reaction Dynamics
Femtosecond Time-resolved Dynamics
Photo-induced Reaction Dynamics
Quantum Dynamics Simulation
Quantum Software and Compilers
Quantum Natural Language Processing
Quantum Computing and Programming Languages
Quantum Causal Modelling
Photonic Nanomaterials
Ion-trap Quantum Devices
Superconducting Quantum Devices
Photonic Quantum Devices
Atomic-Photonic Quantum Devices
Spintronics
Fabrication for Quantum Technologies
Quantum Communications
Quantum Device Control
Events
Where can we find practical quantum advantage in computational chemistry?
Condensed Matter Theory
Ramin Golestanian
Ard Louis
Julia Yeomans
Condensed Matter Theory
Muons and Magnets
Electronic Structures and Photoemission Spectroscopy
Yulin Chen
Applied Superconductivity
Oxide Electronics
Thorsten Hesjedal
Radu Coldea
Quantum Matter in High Magnetic Fields
Junjie Liu
Materials Discovery and Growth
Macroscopic Quantum Matter
Seamus Davis
X-Ray and Neutron Scattering
Dharmalingam Prabhakaran
Quantum Circuit Synthesis
Robert Smith
Carolyn Ten Holter
Frequency multiplexed photon pair source and its optical interface with Tm-based quantum memory
Quantum Matter and Quantum Phase Transitions
Correlated Electron Systems
Moon-Sun Nam
Dorian Gangloff
Assessing requirements to scale to practical quantum advantage
Resource-frugal Hamiltonian eigenstate preparation via repeated quantum phase estimation measurements
"Quantum computing is the key to consciousness"
News
New Quantum AI Podcast Launched
Generation and use of highly entangled photons from semiconductor quantum dots
Quantum computers for weather and climate prediction
Entangled photon factories and multinuclear gates for quantum networks and computing
Dissipative ground state preparation and Dissipative Quantum Gibbs Sampling
Oxford Quantum Day 2023
Oxford Quantum Day 2022
Oxford Quantum Day 2023
Balint Koczor
Applied Quantum Computing
The Virtual Quantum Device (VQD): A tool for detailed emulation of quantum computers
Oxford Mosaic Accessibility Statement
Exploring Hole Spin Qubits – Fast, hot, and reproducible?
Anisotropic exchange interaction of two hole spin qubits in silicon FinFETs
Towards a Carbon Nanotube Nanomechanical Qubit
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