WQI supports robust experimental activity on three of the most prominent physical qubit implementations: neutral atoms, silicon quantum dots and superconducting qubits.
Quantum sensors, such as NV-centers, enable precision that cannot be matched using classical methods, and research in the WQI focuses on applications as diverse as chemical and gravitational sensing.
Quantum materials display behavior that is both startling in its elegance and useful in its applications, with research in the WQI ranging from flexible, two-dimensional materials to sophisticated epitaxial crystal growth.
WQI works to ensure that advancements in quantum technologies benefit society and contribute to fields such as agriculture, manufacturing, energy, healthcare, financial services and cybersecurity.
Quantum Innovation (Computing & Platforms)
Quantum computing research at WQI focuses on the design and implementation of superconducting, semiconducting and neutral atom qubits. Research also includes algorithmic design for quantum computation on discrete qubit- and continuous qudit-based quantum architectures.
Quantum Sensing (Measurement & Detection)
Quantum sensing makes use of the unique and counter-intuitive properties of matter and light when it is governed by quantum physics, such as quantization of energy levels, particle-wave duality, coherent superposition, and entanglement, to make precision sensors and measurements.
Quantum Applications
Coming soon.....