collaborators

6 papers

quant-ph2026

Optically Resolved Excited State Hyperfine Structure of a Silicon Colour Centre in the Telecom Bands

Austin Woolverton, Nicholas Brunelle, Mehdi Keshavarz +8

Nuclear spin qubits in silicon offer exceptionally coherent quantum memory, and optically-interfaced spins are a promising platform for both quantum networking and distributed quan…

quant-ph2025

Computing Efficiently in QLDPC Codes

Alexander J. Malcolm, Andrew N. Glaudell, Patricio Fuentes +10

It is the prevailing belief that quantum error correcting techniques will be required to build a utility-scale quantum computer able to perform computations that are out of reach o…

quant-ph2025

Silicon T centre hyperfine structure and memory protection schemes

Nicholas Brunelle, Joshua Kanaganayagam, Mehdi Keshavarz +11

Combining the long-coherence of spin qubits and the capability to transmit information and entanglement through photons, spin-photon interfaces (SPIs) are a promising platform for…

quant-ph2025

Laser-induced spectral diffusion and excited-state mixing of silicon T centres

Camille Bowness, Simon A. Meynell, Michael Dobinson +11

To find practical application as photon sources for entangled optical resource states or as spin-photon interfaces in entangled networks, semiconductor emitters must produce indist…

quant-ph2025

Giant Isotope Effect on the Excited-State Lifetime and Emission Efficiency of the Silicon T Centre

Moein Kazemi, Mehdi Keshavarz, Mark E. Turiansky +5

Efficient single-photon emitters are desirable for quantum technologies including quantum networks and photonic quantum computers. We investigate the T centre, a telecommunications…

quant-ph2025

Electrically-triggered spin-photon devices in silicon

Michael Dobinson, Camille Bowness, Simon A. Meynell +10

Quantum networking and computing technologies demand scalable hardware with high-speed control for large systems of quantum devices. Solid-state platforms have emerged as promising…