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quant-ph2026

Spectral tuning of single T centres by the Stark effect

Michael Dobinson, Felix Hufnagel, Simon A. Meynell +8

Among the many solid-state emitters being explored for scalable quantum technologies, the silicon T centre is a leading candidate offering long-lived spin qubits, a telecommunicati…

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

Signal amplification in a solid-state quantum sensor via asymmetric time-reversal of many-body dynamics

Haoyang Gao, Leigh S. Martin, Lillian B. Hughes +8

Electronic spins of nitrogen vacancy (NV) centers in diamond constitute a promising system for micro- and nano-scale magnetic sensing, due to their operation under ambient conditio…

quant-ph2025

Spin squeezing in an ensemble of nitrogen-vacancy centers in diamond

Weijie Wu, Emily J. Davis, Lillian B. Hughes +10

Spin squeezed states provide a seminal example of how the structure of quantum mechanical correlations can be controlled to produce metrologically useful entanglement. Such squeeze…

quant-ph2025

Scalable, nanoscale positioning of highly coherent color centers in prefabricated diamond nanostructures

Sunghoon Kim, Paz London, Daipeng Yang +6

Nanophotonic devices in color center-containing hosts provide efficient readout, control, and entanglement of the embedded emitters. Yet control over color center formation - in nu…

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…