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20242026
most citedControlling coherence between waveguide-coupled quantum dots

3 citations · 3 across the 2 of their papers we have counts for

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physics.optics2026

Near-Field Characterisation of Guided Modes in WS2 Nanobeams and Quasi-Bulk Crystals

Zara S. Taylor, Luke M. Hallacy, Xuerong Hu +7

The exceptionally high in-plane refractive index, low sub-bandgap absorption, and strong optical anisotropy of WS2 make it a promising material platform for next-generation integra…

physics.optics2025

Chiral Quantum Optics with Scalable Quantum Dot Dimers

L. Hallacy, D. Hallett, A. Fenzl +8

We present a scalable method for electrically tuning multiple spatially separated quantum dots embedded in photonic crystal waveguides. Ion implantation into the top p-doped layer…

physics.optics2025

Topological and conventional nano-photonic waveguides for directional integrated quantum optics

N. J Martin, M. Jalali Mehrabad, X. Chen +12

Chirality in integrated quantum photonics has emerged as a promising route towards achieving scalable quantum technologies with quantum nonlinearity effects. Topological photonic w…

physics.optics2025

Electro-mechanically tunable, waveguide-coupled photonic-crystal cavities with embedded quantum dots

Luke A. F. Brunswick, Luke Hallacy, René Dost +3

On-chip micro-cavities with embedded quantum emitters provide an excellent platform for high-performance quantum technologies. A major difficulty for such devices is overcoming the…

physics.optics2025

Purcell-Enhanced, Directional Light-Matter Interaction in a Waveguide-Coupled Nanocavity

Nicholas J. Martin, Dominic Hallett, Mateusz Duda +9

We demonstrate electrically tunable, spin-dependent, directional coupling of single photons by embedding quantum dots (QDs) in a waveguide-coupled nanocavity. The directional behav…

physics.optics2024

Nonlinear Quantum Optics at a Topological Interface Enabled by Defect Engineering

L. Hallacy, N. J. Martin, M. Jalali Mehrabad +11

The integration of topology into photonics has generated a new design framework for constructing robust and unidirectional waveguides, which are not feasible with traditional photo…