activity
20242026
collaborators

7 papers

physics.optics2026

Visible Integrated Photonics with Tantalum Pentoxide

Sergei Nedić, Angus Gale, Hugo Quard +3

Developing chip-scale photonic platforms for the visible spectrum is essential for translating next-generation optical technologies. Here, we demonstrate that tantalum pentoxide Ta…

physics.optics2026

Engineering and Tuning of high quality hexagonal boron nitride nanophotonic resonators

Otto Cranwell Schaeper, Angus Gale, Nathan Coste +4

Van der Waals materials are offering intriguing opportunities as building blocks for advanced quantum information technologies and integrated quantum photonic systems. Critical to…

cond-mat.mtrl-sci2026

Twist-Controlled Modulation of Quantum Emitters in a Van der Waals Bilayer

Angus Gale, Seungjun Lee, Seungmin Park +7

Stacking and twisting two dimensional materials has garnered enormous attention across the condensed matter and the nanophotonic communities. The surge of interest stems from the e…

physics.optics2026

Coupling nitrogen vacancy centers in silicon carbide to nanophotonic resonators

Ivan Zhigulin, Konosuke Shimazaki, Samuel M. Stephens +5

Silicon carbide (SiC) is a promising platform for scalable quantum technologies owing to its well-established, wafer-scale industrial processing. SiC also hosts a variety of optica…

cond-mat.mtrl-sci2025

Quantum Emitters in Flux Grown hBN

Evan Williams, Angus Gale, Jake Horder +3

Hexagonal boron nitride (hBN) is an emerging material for use in quantum technologies, hosting bright and stable single photon emitters (SPEs). The B-center is one promising SPE in…

physics.optics2025

Quantum Emitters in Rhombohedral Boron Nitride

Angus Gale, Mehran Kianinia, Jake Horder +8

Rhombohedral boron nitride (rBN) is an emerging wide-bandgap van der Waals (vdW) material that combines strong second-order nonlinear optical properties with the structural flexibi…