collaborators

5 papers

cond-mat.mtrl-sci2026

Charge-state control of carbon-related optical absorption in AlN

Helen C. Robinson, Daniil Danilin, Md Shafiqul Islam Mollik +5

Sub-bandgap optical absorption in AlN between 2 eV and 4 eV is widely observed, but its microscopic origin remains contested. Using photo-induced electron paramagnetic resonance (p…

cond-mat.mtrl-sci2026

Self-compensation by silicon centers in ultrawide-bandgap nitrides

John L. Lyons, Darshana Wickramaratne

\textit{DX} behavior limits -type carrier concentrations in ultrawide-bandgap nitrides such as aluminum nitride (AlN) and cubic boron nitride (-BN). Instead of acting as effe…

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…

cond-mat.mtrl-sci2025

Machine Learning Phonon Spectra for Fast and Accurate Optical Lineshapes of Defects

Mark E. Turiansky, John L. Lyons, Noam Bernstein

The optical properties of defects in solids produce rich physics, from gemstone coloration to single-photon emission for quantum networks. Essential to describing optical transitio…

cond-mat.mtrl-sci2025

Approximate Excited-State Potential Energy Surfaces for Defects in Solids

Mark E. Turiansky, John L. Lyons

A description of electron-phonon coupling at a defect or impurity is essential to characterizing and harnessing its functionality for a particular application. Electron-phonon coup…