collaborators

6 papers

cond-mat.quant-gas2026

Giant critical response in a driven-dissipative quantum gas

Ross C. Schofield, Daniel Lim, Himadri S. Dhar +6

Systems close to a phase transition turn weak perturbations into large responses. At equilibrium, this amplification is closely linked to criticality: fluctuations grow, dynamics s…

quant-ph2026

Indistinguishablity from dephased emitters using combined plasmonic-dielectric cavities

Anastasios Fasoulakis, Ross C. Schofield, Rupert F. Oulton +1

The concept of cavity funneling has emerged recently as a promising route towards creating indistinguishable photons from highly dephased emitters. So far, all suggested solutions…

physics.optics2025

Phase-Matching-Free Sensing with Undetected Light Using a Nonlinear Thin-Film Metasurface

Toby Severs Millard, Nathan Gemmell, Ross C. Schofield +4

In this article, we report classical sensing with undetected light at a wavelength of 1500 nm, detected on a silicon camera at 580 nm, using four-wave mixing from a plasmonic metas…

physics.optics2025

A Semiconductor Photon Bose-Einstein Condensate as a Practical Light Source for Ranging Finding

Ross C. Schofield, Daniel Lim, Nathan R. Gemmell +5

Here we report the measurement of thermal photon statistics from a semiconductor photon Bose-Einstein condensate operating just above the condensation threshold. We identify a regi…

physics.optics2025

Photon Bose-Einstein Condensation in Semiconductors: A Quantum Kinetic Theory

José L. Figueiredo, Ross C. Schofield, Ming Fu +4

Photon condensation in semiconductor microcavities is a transformative technique for engineering quantum states of light at room temperature by tailoring strong but incoherent ligh…

physics.optics2025

Optical and electrical probing of plasmonic metal-molecule interactions

Andrei Stefancu, Wenxuan Tang, Ming Fu +9

Plasmonic nanostructures enable efficient light-to-energy conversion by concentrating optical energy into nanoscale volumes. A key mechanism in this process is chemical interface d…