collaborators

13 papers

quant-ph2026

Full-wave nonlinear microscopy reveals guided channel for ultrafast polariton transport

Qingyi Zhou, Piper Fowler-Wright, Zongfu Yu +2

We show how finite-difference time-domain (FDTD) simulations can be extended to model ultrafast nonlinear microscopy, enabling the prediction of spatially-resolved pump--probe sign…

quant-ph2026

Mapping molecular polariton transport via pump-probe microscopy

Piper Fowler-Wright, Michael Reitz, Joel Yuen-Zhou

We demonstrate how the transport properties of molecular polaritons in optical cavities can be extracted from a microscopic modeling of pump-probe spectroscopy. Our approach combin…

physics.optics2026

Hidden optical nonlinearities in linear spectra of quantum emitter arrays

Sricharan Raghavan-Chitra, Arghadip Koner, Joel Yuen-Zhou

Classical optical frameworks such as the discrete dipole approximation (DDA) assume that the linear spectrum of coupled quantum emitters can be computed solely from the linear susc…

quant-ph2026

Multidimensional semiclassical single- and double-quantum spectroscopy of anharmonic molecular polaritons

Michael Reitz, Harsh Bhakta, Wei Xiong +1

We present a general and efficient approach to compute phase-resolved multidimensional spectra of anharmonic molecular polaritons, based on a semiclassical evolution of the molecul…

quant-ph2026

Permutationally symmetric molecular aggregates

Sricharan Raghavan-Chitra, Arghadip Koner, Joel Yuen-Zhou

Linear optical spectra of molecular aggregates are often approximated by classical optics methods such as the discrete-dipole approximation (DDA), coherent exciton scattering (CES)…

quant-ph2026

Quantum theory of surface lattice resonances

Michael Reitz, Stephan van den Wildenberg, Arghadip Koner +2

The collective interactions of nanoparticles arranged in periodic structures give rise to high- in-plane diffractive modes known as surface lattice resonances. While these reson…