collaborators

18 papers

physics.optics2026

Nonlinearity Reversal in Epsilon-Near-Zero Indium Tin Oxide Driven by Few-Cycle Light Pulse

Mustafa Goksu Ozlu, Colton Fruhling, Ian Hoffman +4

Recent breakthrough studies of nonlinearities at extreme pump intensities (1 ) in transparent conducting oxides (TCOs) have rewritten our understanding of the…

physics.optics2026

Single-pump hybrid nonlinearities in transparent conductors

Wallace Jaffray, Sven Stengel, Alexandra Boltasseva +7

Low-index transparent conducting oxides have attracted significant attention because ultrafast optical excitation in these materials can induce exceptionally large temporal index g…

quant-ph2026

Anticipating Decoherence for Enhancing Coherence in Quantum Systems

Pranshu Maan, Yuheng Chen, Sean Borneman +6

Large-scale quantum systems require optical coherence between distant quantum devices, necessitating spectral indistinguishability. Scalable solid-state platforms offer promising r…

physics.optics2025

Pathway to Optical-Cycle Dynamic Photonics: Extreme Electron Temperatures in Transparent Conducting Oxides

Jae Ik Choi, Vahagn Mkhitaryan, Colton Fruhling +4

We theoretically demonstrate that transparent conducting oxides (TCOs) exhibit oscillatory and sign-reversing dynamic modulation in transmittance on the order of a few optical cycl…

cs.LG2025

PearSAN: A Machine Learning Method for Inverse Design using Pearson Correlated Surrogate Annealing

Michael Bezick, Blake A. Wilson, Vaishnavi Iyer +6

PearSAN is a machine learning-assisted optimization algorithm applicable to inverse design problems with large design spaces, where traditional optimizers struggle. The algorithm l…

quant-ph2025

Many-Body Entanglement in Solid-State Emitters

Emma Daggett, Christian M. Lange, Bennet Windt +23

The preparation and control of quantum states lie at the heart of quantum information science (QIS). Recent advances in solid-state quantum emitters (QEs) and nanophotonics have tr…