collaborators

6 papers

quant-ph2026

Classifying Topology via Edge-State Pure Thermalization

Fatih Ozaydin, Haydar Sahin, Armando Perez-Leija +4

Repeated-interaction machines distinguish heat-like from work-like resources through the steady states they generate, but whether topology can control this distinction remains unkn…

physics.optics2025

Thermalization of quantum light induced by classical nonlinear wave dynamics

Fouad Chahrour, Şahin K. Ozdemir, Kurt Busch +2

Thermalization of isolated quantum systems is an intriguing phenomenon at the forefront of contemporary physics. In this work, we demonstrate that nonlinear multimode optical platf…

physics.optics2025

Non-Hermitian topological filters

Vinzenz Zimmermann, Amin Hashemi, Kurt Busch +2

We introduce a non-Hermitian photonic filter that harnesses dissipation to selectively isolate a desired topological state. In science and engineering, dissipation is often used to…

quant-ph2025

High-dimensional topological photonic entanglement

M. Javad Zakeri, Armando Perez-Leija, Andrea Blanco-Redondo

The robust generation and manipulation of high-dimensional quantum states lies at the heart of modern quantum computation. The use of topology to resiliently encode and transport q…

quant-ph2025

Odd and even photon-subtracted two-mode squeezed vacuum states

Ananga Mohan Datta, Kurt Busch, Armando Perez-Leija

Photon-subtracted two-mode squeezed vacuum states, a significant quantum resource, exhibit intricate correlations and unique quantum properties. In this work, we propose a theoreti…

quant-ph2025

Selective Filtering of Photonic Quantum Entanglement via Anti-Parity-Time Symmetry

Mahmoud A. Selim, Max Ehrhardt, Yuqiang Ding +8

Entanglement is a key resource for quantum computing, sensing, and communication, however it is highly susceptible to decoherence. To address this, quantum optics has explored filt…