activity
20242026
collaborators

8 papers

quant-ph2026

Antibunching in locally driven dissipative Lieb lattices

Alex Ferrier, Michał Matuszewski, Piotr Deuar +1

In Lieb lattices, geometric frustration and destructive interference of hopping cancels the occupation of certain sites, leading to flat-band physics. Here, we show numerically how…

physics.optics2026

Strongly Nonlinear Slow Light Polaritons in Subwavelength Modulated Waveguides

Amir Rahmani, Maciej Dems, Michał Matuszewski

Slow light is a regime of reduced group velocity, resulting in increased photon density in optical pulses and enhanced nonlinear effects. Here, we propose the realization of slow l…

quant-ph2026

Quantum Light Detection with Enhanced Photonic Neural Network

Stanisław Świerczewski, Dogyun Ko, Amir Rahmani +7

Advances in quantum technologies are accelerating the demand for optical quantum state sensors that combine high precision, versatility, and scalability within a unified hardware p…

quant-ph2025

Spectroscopy on a single nonlinear mode recognizes quantum states

Wouter Verstraelen, Stanisław Świerczewski, Andrzej Opala +7

Characterising optical quantum states is essential for the development of quantum technologies. While traditional approaches to perform full quantum state tomography are often expe…

quant-ph2025

Quantization of Polaritons Confined in Dielectric Structures

Amir Rahmani, Dogyun Ko, Maciej Dems +2

Light-matter interaction in the regime of strong quantum coupling is usually treated within the framework of the Hopfield model. However, the picture of coupling well-defined modes…

quant-ph2025

Phase-Space Framework for Noisy Intermediate-Scale Quantum Optical Neural Networks

Stanisław Świerczewski, Wouter Verstraelen, Piotr Deuar +4

Quantum optical neural networks (QONNs) enable information processing beyond classical limits by exploiting the advantages of classical and quantum optics. However, simulation of l…