collaborators

7 papers

quant-ph2026

Quantum reservoir computing with classical and nonclassical states in an integrated optical circuit

S. Świerczewski, W. Verstraelen, P. Deuar +3

Quantum reservoir computing (QRC) is a hardware-implementation-friendly quantum neural network scheme with minimal physical system requirements and a proven advantage over classica…

physics.optics2026

A Photonic Tautochrone

W. Verstraelen, S. Zanotti, N. W. E. Seet +6

We propose to implement an optical analogue of the tautochrone property of the cycloid to allow the focusing of ultrashort pulses inside photonic systems. This allows to enhance no…

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

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…

physics.optics2025

Optical resonators constitute a universal spin simulator

Wouter Verstraelen, Timothy C. H. Liew

NP-hard computational problems can be efficiently recast as finding the ground state of an effective spin model. However, to date no convenient setup exists that can universally si…