activity
20242026
collaborators

9 papers

quant-ph2026

A Single Atom in Front of a Mirror is a Universal Reservoir Computer

Peter J. Ehlers, Phi Hung Nguyen, Kanu Sinha +4

Universal approximation in reservoir computing is typically associated with a class of reservoirs. We show that universality can be associated with a single reservoir, considering…

quant-ph2026

Projection Operator Stochastic Equations for Non-Markovian Quantum Systems Under Continuous Measurement-Based Feedback

H. I. Nurdin

Quantum Markov models have been successfully used to accurately model various physical quantum systems in fields such as quantum optics, optomechanics and superconducting circuits…

quant-ph2025

Minimalistic and Scalable Quantum Reservoir Computing Enhanced with Feedback

Chuanzhou Zhu, Peter J. Ehlers, Hendra I. Nurdin +1

Quantum Reservoir Computing (QRC) leverages quantum systems to perform complex computational tasks with exceptional efficiency and reduced energy consumption. We introduce a minima…

quant-ph2025

Practical Few-Atom Quantum Reservoir Computing

Chuanzhou Zhu, Peter J. Ehlers, Hendra I. Nurdin +1

Quantum Reservoir Computing (QRC) harnesses quantum systems to tackle intricate computational problems with exceptional efficiency and minimized energy usage. This paper presents a…

cs.LG2025

A Solvable Molecular Switch Model for Stable Temporal Information Processing

H. I. Nurdin, C. A. Nijhuis

This paper studies an input-driven one-state differential equation model initially developed for an experimentally demonstrated dynamic molecular switch that switches like synapses…

quant-ph2025

Physical Reduced Stochastic Equations for Continuously Monitored Non-Markovian Quantum Systems with a Markovian Embedding

Hendra I. Nurdin

An effective approach to modeling non-Markovian quantum systems is to embed a principal (quantum) system of interest into a larger quantum system. A widely employed embedding is on…