activity
20212024
most citedEfficient Quantum One-Class Support Vector Machines for Anomaly Detection Using Randomized Measurements and Variable Subsampling

3 citations · 6 across the 16 of their papers we have counts for

collaborators
Showing quant-phShow all

8 papers · 1 filter

quant-ph2024

Sequential Hamiltonian Assembly: Enhancing the training of combinatorial optimization problems on quantum computers

Navid Roshani, Jonas Stein, Maximilian Zorn +3

A central challenge in quantum machine learning is the design and training of parameterized quantum circuits (PQCs). Much like in deep learning, vanishing gradients pose significan…

quant-ph2024

Optimizing Variational Quantum Circuits Using Metaheuristic Strategies in Reinforcement Learning

Michael Kölle, Daniel Seidl, Maximilian Zorn +3

Quantum Reinforcement Learning (QRL) offers potential advantages over classical Reinforcement Learning, such as compact state space representation and faster convergence in certain…

quant-ph2024

Architectural Influence on Variational Quantum Circuits in Multi-Agent Reinforcement Learning: Evolutionary Strategies for Optimization

Michael Kölle, Karola Schneider, Sabrina Egger +5

In recent years, Multi-Agent Reinforcement Learning (MARL) has found application in numerous areas of science and industry, such as autonomous driving, telecommunications, and glob…

quant-ph2024

Qandle: Accelerating State Vector Simulation Using Gate-Matrix Caching and Circuit Splitting

Gerhard Stenzel, Sebastian Zielinski, Michael Kölle +3

To address the computational complexity associated with state-vector simulation for quantum circuits, we propose a combination of advanced techniques to accelerate circuit executio…

quant-ph2024

Towards Federated Learning on the Quantum Internet

Leo Sünkel, Michael Kölle, Tobias Rohe +1

While the majority of focus in quantum computing has so far been on monolithic quantum systems, quantum communication networks and the quantum internet in particular are increasing…

quant-ph2024

A Reinforcement Learning Environment for Directed Quantum Circuit Synthesis

Michael Kölle, Tom Schubert, Philipp Altmann +3

With recent advancements in quantum computing technology, optimizing quantum circuits and ensuring reliable quantum state preparation have become increasingly vital. Traditional me…