most citedMixed-Dimensional Qudit State Preparation Using Edge-Weighted Decision Diagrams

4 citations · 4 across the 2 of their papers we have counts for

collaborators
Showing quant-phShow all

5 papers · 1 filter

quant-ph2025

Node Replacement based Approximate Quantum Simulation with Decision Diagrams

Yexin Yan, Stefan Hillmich, Robert Wille +1

Simulating a quantum circuit with a classical computer requires exponentially growing resources. Decision diagrams exploit the redundancies in quantum circuit representation to eff…

quant-ph2025

Orchestrating Multi-Zone Shuttling in Trapped-Ion Quantum Computers

Daniel Schoenberger, Robert Wille

Trapped-ion quantum computers are a promising platform, offering high-quality qubits with long coherence times and high-fidelity gate operations. The Quantum Charge Coupled Device…

quant-ph20244 cited

Mixed-Dimensional Qudit State Preparation Using Edge-Weighted Decision Diagrams

Kevin Mato, Stefan Hillmich, Robert Wille

Quantum computers have the potential to solve important problems which are fundamentally intractable on a classical computer. The underlying physics of quantum computing platforms…

quant-ph2024

Shuttling for Scalable Trapped-Ion Quantum Computers

Daniel Schoenberger, Stefan Hillmich, Matthias Brandl +1

Trapped-ion quantum computers exhibit promising potential to provide platforms for high-quality qubits and reliable quantum computation. The Quantum Charge Coupled Device (QCCD) ar…

quant-ph2023

Using Boolean Satisfiability for Exact Shuttling in Trapped-Ion Quantum Computers

Daniel Schoenberger, Stefan Hillmich, Matthias Brandl +1

Trapped ions are a promising technology for building scalable quantum computers. Not only can they provide a high qubit quality, but they also enable modular architectures, referre…