6 papers · 1 filter
Probing Hadron Scattering in Lattice Gauge Theories on Qudit Quantum Computers
Rohan Joshi, Jan C. Louw, Michael Meth +5
An overarching goal in the flourishing field of quantum simulation for high-energy physics is the first-principles study of the microscopic dynamics of scattering processes on a qu…
Efficient Qudit Circuit for Quench Dynamics of D Quantum Link Electrodynamics
Rohan Joshi, Michael Meth, Jan C. Louw +4
A major challenge in the burgeoning field of quantum simulation for high-energy physics is the realization of scalable D lattice gauge theories on state-of-the-art quantum har…
MQT Qudits: A Software Framework for Mixed-Dimensional Quantum Computing
Kevin Mato, Martin Ringbauer, Lukas Burgholzer +1
Quantum computing holds great promise for surpassing the limits of classical devices in many fields. Despite impressive developments, however, current research is primarily focused…
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…
The MQT Handbook: A Summary of Design Automation Tools and Software for Quantum Computing
Robert Wille, Lucas Berent, Tobias Forster +10
Quantum computers are becoming a reality and numerous quantum computing applications with a near-term perspective (e.g., for finance, chemistry, machine learning, and optimization)…
A Framework for the Design and Realization of Alternative Superconducting Quantum Architectures
Jagatheesan Kunasaikaran, Kevin Mato, Robert Wille
Superconducting quantum hardware architectures have been designed by considering the physical constraints of the underlying physics. These general-purpose architectures leave room…