Quantum chemistry × quantum computing
Making molecular quantum computing measurable.
I work where electronic-structure theory, quantum hardware and scientific computing meet. I build transparent benchmarks and reproducible evidence for what today’s quantum computers can actually do.
01 · Hardware
Experiments on real quantum processors, not only ideal simulations.
02 · Evidence
Versioned data, scientific provenance and reproducible analysis.
03 · Reality
Useful measurements without hype or hidden assumptions.
Research focus
Research with both feet on the ground.
Molecular systems
Electronic-structure calculations translated into practical quantum workflows.
Hardware benchmarks
Shots, mappings, resilience and execution strategies measured on real devices.
Open evidence
Datasets and tools designed to be inspected, reused and challenged.
Current project · BMFTR funded
EQeS
Evaluierung von Quantencomputerressourcen für elektronische Strukturberechnungen. My current research evaluates quantum-computing resources for electronic-structure calculations.
EQeS is funded by the German Federal Ministry of Research, Technology and Space (BMFTR) under contract 13N17338 as part of the Research Program Quantum Systems.
MOLQBENCH / SUPPORTING PROJECT
Making benchmark results easier to inspect and reuse.
- Hardware benchmark results
- Versioned dataset releases
- CSV and JSON exports
- Publication and funding provenance
MolQBench is a side project within EQeS. It turns calculation results into a searchable and citable scientific resource. Explore the public preview, currently using a small placeholder sample of real hardware data.
A practical view of an extraordinary technology.
My work combines a background in computational chemistry with years of experience in open-source infrastructure. The goal is simple: make the quantum world a little less mysterious.