Ulm's Institute of Theoretical Physics

@qubitulm.bsky.social

This is the the account of the Institute of Theoretical Physics of Ulm University. Director: Martin B. Plenio . Webpage: https://www.uni-ulm.de/en/nawi/institut-fuer-theoretische-physik-start-page/home/

Quantum collision models are central in quantum thermo, open systems and quantum simulations but they lack a comprehensive error certification. In our new paper, we elevate collision models to numerically exact methods and enhance their reliability #Quantum doi.org/10.1038/s420...

Making quantum collision models exact - Communications Physics

Quantum collision models are pivotal for simulating open quantum systems, yet lack comprehensive error certification. The authors analytically derive Markovian and non-Markovian collision models from ...

doi.org

Our group members Trini, Luciano, Susana and Martin were awarded the “Honorable Mention Award” by the Gravity Research Foundation for their essay related to testing non-classical aspects of gravity via angular momentum entanglement 🍎 #Quantum #Gravity www.gravityresearchfoundation.org/announcement

Gravity Research Foundation

Gravity Research Foundation's essay competition winners for this year!

gravityresearchfoundation.org

Proud to announce our new work on the application of resource theories to the Life Sciences. Do molecular photoswitches profit from correlations? Read this labour of love which evolved over several years via a Bachelor and a Masters thesis. arxiv.org/abs/2504.12202

Correlations as a resource in molecular switches

Photoisomerization, a photochemical process underlying many biological mechanisms, has been modeled recently within the quantum resource theory of thermodynamics. This approach has emerged as a promis...

arxiv.org

New preprint is out ✨ In this work, we present an alternative tensor network framework to simulate optical circuits by leveraging their input-output relations, eliminating the computational costs of compression techniques in standard tensor networks. Check it out 👇 arxiv.org/abs/2502.01737

Operator-basis Matrix Product State formalism for optical circuits

Tensor network formalisms have emerged as powerful tools for simulating quantum state evolution. While widely applied in the study of optical quantum circuits, such as Boson Sampling, existing tensor ...

arxiv.org