arXiv · 2203.13773
Implementation of a two-stroke quantum heat engine with a collisional model
Abstract
We put forth a quantum simulation of a stroboscopic two-stroke thermal engine in the IBMQ processor. The system consists of a quantum spin chain connected to two baths at their boundaries, prepared at different temperatures using the variational quantum thermalizer algorithm. The dynamics alternates between heat and work strokes, which can be separately designed using independent quantum circuits. The results show good agreement with theoretical predictions, showcasing IBMQ as a powerful tool to study thermodynamics in the quantum regime, as well as the implementation of variational quantum algorithms in real-world quantum computers. It also opens the possibility of simulating quantum heat transport across a broad range of chain geometries and interactions.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Filipe V. Melo, Nahum Sá, Ithzak Roditi, Gabriel T. Landi, Alexandre M. Souza, Ivan S. Oliveira, Roberto S. Sarthour. 2022-03-25. Implementation of a two-stroke quantum heat engine with a collisional model. https://doi.org/10.1103/physreva.106.032410
Cite the original work for its findings. Save a collection to share your selection of sources.