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Research PaperResearchia:202602.18010[Quantum Computing > Quantum Physics]

QwaveMPS: An efficient open-source Python package for simulating non-Markovian waveguide-QED using matrix product states

Sofia Arranz Regidor

Abstract

QwaveMPS is an open-source Python library for simulating one-dimensional quantum many-body waveguide systems using matrix product states (MPS). It provides a user-friendly interface for constructing, evolving, and analyzing quantum states and operators, facilitating studies in quantum physics and quantum information with waveguide QED systems. This approach enables efficient, scalable simulations by focusing computational resources on the most relevant parts of the quantum system. Thus, one can study a wide range of complex dynamical interactions, including time-delayed feedback effects in the non-Markovian regime and deeply non-linear systems, at a highly reduced computational cost compared to full Hilbert space approaches, making it both practical and convenient to model a variety of open waveguide-QED systems (in Markovian and non-Markovian regimes), treating quantized atoms and quantized photons on an equal footing.


Source: arXiv:2602.15826v1 - http://arxiv.org/abs/2602.15826v1 PDF: https://arxiv.org/pdf/2602.15826v1 Original Link: http://arxiv.org/abs/2602.15826v1

Submission:2/18/2026
Comments:0 comments
Subjects:Quantum Physics; Quantum Computing
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arXiv: This paper is hosted on arXiv, an open-access repository
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QwaveMPS: An efficient open-source Python package for simulating non-Markovian waveguide-QED using matrix product states | Researchia | Researchia