Rubidium atomic quantum system evolution simulation and entanglement generation assessment, code underlying the publication: Hybrid Quantum Repeaters with Ensemble-based Quantum Memories and Single-spin Photon Transducers
doi:10.4121/8ab2d696-1533-4e48-9e08-b77333255f63.v1
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doi: 10.4121/8ab2d696-1533-4e48-9e08-b77333255f63
doi: 10.4121/8ab2d696-1533-4e48-9e08-b77333255f63
Datacite citation style:
Gu, Fenglei (2024): Rubidium atomic quantum system evolution simulation and entanglement generation assessment, code underlying the publication: Hybrid Quantum Repeaters with Ensemble-based Quantum Memories and Single-spin Photon Transducers. Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/8ab2d696-1533-4e48-9e08-b77333255f63.v1
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Dataset
This is a collection of MATLAB codes simulating the quantum evolution of the Rubidium-cavity system. Based on this, we further calculate the performance of the entangled state generation. The code adopts the Rubidium model described in the paper and inputs from the "relative Clebsch-Gordan coefficient calculation" dataset and uses the quantum master equation to calculate the system evolution. This code produces several figures used in the paper.
history
- 2024-01-25 first online, published, posted
publisher
4TU.ResearchData
format
g-zipped shape files with MATLAB R2023b executable files: *.mlx and a "readme.txt" file
associated peer-reviewed publication
Hybrid Quantum Repeaters with Ensemble-based Quantum Memories and Single-spin Photon Transducers
funding
- Quantum Software Consortium (grant code 024.003.037) [more info...] Dutch Research Council
organizations
QuTech, Delft University of Technology
DATA
files (1)
- 332,059 bytesMD5:
13ac04294144bd4078e7505053237b62
Rb emitter and entangled state.zip -
download all files (zip)
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