Data underlying the publication "Large-Range Tuning and Stabilization of the Optical Transition of Diamond Tin-Vacancy Centers by In-Situ Strain Control"
doi: 10.4121/6b89815e-d73c-4abd-93cc-a0514c2780ae
Data underlying the research article "Large-Range Tuning and Stabilization of the Optical Transition of Diamond Tin-Vacancy Centers by In-Situ Strain Control". In this physics experiment, we demonstrate the frequency tuning and stabilization of the resonant frequency of SnV centers in diamond.
The dataset contains the measured data and the python code to analyse and reproduce the figures shown in the main text. The measurements are conducted with the Python 3 framework Quantum Measurement Interface (QMI) and data is collected with Python-based data acquisition framework Quantify. The measured and simulated data is stored in individual hdf5 files. Analysed data is stored in hdf5 files named processed dataset.
Read the README.txt
.ipynb: These are the notebooks that generates the main figures from the paper. It defines functions that are used for the analysis, loads the data, processes and visualizes it.
Further information on the acquisition and the processing of the data can be found in the supplementary of the paper.
- 2025-01-06 first online, published, posted
- Joint research program "Modular quantum computers" by Fujitsu Limited and Delft University of Technology
- Spinoza prize 2019 (project number SPI 63-264) (grant code SPI 63-264) NWO
- Quantum Delta NL Dutch Ministry of Economic Affairs and Climate Policy (EZK)
- Quantum Internet Alliance (grant code 820445) [more info...] European Commission
DATA
- 718 bytesMD5:
dac8fe93dfaafdd02bd0612965815ec4
README.txt - 210,923,251 bytesMD5:
df52aa128aba93ec7cd80280bfafab40
Data.zip - 9,635 bytesMD5:
c34f15f6c4586aa157c113ca8cbc94d3
Figure 1.ipynb - 45,824 bytesMD5:
65e307c8f546fe0651176f63cf44ecd4
Figure 2.ipynb - 20,503 bytesMD5:
27ee1e179c532311f4041017118c3ee7
Figure 3.ipynb -
download all files (zip)
210,999,931 bytes unzipped