Data Publication

Data and software underlying the publication "Laser-cut Patterned, Micrometer-thin Diamond Membranes with Coherent Color Centers for Open Microcavities"

Herrmann, Yanik | Brevoord, Julia M. | Fischer , Julius | Scheijen, Stijn | Sauerzapf, Colin | Codreanu, Nina | Wienhoven, Leonardo G. C. | van der Graaf, Yuran M. Q. | Wolfs, Cornelis F. J. | Méjard, Régis

4TU.ResearchData

(2025)

Descriptions

The data and software underlying the research article "Laser-cut Patterned, Micrometer-thin Diamond Membranes with Coherent Color Centers for Open Microcavities". In this physics paper, we present a new method to pattern diamond microdevices utilizing laser cutting, followed by reactive ion etching to thin them down. We compare this fabrication method to an established method using e-beam lithography and a silicon nitride hard mask. Devices obtained from both fabrication methods are characterized by scanning cavity microscopy, showing that high cavity finesse can be reached. In addition, we perform low-temperature spectroscopy to show that the devices contain optically coherent Tin- and Nitrogen-Vacancy centers. The measurements are performed in quantum optics laboratories.The dataset contains the measured data and the Python code to analyse and reproduce the figures shown in the paper. Most measurements are conducted with the Python 3 framework Quantum Measurement Infrastructure (QMI) and the data acquisition framework Quantify. The measured data is stored in individual HDF5 files, with a unique timestamp and identifier. Analysed data is stored in HDF5 and JSON files named processed dataset or quantities of interest. The white light interferometer data is stored in text files.Please see the README.md file for instructions on how to run the Python code to reproduce the figures.

Keywords

MSL enriched keywords
minerals
chemical elements
carbon
diamond
silicon
tin
measured property
nitrogen
silicon
tin
MSL vocabulary keywords corresponding to originally assigned keywords
diamond
Originally assigned keywords
Condensed Matter Physics
FOS: Physical sciences
Optical Physics
Quantum Physics
Physical Sciences
Diamond
Fiber-based Cavity
Optical Cavity
Nitrogen-Vacancy Center
Tin-Vacancy Center
Quantum Optics
Laser-cutting
Quantum Networks
Scanning Cavity Microscopy
Nanofabrication
Time: 2022 to 2025

Metadata


MSL enriched sub domains

geochemistry

Resource Type

Dataset


Source


Source publisher

4TU.ResearchData

DOI


Creators

Herrmann, Yanik
Personal
0000-0003-0545-7002
Brevoord, Julia M.
Personal
0000-0002-8801-9616
Fischer , Julius
Personal
0000-0003-2219-091X
Scheijen, Stijn
Personal
0009-0009-4092-4674
Sauerzapf, Colin
Personal
0009-0004-7655-9289
Codreanu, Nina
Personal
0009-0006-6646-8396
Wienhoven, Leonardo G. C.
Personal
0009-0009-7745-3765
van der Graaf, Yuran M. Q.
Personal
0009-0004-3730-8815
Wolfs, Cornelis F. J.
Personal
0009-0007-1776-3441
Méjard, Régis
Personal
0009-0008-0181-6163

Contributors

QuTech and Kavli Institute of Nanoscience, Delft University of Technology
Organizational
Netherlands Organisation for Applied Scientific Research (TNO)
Organizational

Citation

Herrmann, Y., Brevoord, J. M., Fischer , J., Scheijen, S., Sauerzapf, C., Codreanu, N., Wienhoven, L. G. C., van der Graaf, Y. M. Q., Wolfs, C. F. J., & Méjard, R. (2025). Data and software underlying the publication "Laser-cut Patterned, Micrometer-thin Diamond Membranes with Coherent Color Centers for Open Microcavities" (Version 2) [Dataset]. 4TU.ResearchData. https://doi.org/10.4121/A8E32E27-5A91-4A4A-ABFC-E5BD884317AE.V2


References

URL
References
URL
References

Dates

Issued 2025-09-10

Language

en


Funding References

Funder Name NWO
Award Number SPI 63-264
Award Title Spinoza prize 2019 (project number SPI 63-264)
Funder Name Dutch Ministry of Economic Affairs and Climate Policy (EZK)
Award Title Quantum Delta NL
Funder Name unknown
Award Title Joint research program "Modular quantum computers" by Fujitsu Limited and Delft University of Technology
Funder Name Netherlands Organisation for Applied Scientific Research (TNO)
Award Title Early Research Programme of the Netherlands Organisation for Applied Scientific Research (TNO)
Funder Name unknown
Award Title Top Sector High Tech Systems and Materials

Rights

Name Creative Commons Attribution 4.0 International
URI https://creativecommons.org/licenses/by/4.0/legalcode
Identifier cc-by-4.0
Identifier Scheme SPDX
Scheme URI https://spdx.org/licenses/

Locations

- no geo-locations found -