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Spin-lattice relaxation of NV centers in nanodiamonds adsorbed on conducting and non-conducting surfaces: original data files

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posted on 2025-05-13, 09:15 authored by Izidor BenedičičIzidor Benedičič, Žiga Gosar, Mariusz Mrózek, Adam Wojciechowski, Yuri Tanuma, Denis Arčon, Bastien Anézo

Data and code from the paper: Benedičič et al., Spin-lattice relaxation of NV centers in nanodiamonds adsorbed on conducting and non-conducting surfaces, https://arxiv.org/abs/2503.04172. Please refer to the paper for more information.

Data and code are organized into folders by figure names within the compressed file.

File formats:
*.csv ... Comma-separated values
*.jpg ... Compressed images
*.00X ... Nanoscope data file, can be opened with any open-source SPM analysis software


The *.csv files contain all the raw data acquired in the experiment as well as some already processed data.
They are structured as follows:


Files beginning with Rabi/ODMR:
Line with varied parameter
Line with integrated signal values
Line with integrated reference values
Line with normalized signal values
ALL PARAMETERS
List of experimental parameters
--- RAW TRACES ---

Pairs of lines containing oscilloscope traces, separated by single blank lines.

Files beginning with T1:
Line with varied parameter
Line with integrated signal values without microwaves
Line with integrated reference values without microwaves
Line with normalized signal values without microwaves

Line with integrated signal values with microwaves
Line with integrated reference values with microwaves
Line with normalized signal values with microwaves
Line with a difference between normalized results with and without microwaves
ALL PARAMETERS
List of experimental parameters
--- RAW TRACES ---

Quadruples of lines containing oscilloscope traces without and with microwaves, separated by single blank lines.

Funding

Advanced optical magnetometry of vortices in unconventional superconductors.

National Science Center

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Advanced optical magnetometry of vortices in unconventional superconductors

Slovenian Research Agency

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QuantERA II ERA-NET Cofund in Quantum Technologies

European Commission

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Physics of quantum and functional materials

Slovenian Research Agency

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