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Adobe PDF - 170.3 KB -
MD5: 12d39c2a1a7d906d4fcc19067e910cdc
A vector plot of noisy simulated data for the abstract fig1 |
Adobe PDF - 170.3 KB -
MD5: e6a9ac14e25c982bd8cabe67f1dc120f
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Adobe PDF - 170.3 KB -
MD5: 8def26d629c05cb084c2e4b90ca9e45c
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Jupyter Notebook - 711.6 KB -
MD5: 93eb41b292770d7c92173c171d6f3124
Script to reproduce plots from the paper. |
Plain Text - 3.3 KB -
MD5: a716807308261f30df00f4ab500b3877
Readme file |
May 10, 2022 -
Replication Data for: Diamond magnetometry and gradiometry towards subpicotesla DC field measurement
MATLAB Source Code - 1.5 KB -
MD5: 3676a386e8131d4aba2a4f084cb9ff11
The codes calculate the theoretical sensitivity with different laser and MW power. The calculated variable 'sensitivity_log' is used for the plotting of Fig3a. The codes are written in m file for matlab. It can also be reproduced for other languages. |
May 10, 2022 -
Replication Data for: Diamond magnetometry and gradiometry towards subpicotesla DC field measurement
Tabular Data - 4.0 MB - 803 Variables, 402 Observations - UNF:6:m5xpIpWyT8gUmMk742gNBQ==
csv file for 'fig3a.xlsx' |
May 10, 2022 -
Replication Data for: Diamond magnetometry and gradiometry towards subpicotesla DC field measurement
MS Excel Spreadsheet - 4.0 MB -
MD5: 0d39c089afe71b2d50e16e30bdb1212d
Row 1 from C is the optical saturation parameter;
Column A from A3 is the Rabi frequency in Hz;
The table from C3 to ADW403 is the logarithmic sensitivity. |
May 10, 2022 -
Replication Data for: Diamond magnetometry and gradiometry towards subpicotesla DC field measurement
Tabular Data - 273.4 KB - 6 Variables, 4999 Observations - UNF:6:AySfJzAzcL0TXc8/dkT+Pw==
csv file for 'Fig3b.xlsx' |
May 10, 2022 -
Replication Data for: Diamond magnetometry and gradiometry towards subpicotesla DC field measurement
MS Excel Spreadsheet - 311.9 KB -
MD5: 73cf6356df1bd710de31cec92d7fa61e
Column A: time tags of the experimental data;
Column B: measured fluorescence signal (normalized);
Column C: time tags for the simulation;
Column D-F: Simulated signal
In the legends: k is the pumping rate, and T1 is the longitude decoherence time (see controlled variables)
Laser power is at 80 mW. |