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Laser-written waveguide-integrated coherent spins in diamond - data

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posted on 2024-10-30, 07:34 authored by Yanzhao GuoYanzhao Guo, John HaddenJohn Hadden, Federico Gorrini, Giulio Coccia, Vibhav Bharadwaj, Vinaya Kumar Kavatamane, Mohammad Sahnawaz Alam, Roberta Ramponi, Paul E. Barclay, Andrea Chiappini, Maurizio Ferrari, Alexander Kubanek, Angelo Bifone, Shane M. Eaton, Anthony BennettAnthony Bennett

'Laser-written waveguide-integrated coherent spins in diamond' data

The dataset includes excel files with the raw data for each figure in the manuscript. The filename of the files points towards each labelled subplot in each figure and the necessary description.

Figure 1 is photoluminescence (PL) studies of laser-written waveguide integrated nitrogen-vacancy centers (WGINVs). 
(a) PL map of WGINV A in type IIa diamond from the z-direction (overhead). It includes x-y and x-z planes with the resolution of 250 nm and PL rate unit of kHz, and x, y, z slices from PL maps. 
(b) The emission spectrum of single WGINV A and ensemble NVs. 
(c) The photon emission correlation of single WGINV A. 
(d) The power-dependent PL rate for single WGINV A. 
(e) PL map of WGINVs in type Ib diamond from the z-direction (overhead). It includes x-y and x-z planes with the resolution of 250 nm and PL rate unit of Hz, and x, y, z slices from PL maps. 
(f) PL map of the WGINVs in type Ib diamond mapped from the y-direction (along the waveguide). It includes x-y and x-z planes with the resolution of 250 nm and PL rate unit of kHz, and x, z slices from PL map. 

Figure 2 is optically detected magnetic resonance (ODMR) spectra of single WGINVs and ensemble WGINVs.
(a) includes continuous wave (CW) and pulse zero-field ODMR for single WGINV A. 
(b) includes CW and pulse ODMR with applied magnetic field for single WGINV A. 
(c) includes CW and pulse zero-field ODMR for single WGINV B.
(d) includes CW and pulse ODMR with applied magnetic field for single WGINV B. 
(e) is the zero-field ODMR for ensemble WGINVs
(f) is CW ODMR with applied magnetic field for ensemble WGINVs.

Figure 3 is the time domain ODMR spectrum of single WGINVs in type IIa diamond (from (a) to (h)) and ensemble WGINVs in type Ib diamond (from (i) to (l)). 
(a), (b), (c), and (d) are Rabi, free induced decay (FID), Hahn echo, and relaxometry measurements for single WGINV A. 
(e), (f), (g), and (h) are Rabi, FID, Hahn echo, and relaxometry measurements for single WGINV B. 
(i), (j), (k), and (l) are Rabi, free induced decay (FID), Hahn echo, and relaxometry measurements for ensemble WGINVs. 

Figure 4 is an illustration figure, and does not contain any raw data to be included as part of this data repository.

Figure 5 is high-resolution confocal normalized PL image of single WGINVs A in type IIa diamond. It includes the PL maps from x-y plane and x-z plane with the resolution of 50 nm, and the x, y, z slices from PL maps.

Figure 6 is Rabi oscillations for single WGINV A (a) and single WGINV B (b) at weak MW power.

Reserach results based upon these data are published at https://doi.org/10.1063/5.0209294


Funding

Manufacturing scalable semiconductor quantum light sources

Engineering and Physical Sciences Research Council

Find out more...

Quantum GaN-O-Photonics (2024-02-01 - 2027-01-31); Bennett, Anthony. Funder: Engineering and Physical Sciences Research Council

Training on laser fabrication on ion implantation of detects as quantum emitters (2020-10-01 - 2025-01-31); Bennett, Anthony. Funder: Commission of the European Communities:95387

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  • English-United States (EN-US)

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