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                PNG Image - 29.7 MB - 
                                MD5: f5064fd5c3b7823c10c7bd0aecbaccb5
                                
                         It contains the A and B parts of Fig 6. of the article. HRTEM image and calculated Fourier transformation of the thin film part in the FeRh sample. | 
PNG Image - 31.2 MB - 
                                MD5: 6142c39c170a832502887e9476ee7bc4
                                
                         It contains the C and D parts of Fig 6. of the article. HRTEM image and calculated Fourier transformation of an island in the FeRh sample. | 
PNG Image - 34.5 MB - 
                                MD5: f6df51e93d108d1d4ce2f2954876cc41
                                
                         It contains the E and F parts of Fig 6. of the article. HRTEM image and calculated Fourier transformation of an island in the FeRh sample. | 
PNG Image - 462.2 KB - 
                                MD5: 40b249051e46043c70183634cbcb9e1b
                                
                         It is Fig 8. of the article. HAADF image (A) and EDX maps showing the iron (B), rhodium (C) and oxygen (O) distribution . | 
Markdown Text - 2.3 KB - 
                                MD5: 88079bb4e87eecea96bc762a2bf492ad
                                
                         Readme file describing the data set  in markdown format. | 
                        
                        Aug 7, 2025 - Semiconductor Nanostructures Research Group
                         Thiering, Gergő; Gali, Ádám, 2025, "Nuclear spin relaxation in solid state defect quantum bits via electron-phonon coupling in their optical excited state", https://hdl.handle.net/21.15109/ARP/O4CEI6, ARP, V1
                         Optically accessible solid state defect spins serve as a primary platform for quantum information processing, where precise control of the electron spin and ancillary nuclear spins is essential for operation. Using the nitrogen-vacancy (NV) color center in diamond as an example,... | 
Aug 7, 2025 - 
                            Nuclear spin relaxation in solid state defect quantum bits via electron-phonon coupling in their optical excited state
                         
                        Gzip Archive - 437.3 MB - 
                                MD5: 537115f0c323fe27354972e0e49a057f
                                
                         1st row of VASP ab-initio data | 
Aug 7, 2025 - 
                            Nuclear spin relaxation in solid state defect quantum bits via electron-phonon coupling in their optical excited state
                         
                        Gzip Archive - 435.3 MB - 
                                MD5: 8449b1674972b047ecfb976fa9fb9a63
                                
                         2nd row of VASP ab-initio data | 
Aug 7, 2025 - 
                            Nuclear spin relaxation in solid state defect quantum bits via electron-phonon coupling in their optical excited state
                         
                        Gzip Archive - 422.9 MB - 
                                MD5: 5064eea78de53a6db48ac8f1fa06b1a6
                                
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Aug 7, 2025 - 
                            Nuclear spin relaxation in solid state defect quantum bits via electron-phonon coupling in their optical excited state
                         
                        Gzip Archive - 419.4 MB - 
                                MD5: 069cff365a721cbda3968e0cf57e6ea9
                                
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