Optically Detectable Magnetic Resonance of NV-Centers Ensembles in CVD-Diamond with Different Contents of 13 C Isotope
Abstract
Optically detectable magnetic resonance spectra were measured for NV-centers’ ensembles in CVD-diamonds with different 13C content. The obtained spectra are described using a model based on the spin Hamiltonian. Using the constructed model and experimental data, the magnitude of the magnetic field applied to the sample was estimated.
About the Authors
A. T. SalkazanovRussian Federation
Moscow
A. S. Gusev
Russian Federation
Moscow
M. M. Kaloshin
Russian Federation
Moscow
A. D. Sauri
Russian Federation
Moscow
A. M. Zharikov
Russian Federation
Moscow
A. P. Nizovtsev
Russian Federation
Moscow; Belarus; Minsk
S. Ya. Kilin
Russian Federation
Moscow; Belarus; Minsk
N. I. Kargin
Russian Federation
Moscow
R. V. Ryzhuk
Russian Federation
Moscow
References
1. Y. Xu, W. Zhang, Ch. Tian. Photon. Res., 11 (2023) 393—412
2. J. Zhang, L. Xu, G. Bian, P. Fan, M. Li, W. Liu, H. Yuan. Diamond Nitrogen-Vacancy Center Magnetometry: Advances and Challenges (2020), https://www.researchgate.net/publication/344780125
3. V. Kopachevsky, S. Shashkov, A. Gvozdev. In “Physics, Chemistry and Applications of Nanostructures”, World Scientific, Singapore (2015) 119—120
4. Y. Zhu, E. Losero, C. Galland, V. Goblot. Simulation of ODMR Spectra from Nitrogen-Vacancy Ensembles in Diamond for Electric Field Sensing, doi: 10.48550/arXiv.2301.04106 (2023)
5. T. Ishikawa, K.-M. C. Fu, C. Santori, V. M. Acosta, R. G. Beausoleil, H. Watanabe, S. Shikata, K. M. Itoh. Nano Lett., 12, N 4 (2012) 2083—2087
6. F. Jelezko, T. Gaebel, I. Popa, M. Domhan, A. Gruber, J. Wrachtrup. Phys. Rev. Lett., 93, N 13 (2004) 130501(1—4)
7. F. Jiang, J. Ye, Z. Jiao, Z. Huang, H. Lv. Chin. Phys. B, 27, N 5 (2018) 057601
8. A. P. Nizovtsev, N. S. Kukin, A.R. Muradova, A. R. Muradova, P. A. Semenov, A. T. Salkazanov, M. O. Smirnova, A. L. Pushkarchuk, A. N. Vasilev, N. I. Kargin, S. Ya. Kilin. J. Appl. Spectrosc., 89, N 6 (2022) 1064—1071
9. J. H. Shim, I. Niemeyer, J. Zhang, D. Suter. Phys. Rev. A, 87 (2013) 012301(1—6)
10. A. Ashok, P. Cappellaro. Phys. Rev. A, 86 (2012) 062104
11. E. V. Levine, M. J. Turner, P. Kehayias, C. A. Hart, N. Langellier, R. Trubko, D. R. Glenn, R. R. Fu, R. L. Walsworth. Nanophotonics, 8, N 11 (2019) 1945—1973
12. B. Chen, X. Hou, F. Ge, X. Zhang, Y. Ji, H. Li, P. Qian, Y. Wang, N. Xu, J. Du. Nano Lett., 20, No. 11 (2020) 8267—8272
13. Ph. Evans. Acta Cryst., 57 (2001) 1355—1359
14. 14 K. Sasaki, Y. Monnai, S. Saijo, R. Fujita, H. Watanabe, J. Ishi-Hayase, K. M. Itoh, E. Abe. Rev. Sci. Instrum., 87 (2016) 053904
15. S. Steinert, F. Dolde, P. Neumann, A. Aird, B. Naydenov, G. Balasubramanian, F. Jelezko, J. Wrachtrup. Rev. Sci. Instrum., 81 (2010) 043705
16. J. Ye, Z. Jiao, K. Ma, Z. Huang, H. Lv, F. Jiang. Chin. Phys. B, 28, N 4 (2019) 047601
17. B. Zhao, H. Guo, R. Zhao, F. Du, Z. Li, L. Wang, D. Wu, Y. Chen, J. Tang, J. Liu. IEEE Magnetics Lett., 10 (2019) 8101104
18. D. R. Glenn, R. R. Fu, P. Kehayias, D. Le Sage, E. A. Lima, B. P. Weiss, R. L. Walsworth. Geophys. Geosyst., 18 (2017) 3254—3267
19. J. Zopes, K. Sasaki, K. S. Cujia, J. M. Boss, K. Chang, T. F. Segawa, K. M. Itoh, C. L. Degen. Phys. Rev. Lett., 119, N 26 (2017) 260501
20. A. P. Nizovtsev, S. Ya. Kilin, A. L. Pushkarchuk, V. A. Pushkarchuk, S. Kuten. Nonlinear Phenomena in Complex Systems, 14, N 4 (2011) 319—334
21. A. Jarmola, Z. Bodrog, P. Kehayias, M. Markham, J. Hall, D. J. Twitchen, V. M. Acosta, A. Gali, D. Budker. Phys. Rev. B, 94 (2016) 094108
22. A. J. Parker, H.-J. Wang, Y. Li, A. Pines, J. P. King. Decoherence-Protected Transitions of Nitrogen Vacancy Centers in 99% 13C-Enriched Diamond, arXiv:1506.05484 (2015)
23. T. Unden, N. Tomek, T. Weggler, F. Frank, P. London, J. Zopes, C. Degen, N. Raatz, J. Meijer, H. Watanabe, K. Itoh, M. Plenio, B. Naydenov, F. Jelezko. Quantum Inform., 39 (2018)
24. A. T. Salkazanov, M. O. Smirnova, S. A. Tarelkin, A. S. Gusev, T. E. Drozdova, M. M. Kaloshin, N. I. Kargin, N. V. Kornilov, A. P. Nizovtsev. J. Appl. Spectrosc., 89, N 6 (2022) 1059—1063
25. A. P. Nizovtsev, S. Ya. Kilin, V. A. Pushkarchuk, A. L. Pushkarchuk, S. A. Kuten. Opt. and Spectrosc., 108, N 2 (2010) 230—238
26. A. P. Nizovtsev, S. Ya. Kilin, P. Neumann, F. Jelezko, J. Wrachtrup. Opt. and Spectrosc., 108, N 2 (2010) 239—246
27. A. P. Nizovtsev, S. Ya. Kilin, A. L. Pushkarchuk, V. A. Pushkarchuk, S. A. Kuten, O. A. Zhikol, S. Schmitt, T. Unden, F. Jelezko. New J. Phys., 20 (2018) 023022
28. O. R. Rubinas, V. V. Soshenko, I. S. Cojocaru, S. V. Bolshedvorskii, P. G. Vilyuzhanina, E. A. Primak, S. M. Drofa, A. M. Kozodaev, V. G. Vins, V. N. Sorokin, A. N. Smolyaninov, A. V. Akimov. AVS Quantum Sci., 6 (2024) 024401
Review
For citations:
Salkazanov A.T., Gusev A.S., Kaloshin M.M., Sauri A.D., Zharikov A.M., Nizovtsev A.P., Kilin S.Ya., Kargin N.I., Ryzhuk R.V. Optically Detectable Magnetic Resonance of NV-Centers Ensembles in CVD-Diamond with Different Contents of 13 C Isotope. Zhurnal Prikladnoii Spektroskopii. 2024;91(5):658-666. (In Russ.)