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Chin. Phys. B, 2023, Vol. 32(7): 070301    DOI: 10.1088/1674-1056/acc0f7
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Orientation determination of nitrogen-vacancy center in diamond using a static magnetic field

Yangpeng Wang(王杨鹏), Rujian Zhang(章如健), Yan Yang(杨燕), Qin Wu(吴琴), Zhifei Yu(于志飞), and Bing Chen(陈冰)§
Department of Physics, Hefei University of Technology, Hefei 230009, China
Abstract  Nitrogen-vacancy (NV) centers in a bulk diamond are often employed to realize measurement of multiple physical quantities, which depends on orientation information of NV axis. We report a fast and effective method to determine the orientation of NV axis with the aid of a static magnetic field. By measuring the optically detected magnetic resonance spectra, we can precisely extract the polar angle information between the NV axis and the known magnetic field. Combining with the polar angle information of different kinds of NV centers, we employ the Nelder-Mead algorithm to get the optimal solution of the orientation of NV axis. This method is simple and efficient, and is easily applied in NV-based quantum sensing.
Keywords:  nitrogen-vacancy centers      polar angle      quantum sensing  
Received:  28 December 2022      Revised:  13 January 2023      Accepted manuscript online:  03 March 2023
PACS:  03.65.Ta (Foundations of quantum mechanics; measurement theory)  
  42.50.Ct (Quantum description of interaction of light and matter; related experiments)  
  61.72.jn (Color centers)  
  76.70.Hb (Optically detected magnetic resonance (ODMR))  
Fund: This work was supported by the National Key R&D Program of China (Grant No. 2020YFA0309400), the National Natural Science Foundation of China (Grant No. 12174081), and the Fundamental Research Funds for the Central Universities (Grant Nos. JZ2021HGTB0126 and PA2021KCPY0052).
Corresponding Authors:  Zhifei Yu, Bing Chen     E-mail:  zfyu-phy@hfut.edu.cn;bingchenphysics@hfut.edu.cn

Cite this article: 

Yangpeng Wang(王杨鹏), Rujian Zhang(章如健), Yan Yang(杨燕), Qin Wu(吴琴), Zhifei Yu(于志飞), and Bing Chen(陈冰) Orientation determination of nitrogen-vacancy center in diamond using a static magnetic field 2023 Chin. Phys. B 32 070301

[1] Degen C L, Reinhard F and Cappellaro P 2017 Rev. Mod. Phys. 89 035002
[2] Doherty M W, Manson N B, Delaney P, et al. 2013 Phys. Rep. 528 1
[3] Van der Sar T, Wang Z, Blok M, Bernien H, Taminiau T, Toyli D, Lidar D, Awschalom D, Hanson R and Dobrovitski V 2012 Nature 484 82
[4] Shi F, Zhang Q, Wang P, et al. 2015 Science 347 1135
[5] Neumann P, Jakobi I, Dolde F, et al. 2013 Nano Lett. 13 2738
[6] Balasubramanian G, Chan I Y and Kolesov R 2008 Nature 455 64
[7] Liu G Q, Xing J and Pan X Y 2018 Acta Phys. Sin. 67 120302 (in Chinese)
[8] Bar-Gill N, Pham L M, Jarmola A, et al. 2013 Nat. Commun. 4 1743
[9] Gruber A, Drabenstedt A, Tietz C, Fleury L, Wrachtrup J and Borczyskowski C V 1997 Science 276 2012
[10] Tusun M, Rong X and Du J 2019 Chin. Phys. B 28 024204
[11] Iwasaki T, Naruki W, Tahara K, et al. 2017 ACS Nano 11 1238
[12] Dolde F, Fedder H, Doherty M W, et al. 2011 Nature Phys. 7 459
[13] Maertz B, Wijnheijmer A, Fuchs G, Nowakowski M and Awschalom D 2010 Appl. Phys. Lett. 96 092504
[14] Rondin L, Tetienne J P, Rohart S, et al. 2013 Nat. Commun. 4 2279
[15] Chen B, Hou X, Ge F, Zhang X, Ji Y, Li H, Qian P, Wang Y, Xu N and Du J 2020 Nano Lett. 20 8267
[16] Ye J F, Jiao Z, Ma K, Huang Z Y, Lv H J and Jiang F J 2019 Chin. Phys. B 28 047601
[17] Doherty M W, Acosta V M, Jarmola A, Barson M S, Manson N B, Budker D and Hollenberg L C 2014 Phys. Rev. B 90 041201
[18] Delord T, Nicolas L, Bodini M and Hétet G 2017 Appl. Phys. Lett. 111 013101
[19] Ho K O, Leung M Y, Jiang Y, Ao K P, Zhang W, Yip K Y, Pang Y Y, Wong K C, Goh S K and Yang S 2020 Phys. Rev. Appl. 13 024041
[20] Hsieh S, Bhattacharyya P, Zu C, Mittiga T, Smart T, Machado F, Kobrin B, Höhn T, Rui N, Kamrani M, et al. 2019 Science 366 1349
[21] Pham L M, Bar-Gill N, Le Sage D, Belthangady C, Stacey A, Markham M, Twitchen D, Lukin M D and Walsworth R L 2012 Phys. Rev. B 86 121202
[22] Lai N D, Zheng D, Treussart F and Roch J F 2010 Adv. Nat. Sci: Nanosci. Nanotechnol. 1 015014
[23] Fukushige K, Kawaguchi H, Shimazaki K, Tashima T, Takashima H and Takeuchi S 2020 Appl. Phys. Lett. 116 264002
[24] Schloss J M, Barry J F, Turner M J and Walsworth R L 2018 Phys. Rev. Appl. 10 034044
[25] Neumann P 2012 Towards a room temperature solid state quantum processor—the nitrogen-vacancy center in diamond Ph.D. Dissertation (University of Stuttgart, Germany)
[26] Barry J F, Schloss J M, Bauch E, Turner M J, Hart C A, Pham L M and Walsworth R L 2020 Rev. Mod. Phys. 92 015004
[27] Milligan T 1999 IEEE Trans. Antennas Propag. 41 78
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