激光与光电子学进展, 2017, 54 (3): 030003, 网络出版: 2017-03-08   

基于金刚石NV色心的超分辨成像技术 下载: 3198次

Super-Resolution Microscopy Using NV Center in Diamond
作者单位
中国科学技术大学量子信息重点实验室, 安徽 合肥 230026
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杜博, 陈向东, 孙方稳. 基于金刚石NV色心的超分辨成像技术[J]. 激光与光电子学进展, 2017, 54(3): 030003.

Du Bo, Chen Xiangdong, Sun Fangwen. Super-Resolution Microscopy Using NV Center in Diamond[J]. Laser & Optoelectronics Progress, 2017, 54(3): 030003.

参考文献

[1] Leung B O, Chou K C. Review of super-resolution fluorescence microscopy for biology[J]. Appl Spectrosc, 2011, 65(9): 967-980.

[2] Heilemann M. Fluorescence microscopy beyond the diffraction limit[J]. Journal of Biotechnology, 2010, 149(4): 243-251.

[3] Schermelleh L, Carlton P M, Haase S, et al. Subdiffraction multicolor imaging of the nuclear periphery with 3D structured illumination microscopy[J]. Science, 2008, 320(5581): 1332-1336.

[4] Rittweger E, Han K Y, Irvine S E, et al. STED microscopy reveals crystal colour centres with nanometric resolution[J]. Nature Photon, 2009, 3(3): 144-147.

[5] Wildanger D, Patton B R, Schill H, et al. Solid immersion facilitates fluorescence microscopy with nanometer resolution and sub-ngstrm emitter localization[J]. Adv Mater, 2012, 24(44): OP309-OP313.

[6] Hess S T, Girirajan T P K, Mason M D. Ultra-high resolution imaging by fluorescence photoactivation localization microscopy[J]. Biophys J, 2006, 91(11): 4258-4272.

[7] Zhuang X. Nano-imaging with STORM[J]. Nature Photon, 2009, 3(7): 365-367.

[8] Dertinger T, Colyer R, Iyer G, et al. Fast, background-free, 3D super-resolution optical fluctuation imaging (SOFI)[J]. Proceedings of National Academy of Sciences of the United States of America, 2009, 106(52): 22287-22292.

[9] Geissbuehler S, Dellagiacoma C, Lasser T. Comparison between SOFI and STORM[J]. Biomed Opt Express, 2011, 2(3): 408-420.

[10] Doherty M W, Manson N B, Delaney P, et al. The nitrogen-vacancy colour centre in diamond[J]. Phys Rep, 2013, 528(1): 1-45.

[11] Jelezko F, Wrachtrup J. Single defect centres in diamond: a review[J]. Physica Status Solidi Applications & Materials, 2006, 203(13): 3207-3225.

[12] Neumann P, Kolesov R, Naydenov B, et al. Quantum register based on coupled electron spins in a room-temperature solid[J]. Nature Phys, 2010, 6(4): 249-253.

[13] Balasubramanian G, Chan I Y, Kolesov R, et al. Nanoscale imaging magnetometry with diamond spins under ambient conditions[J]. Nature Letters, 2008, 455(7213): 648-651.

[14] Arroyocamejo S, Adam M P, Besbes M, et al. Stimulated emission depletion microscopy resolves individual nitrogen vacancy centers in diamond nanocrystals[J]. Acs Nano, 2013, 7(12): 10912-9.

[15] Osseforth C, Moffitt J R, Schermelleh L, et al. Simultaneous dual-color 3D STED microscopy[J]. Opt Express, 2014, 22(6): 7028-7039.

[16] Tzeng Y K, FaklarisD O, Chang B M, et al. Superresolution imaging of albumin-conjugated fluorescent nanodiamonds in cells by stimulated emission depletion[J]. Angew Chem Int Ed, 2011, 50(10): 2262-2265.

[17] Han K Y, Kim S K, Eggeling C, et al. Metastable dark states enable ground state depletion microscopy of nitrogen vacancy centers in diamond with diffraction-unlimited resolution[J]. Nano Lett, 2010, 10(8): 3199-3203.

[18] Rittweger E, Wildanger D, Hell S W. Far-field fluorescence nanoscopy of diamond color centers by ground state depletion[J]. Europhys Lett, 2009, 86(1): 014001.

[19] Chen X, Zou C, Sun F, et al. Subdiffraction optical manipulation of the charge state of nitrogen vacancy center in diamond[J]. Light: Sci & Appl, 2015, 4(1): e230.

[20] Dolde F, Doherty M W, Michl J, et al. Nanoscale detection of a single fundamental charge in ambient conditions using the NV- center in diamond[J]. Phys Rev Lett. 2014, 112(9): 097603.

[21] Pfender M, Aslam N, Wrachtrup J, et al. Single-spin stochastic optical reconstruction microscopy[J]. Proceedings of National Academy of Sciences of the United States of America, 2014, 111(41): 14669-14674.

[22] Cui J M, Sun F W, Chen X D, et al. Quantum statistical imaging of particles without restriction of the diffraction limit[J]. Phys Rev Lett, 2013, 110(15): 153901.

[23] Monticone D G, Katamadze K, Traina P, et al. Beating the Abbe diffraction limit in confocal microscopy via nonclassical photon statistics[J]. Phys Rev Lett, 2014, 113(14): 143602.

[24] Hall L T, Beart G C, Thomas E A, et al. High spatial and temporal resolution wide-field imaging of neuron activity using quantum NV-diamond[J]. Sci Rep, 2012, 2: 401.

杜博, 陈向东, 孙方稳. 基于金刚石NV色心的超分辨成像技术[J]. 激光与光电子学进展, 2017, 54(3): 030003. Du Bo, Chen Xiangdong, Sun Fangwen. Super-Resolution Microscopy Using NV Center in Diamond[J]. Laser & Optoelectronics Progress, 2017, 54(3): 030003.

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