Laser & Optoelectronics Progress, Volume. 61, Issue 9, 0923001(2024)
Design and Implementation of Real-Time Fluorescence Triple Correlation Spectroscopy Correlator Based on FPGA
[1] Thompson N L. Fluorescence correlation spectroscopy[M]. Topics in fluorescence spectroscopy, 337-378(2006).
[2] Eigen M, Rigler R. Sorting single molecules: application to diagnostics and evolutionary biotechnology[J]. Proceedings of the National Academy of Sciences of the United States of America, 91, 5740-5747(1994).
[3] Haustein E, Schwille P. Fluorescence correlation spectroscopy: novel variations of an established technique[J]. Annual Review of Biophysics and Biomolecular Structure, 36, 151-169(2007).
[4] Wang L, Yin G F, Zhao N J et al. Analytical method of viable algae cells in water based on variable fluorescence statistical distribution[J]. Acta Optica Sinica, 42, 0617001(2022).
[5] Zhong X, Wang X W, Sun L et al. Enhancement of rapid lifetime determination for time-resolved fluorescence imaging in forensic examination[J]. Chinese Optics Letters, 19, 041101(2021).
[6] Chen G, Zhu J Z, Li X G. Influence of a dielectric decoupling layer on the local electric field and molecular spectroscopy in plasmonic nanocavities: a numerical study[J]. Chinese Optics Letters, 19, 123001(2021).
[7] Chen Z, Zhou Q, Du H T et al. Immensely enhanced color-adjustable upconversion fluorescence in electron donor-acceptor exciplex chromophores doped with fluorescent emitters[J]. Photonics Research, 9, 865-872(2021).
[8] Hess S T, Huang S H, Heikal A A et al. Biological and chemical applications of fluorescence correlation spectroscopy: a review[J]. Biochemistry, 41, 697-705(2002).
[9] Marklund E, van Oosten B, Mao G Z et al. DNA surface exploration and operator bypassing during target search[J]. Nature, 583, 858-861(2020).
[10] Dong C B, Li F C, Dong C Q et al. The developing of laser confocal scanning imaging-fluorescence correlation spectroscopy system and its application[J]. Journal of Analytical Science, 36, 695-700(2020).
[11] Molteni M, Ferri F. Commercial counterboard for 10 ns software correlator for photon and fluorescence correlation spectroscopy[J]. Review of Scientific Instruments, 87, 113108(2016).
[12] Schatzel K. New concepts in correlator design[C], 77, 175-184(1985).
[13] Islambek A, kang K, Li W et al. FPGA-based real-time autocorrelator and its application in dynamic light scattering[J]. Optik, 194, 163047(2019).
[15] Ridgeway W K, Millar D P, Williamson J R. The spectroscopic basis of fluorescence triple correlation spectroscopy[J]. The Journal of Physical Chemistry B, 116, 1908-1919(2012).
[16] Ridgeway W K, Millar D P, Williamson J R. Vectorized data acquisition and fast triple-correlation integrals for fluorescence triple correlation spectroscopy[J]. Computer Physics Communications, 184, 1322-1332(2013).
[17] Gong S X, Labanca I, Rech I et al. A simple and flexible FPGA based autocorrelator for afterpulse characterization of single-photon detectors[C](2014).
[18] Liu W, Lu W L, Wang Y J et al. Fast photon correlator with high dynamic range[J]. Journal of Applied Optics, 36, 673-678(2015).
[19] Jakob C, Schwarzbacher A T, Hoppe B et al. A FPGA optimised digital real-time mutichannel correlator architecture[C], 35-42(2007).
[20] Ridgeway W K, Millar D P, Williamson J R. Quantitation of ten 30S ribosomal assembly intermediates using fluorescence triple correlation spectroscopy[J]. Proceedings of the National Academy of Sciences of the United States of America, 109, 13614-13619(2012).
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Yanan Sun, Ping Cai, Weida Wang, Xinwei Lu, Chaoqing Dong, Jicun Ren. Design and Implementation of Real-Time Fluorescence Triple Correlation Spectroscopy Correlator Based on FPGA[J]. Laser & Optoelectronics Progress, 2024, 61(9): 0923001
Category: Optical Devices
Received: Dec. 2, 2022
Accepted: Dec. 24, 2022
Published Online: May. 10, 2024
The Author Email: Ping Cai (pcai@sjtu.edu.cn)
CSTR:32186.14.LOP223230