10 Super-Resolution Imaging Based on Nonlinear Plasmonic Scattering
259
21. A.H. Coons, H.J. Creech, R.N. Jones, E. Berliner, The demonstration of pneumococcal antigen
in tissues by the use of fluorescent antibody. J. Immunol. 45(3), 159–170 (1942)
22. D.C. Prasher, V.K. Eckenrode, W.W. Ward, F.G. Prendergast, M.J. Cormier, Primary structure
of the Aequorea-victoria green-fluorescent protein. Gene 111(2), 229–233 (1992)
23. Y.T. Chen, P.H. Lee, P.T. Shen, J. Launer, R. Oketani, K.Y. Li, Y.T. Huang, K. Masui, S. Shoji,
K. Fujita, S.W. Chu, Study of nonlinear plasmonic scattering in metallic nanoparticles. ACS
Photonics 3(8), 1432–1439 (2016)
24. S.W. Chu, H.Y. Wu, Y.T. Huang, T.Y. Su, H. Lee, Y. Yonemaru, M. Yamanaka, R. Oketani, S.
Kawata, S. Shoji, K. Fujita, Saturation and reverse saturation of scattering in a single plasmonic
nanoparticle. ACS Photonics 1(1), 32–37 (2014)
25. S.W. Chu, T.Y. Su, R. Oketani, Y.T. Huang, H.Y. Wu, Y. Yonemaru, M. Yamanaka, H. Lee, G.Y.
Zhuo, M.Y. Lee, S. Kawata, K. Fujita, Measurement of a saturated emission of optical radiation
from gold nanoparticles: application to an ultrahigh resolution microscope. Phys. Rev. Lett.
112 (1), 017402–017404 (2014)
26. H.Y. Wu, Y.T. Huang, P.T. Shen, H. Lee, R. Oketani, Y. Yonemaru, M. Yamanaka, S. Shoji,
K.H. Lin, C.W. Chang, S. Kawata, K. Fujita, S.W. Chu, Ultrasmall all-optical plasmonic switch
and its application to super-resolution imaging. Sci. Rep. 6, 24293 (2016)
27. K.A. Willets, A.J. Wilson, V. Sunderesan, P.B. Joshi, Super-resolution imaging and plasmonics.
Chem. Rev. 117(11), 7538–7582 (2017)
28. M. Kauranen, A.V. Zayats, Nonlinear plasmonics. Nat. Photonics 6(11), 737–748 (2012)
29. P. Zhao, N. Li, D. Astruc, State of the art in gold nanoparticle synthesis. Coord. Chem. Rev.
257(3–4), 638–665 (2013)
30. N. Fang, H. Lee, C. Sun, X. Zhang, Sub-diffraction-limited optical imaging with a silver
superlens. Science 308(5721), 534–537 (2005)
31. Z. Liu, H. Lee, Y. Xiong, C. Sun, X. Zhang, Far-field optical hyperlens magnifying subdiffraction-limited objects. Science 315(5819), 1686-1686 (2007)
32. H. Wang, C.S. Levin, N.J. Halas, Nanosphere arrays with controlled sub-10-nm gaps as surfaceenhanced Raman spectroscopy substrates. J. Am. Chem. Soc. 127(43), 14992–14993 (2005)
33. I.I. Smolyaninov, Y.J. Hung, C.C. Davis, Super-resolution optics using short-wavelength surface plasmon polaritons. J. Mod. Opt. 53(16–17), 2337–2347 (2006)
34. F. Wei, Z. Liu, Plasmonic structured illumination microscopy. Nano Lett. 10(7), 2531–2536
(2010)
35. T. Huang, X.X. Nancy, Multicolored nanometre-resolution mapping of single protein-ligand
binding complexes using far-field photo-stable optical nanoscopy (PHOTON). Nanoscale 3(9),
3567–3572 (2011)
36. K. Fujita, M. Kobayashi, S. Kawano, M. Yamanaka, S. Kawata, High-resolution confocal
microscopy by saturated excitation of fluorescence. Phys. Rev. Lett. 99(22), 228105 (2007)
37. Y. Sivan, Y. Sonnefraud, S. Ke´ na-Cohen, J.B. Pendry, S.A. Maier, Nanoparticle-assisted
stimulated-emission-depletion nanoscopy. ACS Nano 6(6), 5291–5296 (2012)
38. M. Yamanaka, N.I. Smith, K. Fujita, Introduction to super-resolution microscopy. Microscopy
63(3), 177–192 (2014)
39. H. Blom, J. Widengren, Stimulated emission depletion microscopy. Chem. Rev. 117(11),
7377–7427 (2017)
40. M. Hofmann, C. Eggeling, S. Jakobs, S.W. Hell, Breaking the diffraction barrier in fluorescence
microscopy at low light intensities by using reversibly photoswitchable proteins. Proc. Natl.
Acad. Sci. U. S. A. 102(49), 17565–17569 (2005)
41. S.W. Hell, M. Kroug, Ground-state-depletion fluorscence microscopy: a concept for breaking
the diffraction resolution limit. Appl. Phys. B 60(5), 495–497 (1995)
42. G. Deka, K. Nishida, K. Mochizuki, H.-X. Ding, K. Fujita, S.W. Chu, Resolution enhancement
in deep-tissue nanoparticle imaging based on plasmonic saturated excitation microscopy. APL
Photonics 3(3), 031301 (2018)
259
21. A.H. Coons, H.J. Creech, R.N. Jones, E. Berliner, The demonstration of pneumococcal antigen
in tissues by the use of fluorescent antibody. J. Immunol. 45(3), 159–170 (1942)
22. D.C. Prasher, V.K. Eckenrode, W.W. Ward, F.G. Prendergast, M.J. Cormier, Primary structure
of the Aequorea-victoria green-fluorescent protein. Gene 111(2), 229–233 (1992)
23. Y.T. Chen, P.H. Lee, P.T. Shen, J. Launer, R. Oketani, K.Y. Li, Y.T. Huang, K. Masui, S. Shoji,
K. Fujita, S.W. Chu, Study of nonlinear plasmonic scattering in metallic nanoparticles. ACS
Photonics 3(8), 1432–1439 (2016)
24. S.W. Chu, H.Y. Wu, Y.T. Huang, T.Y. Su, H. Lee, Y. Yonemaru, M. Yamanaka, R. Oketani, S.
Kawata, S. Shoji, K. Fujita, Saturation and reverse saturation of scattering in a single plasmonic
nanoparticle. ACS Photonics 1(1), 32–37 (2014)
25. S.W. Chu, T.Y. Su, R. Oketani, Y.T. Huang, H.Y. Wu, Y. Yonemaru, M. Yamanaka, H. Lee, G.Y.
Zhuo, M.Y. Lee, S. Kawata, K. Fujita, Measurement of a saturated emission of optical radiation
from gold nanoparticles: application to an ultrahigh resolution microscope. Phys. Rev. Lett.
112 (1), 017402–017404 (2014)
26. H.Y. Wu, Y.T. Huang, P.T. Shen, H. Lee, R. Oketani, Y. Yonemaru, M. Yamanaka, S. Shoji,
K.H. Lin, C.W. Chang, S. Kawata, K. Fujita, S.W. Chu, Ultrasmall all-optical plasmonic switch
and its application to super-resolution imaging. Sci. Rep. 6, 24293 (2016)
27. K.A. Willets, A.J. Wilson, V. Sunderesan, P.B. Joshi, Super-resolution imaging and plasmonics.
Chem. Rev. 117(11), 7538–7582 (2017)
28. M. Kauranen, A.V. Zayats, Nonlinear plasmonics. Nat. Photonics 6(11), 737–748 (2012)
29. P. Zhao, N. Li, D. Astruc, State of the art in gold nanoparticle synthesis. Coord. Chem. Rev.
257(3–4), 638–665 (2013)
30. N. Fang, H. Lee, C. Sun, X. Zhang, Sub-diffraction-limited optical imaging with a silver
superlens. Science 308(5721), 534–537 (2005)
31. Z. Liu, H. Lee, Y. Xiong, C. Sun, X. Zhang, Far-field optical hyperlens magnifying subdiffraction-limited objects. Science 315(5819), 1686-1686 (2007)
32. H. Wang, C.S. Levin, N.J. Halas, Nanosphere arrays with controlled sub-10-nm gaps as surfaceenhanced Raman spectroscopy substrates. J. Am. Chem. Soc. 127(43), 14992–14993 (2005)
33. I.I. Smolyaninov, Y.J. Hung, C.C. Davis, Super-resolution optics using short-wavelength surface plasmon polaritons. J. Mod. Opt. 53(16–17), 2337–2347 (2006)
34. F. Wei, Z. Liu, Plasmonic structured illumination microscopy. Nano Lett. 10(7), 2531–2536
(2010)
35. T. Huang, X.X. Nancy, Multicolored nanometre-resolution mapping of single protein-ligand
binding complexes using far-field photo-stable optical nanoscopy (PHOTON). Nanoscale 3(9),
3567–3572 (2011)
36. K. Fujita, M. Kobayashi, S. Kawano, M. Yamanaka, S. Kawata, High-resolution confocal
microscopy by saturated excitation of fluorescence. Phys. Rev. Lett. 99(22), 228105 (2007)
37. Y. Sivan, Y. Sonnefraud, S. Ke´ na-Cohen, J.B. Pendry, S.A. Maier, Nanoparticle-assisted
stimulated-emission-depletion nanoscopy. ACS Nano 6(6), 5291–5296 (2012)
38. M. Yamanaka, N.I. Smith, K. Fujita, Introduction to super-resolution microscopy. Microscopy
63(3), 177–192 (2014)
39. H. Blom, J. Widengren, Stimulated emission depletion microscopy. Chem. Rev. 117(11),
7377–7427 (2017)
40. M. Hofmann, C. Eggeling, S. Jakobs, S.W. Hell, Breaking the diffraction barrier in fluorescence
microscopy at low light intensities by using reversibly photoswitchable proteins. Proc. Natl.
Acad. Sci. U. S. A. 102(49), 17565–17569 (2005)
41. S.W. Hell, M. Kroug, Ground-state-depletion fluorscence microscopy: a concept for breaking
the diffraction resolution limit. Appl. Phys. B 60(5), 495–497 (1995)
42. G. Deka, K. Nishida, K. Mochizuki, H.-X. Ding, K. Fujita, S.W. Chu, Resolution enhancement
in deep-tissue nanoparticle imaging based on plasmonic saturated excitation microscopy. APL
Photonics 3(3), 031301 (2018)
