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169. M.I. Stockman, Giant fluctuations of second harmonic generation on nanostructured surfaces.
Chem. Phys. 318, 156–162 (2005)
170. E. Fort, S. Gresillon, Surface enhanced fluorescence. J. Phys. D 41, 013001-1-31 (2008)
171. A.L. Efros, Physics and Geometry of Disorder: Percolation Theory (Mir, Moscow, 1986)
172. L.S. Levitov, Delocalization of vibrational modes caused by electric dipole interaction. Phys.
Rev. Lett. 64, 547–550 (1990)
173. D.A. Parshin, H.R. Schober, Multifractal structure of eigenstates in the Anderson model with
long-range off-diagonal disorder. Phys. Rev. B 57, 10232–10235 (1998)
174. A.L. Burin, Y. Kagan, L.A. Maksimov, I.Y. Polischuk, Dephasing rate in dielectric glasses at
ultralow temperatures. Phys. Rev. Lett. 80, 2945–2948 (1998)
175. M.I. Stockman, L.N. Pandey, L.S. Muratov, T.F. George, Giant fluctuations of local optical
fields in fractal clusters. Phys. Rev. Lett. 72, 2486–2489 (1994)
176. P. Ginzburg, N. Berkovitch, A. Nevet, I. Shor, M. Orenstein, Resonances on-demand for
plasmonic nano-particles. Nano Lett. 11, 2329–2333 (2011)
177. V.A. Markel, L.S. Muratov, M.I. Stockman, T.F. George, Theory and numerical simulation of
optical properties of fractal clusters. Phys. Rev. B 43, 8183 (1991)
178. M.I. Stockman, Electromagnetic theory of SERS, in Surface Enhanced Raman Scattering,
vol. 103, ed. by M.M.K. Kneipp, H. Kneipp (Springer, Heidelberg, 2006), pp. 47–66
179. M.I. Stockman, T. George, Photon tunneling microscope reveals local hot-spots. Phys. World
7, 27–28 (1994)
180. C. Awada, G. Barbillon, L. Douillard, J.J. Greffet, Experimental study of hot spots in gold/glass
nanocomposite films by photoemission electron microscopy. Phys. Rev. B 85, 045438-1-6
(2012)
181. H. Cang, A. Labno, C.G. Lu, X.B. Yin, M. Liu, C. Gladden, Y.M. Liu, X. Zhang, Probing
the electromagnetic field of a 15-nanometre hotspot by single molecule imaging. Nature 469,
385–388 (2011)
182. A. McLeod, A. Weber-Bargioni, Z. Zhang, S. Dhuey, B. Harteneck, J.B. Neaton, S. Cabrini,
P.J. Schuck, Nonperturbative visualization of nanoscale plasmonic field distributions via photon localization microscopy. Phys. Rev. Lett. 106, 037402 (2011)
183. A. Yildiz, J.N. Forkey, S.A. McKinney, T. Ha, Y.E. Goldman, P.R. Selvin, Myosin v walks
hand-over-hand: single fluorophore imaging with 1.5-nm localization. Science 300, 2061–
2065 (2003)
184. M.I. Stockman, M.F. Kling, U. Kleineberg, F. Krausz, Attosecond nanoplasmonic field microscope. Nat. Photonics 1, 539–544 (2007)
185. T. Klar, M. Perner, S. Grosse, G. von Plessen, W. Spirkl, J. Feldman, Surface-plasmon resonances in single metallic nanoparticles. Phys. Rev. Lett. 80, 4249–4252 (1998)
186. J. Lehmann, M. Merschdorf, W. Pfeiffer, A. Thon, S. Voll, G. Gerber, Surface plasmon
dynamics in silver nanoparticles studied by femtosecond time-resolved photoemission. Phys.
Rev. Lett. 85, 2921–2924 (2000)
187. J. Bosbach, C. Hendrich, F. Stietz, T. Vartanyan, F. Trager, Ultrafast dephasing of surface
plasmon excitation in silver nanoparticles: influence of particle size, shape, and chemical
surrounding. Phys. Rev. Lett. 89, 257404-1-4 (2002)
188. C. Hendrich, J. Bosbach, F. Stietz, F. Hubenthal, T. Vartanyan, F. Trager, Chemical interface
damping of surface plasmon excitation in metal nanoparticles: A study by persistent spectral
hole burning. Appl. Phys. B 76, 869–875 (2003)
189. T. Zentgraf, A. Christ, J. Kuhl, H. Giessen, Tailoring the ultrafast dephasing of quasiparticles
in metallic photonic crystals. Phys. Rev. Lett. 93, 243901-1-4 (2004)
190. L. Novotny, B. Hecht, Principles of Nano-Optics (Cambridge University Press, Cambridge,
2006)
191. A. Ono, J. Kato, S. Kawata, Subwavelength optical imaging through a metallic nanorod array.
Phys. Rev. Lett. 95, 267407-1-4 (2005)
192. G. Shvets, S. Trendafilov, J.B. Pendry, A. Sarychev, Guiding, focusing, and sensing on the
subwavelength scale using metallic wire arrays. Phys. Rev. Lett. 99, 053903-1-4 (2007)
193. J.B. Pendry, Perfect cylindrical lenses. Opt. Express 11, 755–760 (2003)
M. I. Stockman
169. M.I. Stockman, Giant fluctuations of second harmonic generation on nanostructured surfaces.
Chem. Phys. 318, 156–162 (2005)
170. E. Fort, S. Gresillon, Surface enhanced fluorescence. J. Phys. D 41, 013001-1-31 (2008)
171. A.L. Efros, Physics and Geometry of Disorder: Percolation Theory (Mir, Moscow, 1986)
172. L.S. Levitov, Delocalization of vibrational modes caused by electric dipole interaction. Phys.
Rev. Lett. 64, 547–550 (1990)
173. D.A. Parshin, H.R. Schober, Multifractal structure of eigenstates in the Anderson model with
long-range off-diagonal disorder. Phys. Rev. B 57, 10232–10235 (1998)
174. A.L. Burin, Y. Kagan, L.A. Maksimov, I.Y. Polischuk, Dephasing rate in dielectric glasses at
ultralow temperatures. Phys. Rev. Lett. 80, 2945–2948 (1998)
175. M.I. Stockman, L.N. Pandey, L.S. Muratov, T.F. George, Giant fluctuations of local optical
fields in fractal clusters. Phys. Rev. Lett. 72, 2486–2489 (1994)
176. P. Ginzburg, N. Berkovitch, A. Nevet, I. Shor, M. Orenstein, Resonances on-demand for
plasmonic nano-particles. Nano Lett. 11, 2329–2333 (2011)
177. V.A. Markel, L.S. Muratov, M.I. Stockman, T.F. George, Theory and numerical simulation of
optical properties of fractal clusters. Phys. Rev. B 43, 8183 (1991)
178. M.I. Stockman, Electromagnetic theory of SERS, in Surface Enhanced Raman Scattering,
vol. 103, ed. by M.M.K. Kneipp, H. Kneipp (Springer, Heidelberg, 2006), pp. 47–66
179. M.I. Stockman, T. George, Photon tunneling microscope reveals local hot-spots. Phys. World
7, 27–28 (1994)
180. C. Awada, G. Barbillon, L. Douillard, J.J. Greffet, Experimental study of hot spots in gold/glass
nanocomposite films by photoemission electron microscopy. Phys. Rev. B 85, 045438-1-6
(2012)
181. H. Cang, A. Labno, C.G. Lu, X.B. Yin, M. Liu, C. Gladden, Y.M. Liu, X. Zhang, Probing
the electromagnetic field of a 15-nanometre hotspot by single molecule imaging. Nature 469,
385–388 (2011)
182. A. McLeod, A. Weber-Bargioni, Z. Zhang, S. Dhuey, B. Harteneck, J.B. Neaton, S. Cabrini,
P.J. Schuck, Nonperturbative visualization of nanoscale plasmonic field distributions via photon localization microscopy. Phys. Rev. Lett. 106, 037402 (2011)
183. A. Yildiz, J.N. Forkey, S.A. McKinney, T. Ha, Y.E. Goldman, P.R. Selvin, Myosin v walks
hand-over-hand: single fluorophore imaging with 1.5-nm localization. Science 300, 2061–
2065 (2003)
184. M.I. Stockman, M.F. Kling, U. Kleineberg, F. Krausz, Attosecond nanoplasmonic field microscope. Nat. Photonics 1, 539–544 (2007)
185. T. Klar, M. Perner, S. Grosse, G. von Plessen, W. Spirkl, J. Feldman, Surface-plasmon resonances in single metallic nanoparticles. Phys. Rev. Lett. 80, 4249–4252 (1998)
186. J. Lehmann, M. Merschdorf, W. Pfeiffer, A. Thon, S. Voll, G. Gerber, Surface plasmon
dynamics in silver nanoparticles studied by femtosecond time-resolved photoemission. Phys.
Rev. Lett. 85, 2921–2924 (2000)
187. J. Bosbach, C. Hendrich, F. Stietz, T. Vartanyan, F. Trager, Ultrafast dephasing of surface
plasmon excitation in silver nanoparticles: influence of particle size, shape, and chemical
surrounding. Phys. Rev. Lett. 89, 257404-1-4 (2002)
188. C. Hendrich, J. Bosbach, F. Stietz, F. Hubenthal, T. Vartanyan, F. Trager, Chemical interface
damping of surface plasmon excitation in metal nanoparticles: A study by persistent spectral
hole burning. Appl. Phys. B 76, 869–875 (2003)
189. T. Zentgraf, A. Christ, J. Kuhl, H. Giessen, Tailoring the ultrafast dephasing of quasiparticles
in metallic photonic crystals. Phys. Rev. Lett. 93, 243901-1-4 (2004)
190. L. Novotny, B. Hecht, Principles of Nano-Optics (Cambridge University Press, Cambridge,
2006)
191. A. Ono, J. Kato, S. Kawata, Subwavelength optical imaging through a metallic nanorod array.
Phys. Rev. Lett. 95, 267407-1-4 (2005)
192. G. Shvets, S. Trendafilov, J.B. Pendry, A. Sarychev, Guiding, focusing, and sensing on the
subwavelength scale using metallic wire arrays. Phys. Rev. Lett. 99, 053903-1-4 (2007)
193. J.B. Pendry, Perfect cylindrical lenses. Opt. Express 11, 755–760 (2003)
