1 Nanoplasmonics: From Present into Future
93
96. N. Swanson, C.J. Powell, Inelastic scattering cross sections for 20-kev electrons in Al, Be,
and polystyrene. Phys. Rev. 145, 195 (1966)
97. F.J.G. de Abajo, Optical excitations in electron microscopy. Rev. Mod. Phys. 82, 209 (2010)
98. A. Reyes-Coronado, R.G. Barrera, P.E. Batson, P.M. Echenique, A. Rivacoba, J. Aizpurua,
Electromagnetic forces on plasmonic nanoparticles induced by fast electron beams. Phys.
Rev. B 82, 235429-1-19 (2010)
99. B.B. Dasgupta, R. Fuchs, Polarizability of a small sphere including nonlocal effects. Phys.
Rev. B 24, 554–561 (1981)
100. J.B. Pendry, Negative refraction makes a perfect lens. Phys. Rev. Lett. 85, 3966–3969 (2000)
101. F.J.G. de Abajo, Nonlocal effects in the plasmons of strongly interacting nanoparticles, dimers,
and waveguides. J. Phys. Chem. C 112, 17983–17987 (2008)
102. U. Kreibig, M. Vollmer, Optical Properties of Metal Clusters (Springer, New York, 1995)
103. V.N. Pustovit, T.V. Shahbazyan, Quantum-size effects in SERS from noble-metal nanoparticles. Microelectron. J. 36, 559–563 (2005)
104. V.N. Pustovit, T.V. Shahbazyan, Finite-size effects in surface-enhanced Raman scattering
in noble-metal nanoparticles: a semiclassical approach. J. Opt. Soc. Am. A 23, 1369–1374
(2006)
105. V.N. Pustovit, T.V. Shahbazyan, Surface-enhanced Raman scattering on the nanoscale: a
microscopic approach. J. Opt. A 8, S208–S212 (2006)
106. V.N. Pustovit, T.V. Shahbazyan, SERS from molecules adsorbed on small Ag nanoparticles:
a microscopic model. Chem. Phys. Lett. 420, 469–473 (2006)
107. V.N. Pustovit, T.V. Shahbazyan, Microscopic theory of surface-enhanced Raman scattering
in noble-metal nanoparticles. Phys. Rev. B 73, 085408-1-7 (2006)
108. J. Zuloaga, E. Prodan, P. Nordlander, Quantum description of the plasmon resonances of a
nanoparticle dimer. Nano Lett. 9, 887–891 (2009)
109. P. Nordlander, J. Zuloaga, E. Prodan, Quantum plasmonics: Optical properties and tunability
of metallic nanorods. ACS Nano 4, 5269–5276 (2010)
110. E.D. Palik, Handbook of Optical Constants of Solids (Academic, San Diego, 1998)
111. D.E. Chang, A.S. Sorensen, P.R. Hemmer, M.D. Lukin, Quantum optics with surface plasmons. Phys. Rev. Lett. 97, 053002-1-4 (2006)
112. A.V. Akimov, A. Mukherjee, C.L. Yu, D.E. Chang, A.S. Zibrov, P.R. Hemmer, H. Park, M.D.
Lukin, Generation of single optical plasmons in metallic nanowires coupled to quantum dots.
Nature 450, 402–406 (2007)
113. P. Berini, A. Akbari, R.N. Tait, Surface plasmon waveguide Schottky detector. Opt. Express
18, 8505–8514 (2010)
114. C. Scales, I. Breukelaar, P. Berini, Surface-plasmon Schottky contact detector based on a
symmetric metal stripe in silicon. Opt. Lett. 35, 529–531 (2010)
115. U. Levy, I. Goykhman, B. Desiatov, J. Khurgin, J. Shappir, Locally oxidized silicon surfaceplasmon Schottky detector for telecom regime. Nano Lett. 11, 2219–2224 (2011)
116. S.M. Sze, Physics of Semiconductor Devices (Wiley-Interscience, Hoboken, 2007)
117. A.V. Butenko, V.M. Shalaev, M.I. Stockman, Giant impurity nonlinearities in optics of fractal
clusters. Sov. Phys. JETP 67, 60–69 (1988)
118. A.V. Karpov, A.K. Popov, S.G. Rautian, V.P. Safonov, V.V. Slabko, V.M. Shalaev, M.I. Stockman, Observation of a wavelength- and polarization-selective photomodification of silver
clusters. JETP Lett. 48, 571–573 (1988)
119. S.G. Rautian, V.P. Safonov, P.A. Chubakov, V.M. Shalaev, M.I. Stockman, Surface-enhanced
parametric scattering of light by silver clusters. JETP Lett. 47, 243–246 (1988)
120. V.M. Shalaev, M.I. Stockman, R. Botet, Resonant excitations and nonlinear optics of fractals.
Physica A 185, 181–186 (1992)
121. R.W. Boyd, Nonlinear Optics (Academic, London, 2003)
122. J. Kneipp, H. Kneipp, K. Kneipp, Two-photon vibrational spectroscopy for biosciences based
on surface-enhanced hyper-Raman scattering. Proc. Natl. Acad. Sci. USA 103, 17149–17153
(2006)
93
96. N. Swanson, C.J. Powell, Inelastic scattering cross sections for 20-kev electrons in Al, Be,
and polystyrene. Phys. Rev. 145, 195 (1966)
97. F.J.G. de Abajo, Optical excitations in electron microscopy. Rev. Mod. Phys. 82, 209 (2010)
98. A. Reyes-Coronado, R.G. Barrera, P.E. Batson, P.M. Echenique, A. Rivacoba, J. Aizpurua,
Electromagnetic forces on plasmonic nanoparticles induced by fast electron beams. Phys.
Rev. B 82, 235429-1-19 (2010)
99. B.B. Dasgupta, R. Fuchs, Polarizability of a small sphere including nonlocal effects. Phys.
Rev. B 24, 554–561 (1981)
100. J.B. Pendry, Negative refraction makes a perfect lens. Phys. Rev. Lett. 85, 3966–3969 (2000)
101. F.J.G. de Abajo, Nonlocal effects in the plasmons of strongly interacting nanoparticles, dimers,
and waveguides. J. Phys. Chem. C 112, 17983–17987 (2008)
102. U. Kreibig, M. Vollmer, Optical Properties of Metal Clusters (Springer, New York, 1995)
103. V.N. Pustovit, T.V. Shahbazyan, Quantum-size effects in SERS from noble-metal nanoparticles. Microelectron. J. 36, 559–563 (2005)
104. V.N. Pustovit, T.V. Shahbazyan, Finite-size effects in surface-enhanced Raman scattering
in noble-metal nanoparticles: a semiclassical approach. J. Opt. Soc. Am. A 23, 1369–1374
(2006)
105. V.N. Pustovit, T.V. Shahbazyan, Surface-enhanced Raman scattering on the nanoscale: a
microscopic approach. J. Opt. A 8, S208–S212 (2006)
106. V.N. Pustovit, T.V. Shahbazyan, SERS from molecules adsorbed on small Ag nanoparticles:
a microscopic model. Chem. Phys. Lett. 420, 469–473 (2006)
107. V.N. Pustovit, T.V. Shahbazyan, Microscopic theory of surface-enhanced Raman scattering
in noble-metal nanoparticles. Phys. Rev. B 73, 085408-1-7 (2006)
108. J. Zuloaga, E. Prodan, P. Nordlander, Quantum description of the plasmon resonances of a
nanoparticle dimer. Nano Lett. 9, 887–891 (2009)
109. P. Nordlander, J. Zuloaga, E. Prodan, Quantum plasmonics: Optical properties and tunability
of metallic nanorods. ACS Nano 4, 5269–5276 (2010)
110. E.D. Palik, Handbook of Optical Constants of Solids (Academic, San Diego, 1998)
111. D.E. Chang, A.S. Sorensen, P.R. Hemmer, M.D. Lukin, Quantum optics with surface plasmons. Phys. Rev. Lett. 97, 053002-1-4 (2006)
112. A.V. Akimov, A. Mukherjee, C.L. Yu, D.E. Chang, A.S. Zibrov, P.R. Hemmer, H. Park, M.D.
Lukin, Generation of single optical plasmons in metallic nanowires coupled to quantum dots.
Nature 450, 402–406 (2007)
113. P. Berini, A. Akbari, R.N. Tait, Surface plasmon waveguide Schottky detector. Opt. Express
18, 8505–8514 (2010)
114. C. Scales, I. Breukelaar, P. Berini, Surface-plasmon Schottky contact detector based on a
symmetric metal stripe in silicon. Opt. Lett. 35, 529–531 (2010)
115. U. Levy, I. Goykhman, B. Desiatov, J. Khurgin, J. Shappir, Locally oxidized silicon surfaceplasmon Schottky detector for telecom regime. Nano Lett. 11, 2219–2224 (2011)
116. S.M. Sze, Physics of Semiconductor Devices (Wiley-Interscience, Hoboken, 2007)
117. A.V. Butenko, V.M. Shalaev, M.I. Stockman, Giant impurity nonlinearities in optics of fractal
clusters. Sov. Phys. JETP 67, 60–69 (1988)
118. A.V. Karpov, A.K. Popov, S.G. Rautian, V.P. Safonov, V.V. Slabko, V.M. Shalaev, M.I. Stockman, Observation of a wavelength- and polarization-selective photomodification of silver
clusters. JETP Lett. 48, 571–573 (1988)
119. S.G. Rautian, V.P. Safonov, P.A. Chubakov, V.M. Shalaev, M.I. Stockman, Surface-enhanced
parametric scattering of light by silver clusters. JETP Lett. 47, 243–246 (1988)
120. V.M. Shalaev, M.I. Stockman, R. Botet, Resonant excitations and nonlinear optics of fractals.
Physica A 185, 181–186 (1992)
121. R.W. Boyd, Nonlinear Optics (Academic, London, 2003)
122. J. Kneipp, H. Kneipp, K. Kneipp, Two-photon vibrational spectroscopy for biosciences based
on surface-enhanced hyper-Raman scattering. Proc. Natl. Acad. Sci. USA 103, 17149–17153
(2006)
