6 Second-Order Nonlinear Optical Properties of Plasmonic Nanostructures
233
81. M. Danckwerts, L. Novotny, Optical frequency mixing at coupled gold nanoparticles. Phys.
Rev. Lett. 98, 026104 (2007)
82. K. Li, M.I. Stockman, D.J. Bergman, Enhanced second harmonic generation in a self-similar
chain of metal nanospheres. Phys. Rev. B 72, 153401 (2005)
83. B. Canfield, H. Husu, J. Laukkanen, B. Bai, M. Kuittinen, J. Turunen, M. Kauranen, Local field
asymmetry drives second-harmonic generation in noncentrosymmetric nanodimers. Nano
Lett. 7, 1251–1255 (2007)
84. H. Husu, B. Canfield, J. Laukkanen, B. Bai, M. Kuittinen, J. Turunen, M. Kauranen, Chiral
coupling in gold nanodimers. Appl. Phys. Lett. 93, 183115 (2008)
85. J. Maki, M. Kauranen, A. Persoons, Surface second-harmonic generation from chiral materials. Phys. Rev. B 51, 1425–1434 (1995)
86. P. Biagioni, J.-S. Huang, B. Hecht, Nanoantennas for visible and infrared radiation. Rep. Prog.
Phys. 75, 024402 (2012)
87. H. Duan, A.I. Fernandez-Dominguez, M. Bosman, S.A. Maier, J.K.W. Yang, Nanoplasmonics:
Classical down to the nanometer scale. Nano Lett. 12, 1683–1689 (2012)
88. R. Czaplicki, M. Zdanowicz, K. Koskinen, J. Laukkanen, M. Kuittinen, M. Kauranen, Dipole
limit in second-harmonic generation from arrays of gold nanoparticles. Opt. Express 19,
26866–26871 (2011)
89. M. Siltanen, S. Leivo, P. Voima, M. Kauranen, P. Karvinen, P. Vahimaa, M. Kuittinen, Strong
enhancement of second-harmonic generation in all-dielectric resonant waveguide grating.
Appl. Phys. Lett. 91, 111109 (2007)
90. A. Saari, G. Genty, M. Siltanen, P. Karvinen, P. Vahimaa, M. Kuittinen, M. Kauranen, Giant enhancement of second-harmonic generation in multiple diffraction orders from sub-wavelength
resonant waveguide grating. Opt. Express 18, 12298–12303 (2010)
91. H. Husu, J. Mäkitalo, R. Siikanen, G. Genty, H. Pietarinen, J. Lehtolahti, J. Laukkanen, M.
Kuittinen, M. Kauranen, Spectral control in anisotropic resonance-domain metamaterials.
Opt. Lett. 36, 2375–2377 (2011)
92. H. Husu, R. Siikanen, J. Mäkitalo, J. Lehtolahti, J. Laukkanen, M. Kuittinen, M. Kauranen,
Metamaterials with tailored nonlinear optical response. Nano Lett. 12, 673–677 (2012)
93. M. Karamehmedovic, R. Schuh, V. Schmidt, T. Wriedt, C. Matyssek, W. Hergert, A. Stalmashonak, G. Seifert, O. Stranik, Comparison of numerical methods in near-field computation
for metallic nanoparticles. Opt. Express 19, 8939–8953 (2011)
94. M.G. Araújo, J.M. Taboada, D.M. Solís, J. Rivero, L. Landesa, F. Obelleiro, Comparison of
surface integral equation formulations for electromagnetic analysis of plasmonic nanoscatterers. Opt. Express 20, 9161–9171 (2012)
95. R. Garg, Analytical and Computational Methods in Electromagnetics. Artech House Electromagnetic Analysis Series (Artech House, London, 2008)
96. Y.R. Shen, Surface properties probed by second-harmonic and sum-frequency generation.
Nature 337, 519–525 (1989)
97. N. Bloembergen, R. Chang, S. Jha, C. Lee, Optical second-harmonic generation in reflection
from media with inversion symmetry. Phys. Rev. 174, 813–822 (1968)
98. D. Colton, R. Kress, Integral Equation Methods in Scattering Theory. Pure and Applied
Mathematics Series (Krieger Publishing Company, Malabar, 1991)
99. J.D. Jackson, Classical Electrodynamics, 2nd edn. (Wiley, New York, 1975)
100. W. Gibson, The Method of Moments in Electromagnetics. Electrical Engineering (Chapman
and Hall/CRC, New York, 2008)
101. J. Sipe, New green-function formalism for surface optics. J. Opt. Soc. Am. B 4, 481–498
(1987)
102. L. Cao, N.C. Panoiu, R.M. Osgood, Surface second-harmonic generation from surface plasmon waves scattered by metallic nanostructures. Phys. Rev. B 75, 205401 (2007)
103. L. Cao, N.C. Panoiu, R.D.R. Bhat, R.M. Osgood, Surface second-harmonic generation from
scattering of surface plasmon polaritons from radially symmetric nanostructures. Phys. Rev.
B 79, 235416 (2009)
233
81. M. Danckwerts, L. Novotny, Optical frequency mixing at coupled gold nanoparticles. Phys.
Rev. Lett. 98, 026104 (2007)
82. K. Li, M.I. Stockman, D.J. Bergman, Enhanced second harmonic generation in a self-similar
chain of metal nanospheres. Phys. Rev. B 72, 153401 (2005)
83. B. Canfield, H. Husu, J. Laukkanen, B. Bai, M. Kuittinen, J. Turunen, M. Kauranen, Local field
asymmetry drives second-harmonic generation in noncentrosymmetric nanodimers. Nano
Lett. 7, 1251–1255 (2007)
84. H. Husu, B. Canfield, J. Laukkanen, B. Bai, M. Kuittinen, J. Turunen, M. Kauranen, Chiral
coupling in gold nanodimers. Appl. Phys. Lett. 93, 183115 (2008)
85. J. Maki, M. Kauranen, A. Persoons, Surface second-harmonic generation from chiral materials. Phys. Rev. B 51, 1425–1434 (1995)
86. P. Biagioni, J.-S. Huang, B. Hecht, Nanoantennas for visible and infrared radiation. Rep. Prog.
Phys. 75, 024402 (2012)
87. H. Duan, A.I. Fernandez-Dominguez, M. Bosman, S.A. Maier, J.K.W. Yang, Nanoplasmonics:
Classical down to the nanometer scale. Nano Lett. 12, 1683–1689 (2012)
88. R. Czaplicki, M. Zdanowicz, K. Koskinen, J. Laukkanen, M. Kuittinen, M. Kauranen, Dipole
limit in second-harmonic generation from arrays of gold nanoparticles. Opt. Express 19,
26866–26871 (2011)
89. M. Siltanen, S. Leivo, P. Voima, M. Kauranen, P. Karvinen, P. Vahimaa, M. Kuittinen, Strong
enhancement of second-harmonic generation in all-dielectric resonant waveguide grating.
Appl. Phys. Lett. 91, 111109 (2007)
90. A. Saari, G. Genty, M. Siltanen, P. Karvinen, P. Vahimaa, M. Kuittinen, M. Kauranen, Giant enhancement of second-harmonic generation in multiple diffraction orders from sub-wavelength
resonant waveguide grating. Opt. Express 18, 12298–12303 (2010)
91. H. Husu, J. Mäkitalo, R. Siikanen, G. Genty, H. Pietarinen, J. Lehtolahti, J. Laukkanen, M.
Kuittinen, M. Kauranen, Spectral control in anisotropic resonance-domain metamaterials.
Opt. Lett. 36, 2375–2377 (2011)
92. H. Husu, R. Siikanen, J. Mäkitalo, J. Lehtolahti, J. Laukkanen, M. Kuittinen, M. Kauranen,
Metamaterials with tailored nonlinear optical response. Nano Lett. 12, 673–677 (2012)
93. M. Karamehmedovic, R. Schuh, V. Schmidt, T. Wriedt, C. Matyssek, W. Hergert, A. Stalmashonak, G. Seifert, O. Stranik, Comparison of numerical methods in near-field computation
for metallic nanoparticles. Opt. Express 19, 8939–8953 (2011)
94. M.G. Araújo, J.M. Taboada, D.M. Solís, J. Rivero, L. Landesa, F. Obelleiro, Comparison of
surface integral equation formulations for electromagnetic analysis of plasmonic nanoscatterers. Opt. Express 20, 9161–9171 (2012)
95. R. Garg, Analytical and Computational Methods in Electromagnetics. Artech House Electromagnetic Analysis Series (Artech House, London, 2008)
96. Y.R. Shen, Surface properties probed by second-harmonic and sum-frequency generation.
Nature 337, 519–525 (1989)
97. N. Bloembergen, R. Chang, S. Jha, C. Lee, Optical second-harmonic generation in reflection
from media with inversion symmetry. Phys. Rev. 174, 813–822 (1968)
98. D. Colton, R. Kress, Integral Equation Methods in Scattering Theory. Pure and Applied
Mathematics Series (Krieger Publishing Company, Malabar, 1991)
99. J.D. Jackson, Classical Electrodynamics, 2nd edn. (Wiley, New York, 1975)
100. W. Gibson, The Method of Moments in Electromagnetics. Electrical Engineering (Chapman
and Hall/CRC, New York, 2008)
101. J. Sipe, New green-function formalism for surface optics. J. Opt. Soc. Am. B 4, 481–498
(1987)
102. L. Cao, N.C. Panoiu, R.M. Osgood, Surface second-harmonic generation from surface plasmon waves scattered by metallic nanostructures. Phys. Rev. B 75, 205401 (2007)
103. L. Cao, N.C. Panoiu, R.D.R. Bhat, R.M. Osgood, Surface second-harmonic generation from
scattering of surface plasmon polaritons from radially symmetric nanostructures. Phys. Rev.
B 79, 235416 (2009)
