122
K. Kneipp et al.
23. A. Otto, Surface- enhanced Raman scattering: ‘classical’ and ‘chemical’ origins, in Light
Scattering in Solids IV. Electronic Scattering, Spin Effects, SERS and Morphic Effects, ed. by
M. Cardona, G. Guntherodt (Springer, Berlin, 1984), pp. 289–418
24. A. Campion, P. Kambhampati, Surface-enhanced Raman scattering. Chem. Soc. Rev. 27, 241–
250 (1998)
25. J.R. Lombardi, R.L. Birke, Time-dependent picture of the charge-transfer contributions to
surface enhanced Raman spectroscopy. J. Chem. Phys. 126, 244709 (2007)
26. M.I. Stockman, Electromagnetic theory of SERS, in Surface-Enhanced Raman Scattering:
Physics and Applications (Springer, Berlin, 2006), pp. 47–65
27. G.C. Schatz, M.A. Young, R.P. Van Duyne, Electromagnetic mechanism of SERS, in SurfaceEnhanced Raman Scattering: Physics and Applications (Springer, Berlin, 2006), pp. 19–45
28. R.F. Aroca, D.J. Ross, C. Domingo, Surface-enhanced infrared spectroscopy. Appl. Spectrosc.
58, 324A–338A (2004)
29. F. Neubrech, A. Pucci, T.W. Cornelius, S. Karim, A. Garcia-Etxarri, J. Aizpurua, Resonant
plasmonic and vibrational coupling in a Tailored nanoantenna for infrared detection. Phys.
Rev. Lett. 101, 4 (2008)
30. A. Pucci, F. Neubrech, D. Weber, S. Hong, T. Toury, M.L. de la Chapelle, Surface enhanced
infrared spectroscopy using gold nanoantennas. Phys. Status Solidi B Basic Solid State Phys.
247, 2071–2074 (2010)
31. F. Le, D.W. Brandl, Y.A. Urzhumov, H. Wang, J. Kundu, N.J. Halas, J. Aizpurua, P. Nordlander,
Metallic nanoparticle arrays: a common substrate for both surface-enhanced Raman scattering
and surface-enhanced infrared absorption. ACS Nano 2, 707–718 (2008)
32. V. Liberman, R. Adato, T.H. Jeys, B.G. Saar, S. Erramilli, H. Altug, Rational design and
optimization of plasmonic nanoarrays for surface enhanced infrared spectroscopy. Opt. Express
20, 11953–11966 (2012)
33. R. Hillenbrand, T. Taubner, F. Keilmann, Phonon-enhanced light-matter interaction at the
nanometre scale. Nature 418, 159–162 (2002)
34. M.S. Anderson, Enhanced infrared absorption with dielectric nanoparticles. Appl. Phys. Lett.
83, 2964–2966 (2003)
35. J. Kneipp, H. Kneipp, K. Kneipp, Two-photon vibrational spectroscopy for biosciences based
on surface-enhanced hyper-Raman scattering. Proc. Nat. Acad. Sci. U.S.A. 103, 17149–17153
(2006)
36. H. Kneipp, K. Kneipp, F. Seifert, Surface-enhanced hyper-Raman scattering (SEHRS) and
surface-enhanced Raman scattering (SERS) by means of mode-locked Ti:sapphire laser excitation. Chem. Phys. Lett. 212, 374–378 (1993)
37. T. Itoh, Y. Ozaki, H. Yoshikawa, T. Ihama, H. Masuhara, Hyper-Rayleigh scattering and hyperRaman scattering of dye-adsorbed silver nanoparticles induced by a focused continuous-wave
near-infrared laser. Appl. Phys. Lett. 88, 084102 (2006)
38. L. Weinan, A. Meyers-Kelley, SEHRS spectra on Ag films at pulse energies below 2 pJ. J. Am.
Chem. Soc. 128, 3492–3493 (2006)
39. K. Kneipp, Y. Wang, H. Kneipp, I. Itzkan, R.R. Dasari, M.S. Feld, Population pumping of
ecited vibrational states by spontaneous surface-enhanced Raman scattering. Phys. Rev. Lett.
76, 2444 (1996)
40. K. Kneipp, H. Kneipp, P. Corio, S.D.M. Brown, K. Shafer, J. Motz, L.T. Perelman, E.B. Hanlon,
A. Marucci, G. Dresselhaus, M.S. Dresselhaus, Surface-enhanced and normal Stokes and antiStokes Raman spectroscopy of single-walled carbon nanotubes. Phys. Rev. Lett. 84, 3470–3473
(2000)
41. K. Kneipp, H. Kneipp, R. Manoharan, I. Itzkan, R.R. Dasari, M.S. Feld, Surface-enhanced
Raman scattering (SERS)—a new tool for single molecule detection and identification.
Bioimaging 6, 104–110 (1998)
42. K. Kneipp, H. Kneipp, I. Itzkan, R.R. Dasari, M.S. Feld, M.S. Dresselhaus, Nonlinear Raman
Probe of Single Molecules Attached to Colloidal Silver and Gold Clusters, in Optical Properties
of Nanostructured Random Media (Springer, Berlin, 2002)
K. Kneipp et al.
23. A. Otto, Surface- enhanced Raman scattering: ‘classical’ and ‘chemical’ origins, in Light
Scattering in Solids IV. Electronic Scattering, Spin Effects, SERS and Morphic Effects, ed. by
M. Cardona, G. Guntherodt (Springer, Berlin, 1984), pp. 289–418
24. A. Campion, P. Kambhampati, Surface-enhanced Raman scattering. Chem. Soc. Rev. 27, 241–
250 (1998)
25. J.R. Lombardi, R.L. Birke, Time-dependent picture of the charge-transfer contributions to
surface enhanced Raman spectroscopy. J. Chem. Phys. 126, 244709 (2007)
26. M.I. Stockman, Electromagnetic theory of SERS, in Surface-Enhanced Raman Scattering:
Physics and Applications (Springer, Berlin, 2006), pp. 47–65
27. G.C. Schatz, M.A. Young, R.P. Van Duyne, Electromagnetic mechanism of SERS, in SurfaceEnhanced Raman Scattering: Physics and Applications (Springer, Berlin, 2006), pp. 19–45
28. R.F. Aroca, D.J. Ross, C. Domingo, Surface-enhanced infrared spectroscopy. Appl. Spectrosc.
58, 324A–338A (2004)
29. F. Neubrech, A. Pucci, T.W. Cornelius, S. Karim, A. Garcia-Etxarri, J. Aizpurua, Resonant
plasmonic and vibrational coupling in a Tailored nanoantenna for infrared detection. Phys.
Rev. Lett. 101, 4 (2008)
30. A. Pucci, F. Neubrech, D. Weber, S. Hong, T. Toury, M.L. de la Chapelle, Surface enhanced
infrared spectroscopy using gold nanoantennas. Phys. Status Solidi B Basic Solid State Phys.
247, 2071–2074 (2010)
31. F. Le, D.W. Brandl, Y.A. Urzhumov, H. Wang, J. Kundu, N.J. Halas, J. Aizpurua, P. Nordlander,
Metallic nanoparticle arrays: a common substrate for both surface-enhanced Raman scattering
and surface-enhanced infrared absorption. ACS Nano 2, 707–718 (2008)
32. V. Liberman, R. Adato, T.H. Jeys, B.G. Saar, S. Erramilli, H. Altug, Rational design and
optimization of plasmonic nanoarrays for surface enhanced infrared spectroscopy. Opt. Express
20, 11953–11966 (2012)
33. R. Hillenbrand, T. Taubner, F. Keilmann, Phonon-enhanced light-matter interaction at the
nanometre scale. Nature 418, 159–162 (2002)
34. M.S. Anderson, Enhanced infrared absorption with dielectric nanoparticles. Appl. Phys. Lett.
83, 2964–2966 (2003)
35. J. Kneipp, H. Kneipp, K. Kneipp, Two-photon vibrational spectroscopy for biosciences based
on surface-enhanced hyper-Raman scattering. Proc. Nat. Acad. Sci. U.S.A. 103, 17149–17153
(2006)
36. H. Kneipp, K. Kneipp, F. Seifert, Surface-enhanced hyper-Raman scattering (SEHRS) and
surface-enhanced Raman scattering (SERS) by means of mode-locked Ti:sapphire laser excitation. Chem. Phys. Lett. 212, 374–378 (1993)
37. T. Itoh, Y. Ozaki, H. Yoshikawa, T. Ihama, H. Masuhara, Hyper-Rayleigh scattering and hyperRaman scattering of dye-adsorbed silver nanoparticles induced by a focused continuous-wave
near-infrared laser. Appl. Phys. Lett. 88, 084102 (2006)
38. L. Weinan, A. Meyers-Kelley, SEHRS spectra on Ag films at pulse energies below 2 pJ. J. Am.
Chem. Soc. 128, 3492–3493 (2006)
39. K. Kneipp, Y. Wang, H. Kneipp, I. Itzkan, R.R. Dasari, M.S. Feld, Population pumping of
ecited vibrational states by spontaneous surface-enhanced Raman scattering. Phys. Rev. Lett.
76, 2444 (1996)
40. K. Kneipp, H. Kneipp, P. Corio, S.D.M. Brown, K. Shafer, J. Motz, L.T. Perelman, E.B. Hanlon,
A. Marucci, G. Dresselhaus, M.S. Dresselhaus, Surface-enhanced and normal Stokes and antiStokes Raman spectroscopy of single-walled carbon nanotubes. Phys. Rev. Lett. 84, 3470–3473
(2000)
41. K. Kneipp, H. Kneipp, R. Manoharan, I. Itzkan, R.R. Dasari, M.S. Feld, Surface-enhanced
Raman scattering (SERS)—a new tool for single molecule detection and identification.
Bioimaging 6, 104–110 (1998)
42. K. Kneipp, H. Kneipp, I. Itzkan, R.R. Dasari, M.S. Feld, M.S. Dresselhaus, Nonlinear Raman
Probe of Single Molecules Attached to Colloidal Silver and Gold Clusters, in Optical Properties
of Nanostructured Random Media (Springer, Berlin, 2002)
