Published: February 05, 2003Received: January 06, 2003Available on J-STAGE: April 10, 2009Accepted: -
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Date of correction: April 10, 2009Reason for correction: -Correction: CITATIONDetails: Wrong : 1) S. Kawata ed.: Near-field Optics and Surface Plasmon Polaritons, (Springer, Heidelberg, 2001). 2) S. Kawata, M. Ohtsu and M. Irie eds.: Nano-optics, (Springer, Heidelberg, 2002). 3) Y. Inouye and S. Kawata: Near-field scanning optical microscope using a metallic probe tip, Opt. Lett., 19, (1994) 159. 4) Y. Inouye and S. Kawata: Reflection-mode near-field optical microscope with a metallic probe tip for observing fine structures in semiconductor material, Opt. Commun., 134, (1997) 31. 5) Y. Inouye, N. Hayazawa, K. Hayashi, Z. Sekkat and S. Kawata: Near-field scanning optical microscope using a metallized cantilever tip for nanospectroscopy, Proc. SPIE, 3791, (1999) 40. 6) N. Hayazawa, Y. Inouye, Z. Sekkat and S. Kawata: Metallized tip amplification of near-field Raman scattering, Opt. Commun., 183, (2000) 333. 7) N. Hayazawa, Y. Inouye, Z. Sekkat and S. Kawata: Near-field Raman scattering enhanced by a metallized tip, Chem. Phys. Lett., 335, (2001) 369. 8) N. Hayazawa, Y. Inouye, Z. Sekkat and S. Kawata: Near-field Raman imaging of organic molecules by an apertureless metallic probe scanning optical microscope, J. Chem. Phys., 117, (2002) 1296. 9) A. Tarun, M.RH. Daza, N. Hayazawa, Y. Inouye and S. Kawata: Apertureless optical near field fabrication using atomic force microscope on photoresists, Appl. Phys. Lett., 80, (2002) 3400. 10) E Zenhausern, MT O'Boyle and H.K. Wickramasinghe: Apertureless near-field optical microscopy, Appl. Phys. Lett., 65, (1994) 1623. 11) J. Koglin, U. C. Fischer and H. Fuchs: Material contrast in scanning near-field optical microscopy at 1-10 nm resolution, Phys. Rev. B., 55, (1997) 7977. 12) J.P. Kottmann, O.J.E Martin, D.R. Smith and S. Schultz: Nonregularly shaped plasmon resonant nanoparticle as localized light source for near-field microscopy, J. Microsc., 202, (2001) 60. 13) J.T. Krug II, E.J. Sanchez and X.S. Xie: Design of near-field optical probes with optimal field enhancement by finite difference time domain electromagnetic simulation, J. Chem. Phys., 116, (2002) 10895. 14) N. Hayazawa, Y. Inouye and S. Kawata: Evanescent field excitation and measurement of dye fluorescence using a high N.A. objective lens in a metallic probe near-field scanning optical microscopy, journal of Microscopy, 194, (1999) 472. 16) A. Otto, I. Mrozek, H. Grabhorn and W. Akemann, J. Phys.: Condens. Matter. Surface-enhanced Raman-scattering, J. Phys. ?? Condens. Mat., 4, (1992) 1143. 17) S. Kawata, Y. Ishida, H. Watanabe, N. Hayazawa and Y. Inouye: Detection of an Adenine molecule by tip-enhanced Raman NSOM, Proceedings of 7th International Conference on Near Field Optics, (Rochester, 2002) 116.
Right : 1) S. Kawata ed.: Near-field Optics and Surface Plasmon Polaritons, (Springer, Heidelberg, 2001). 2) S. Kawata, M. Ohtsu and M. Irie eds.: Nano-optics, (Springer, Heidelberg, 2002). 3) Y. Inouye and S. Kawata: Near-field scanning optical microscope using a metallic probe tip, Opt. Lett., 19, (1994) 159. 4) Y. Inouye and S. Kawata: Reflection-mode near-field optical microscope with a metallic probe tip for observing fine structures in semiconductor material, Opt. Commun., 134, (1997) 31. 5) Y. Inouye, N. Hayazawa, K. Hayashi, Z. Sekkat and S. Kawata: Near-field scanning optical microscope using a metallized cantilever tip for nanospectroscopy, Proc. SPIE, 3791, (1999) 40. 6) N. Hayazawa, Y. Inouye, Z. Sekkat and S. Kawata: Metallized tip amplification of near-field Raman scattering, Opt. Commun., 183, (2000) 333. 7) N. Hayazawa, Y. Inouye, Z. Sekkat and S. Kawata: Near-field Raman scattering enhanced by a metallized tip, Chem. Phys. Lett., 335, (2001) 369. 8) N. Hayazawa, Y. Inouye, Z. Sekkat and S. Kawata: Near-field Raman imaging of organic molecules by an apertureless metallic probe scanning optical microscope, J. Chem. Phys., 117, (2002) 1296. 9) A. Tarun, M.RH. Daza, N. Hayazawa, Y. Inouye and S. Kawata: Apertureless optical near field fabrication using atomic force microscope on photoresists, Appl. Phys. Lett., 80, (2002) 3400. 10) E Zenhausern, MT O'Boyle and H.K. Wickramasinghe: Apertureless near-field optical microscopy, Appl. Phys. Lett., 65, (1994) 1623. 11) J. Koglin, U. C. Fischer and H. Fuchs: Material contrast in scanning near-field optical microscopy at 1-10 nm resolution, Phys. Rev. B., 55, (1997) 7977. 12) J.P. Kottmann, O.J.E Martin, D.R. Smith and S. Schultz: Nonregularly shaped plasmon resonant nanoparticle as localized light source for near-field microscopy, J. Microsc., 202, (2001) 60. 13) J.T. Krug II, E.J. Sanchez and X.S. Xie: Design of near-field optical probes with optimal field enhancement by finite difference time domain electromagnetic simulation, J. Chem. Phys., 116, (2002) 10895. 14) N. Hayazawa, Y. Inouye and S. Kawata: Evanescent field excitation and measurement of dye fluorescence using a high N.A. objective lens in a metallic probe near-field scanning optical microscopy, journal of Microscopy, 194, (1999) 472. 16) A. Otto, I. Mrozek, H. Grabhorn and W. Akemann, J. Phys.: Condens. Matter. Surface-enhanced Raman-scattering, J. Phys. Condens. Mat., 4, (1992) 1143. 17) S. Kawata, Y. Ishida, H. Watanabe, N. Hayazawa and Y. Inouye: Detection of an Adenine molecule by tip-enhanced Raman NSOM, Proceedings of 7th International Conference on Near Field Optics, (Rochester, 2002) 116.