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Tip Enhancement
Details
Klappentext This book discusses the recent advances in the area of near-field Raman scattering, mainly focusing on tip-enhanced and surface-enhanced Raman scattering. Some of the key features covered here are the optical structuring and manipulations, single molecule sensitivity, analysis of single-walled carbon nanotubes, and analytic applications in chemistry, biology and material sciences. This book also discusses the plasmonic materials for better enhancement, and optical antennas. Further, near-field microscopy based on second harmonic generation is also discussed. Chapters have been written by some of the leading scientists in this field, who present some of their recent work in this field. Zusammenfassung Discusses the advances in the area of near-field Raman scattering! focusing on tip-enhanced and surface-enhanced Raman scattering. This work covers such features as: the optical structuring and manipulations! single molecule sensitivity! analysis of single-walled carbon nanotubes! and analytic applications in chemistry! and material sciences. Inhaltsverzeichnis Preface 1. Plasmonic Materials for Surface-Enhanced and tip-Enhanced Raman Spectroscopy, (M.A. Young, J.A. Dieringer, and R.P. van Duyne) 2. Towards single molecule sensitivity in surface enhanced Raman scattering, (M. Futamata, and Y. Maruyama) 3. Near field effects in tip-enhanced Raman scattering, (Y. Inouye, P. Verma, T. Ichimura, and S. Kawata) 4. Use of tip-enhanced vibrational spectroscopy for analytical applications in chemistry, biology, and materials science, (T. Schmid, B.-S. Yeo, W. Zhang, and R. Zenobi) 5. Tip-enhanced Optical Spectroscopy of Single-walled Carbon Nanotubes, (A. Hartschuh, H. Qian, A.J. Meixner, N. Anderson, and L. Novotny) 6. Scanning Nano-Raman Spectroscopy of Silicon and Other Semiconducting Materials, (D. Mehtani, N. Lee, R.D. Hartschuh, A. Kisliuk, M.D. Foster, A.P. Sokolov, and J.F. Maguire) 7. Near-field Optical Structuring and Manipulation Based on Local Field Enhancement in the Vicinity of Metal Nano Structures, (R. Bachelot) 8. Apertureless near-field microscopy of second-harmonic generation, (A. Zayats) 9. Single emitters and optical antennas, (B. Hecht)...
Zusammenfassung
Discusses the advances in the area of near-field Raman scattering, focusing on tip-enhanced and surface-enhanced Raman scattering. This work covers such features as: the optical structuring and manipulations, single molecule sensitivity, analysis of single-walled carbon nanotubes, and analytic applications in chemistry, and material sciences.
Inhalt
Preface
- Plasmonic Materials for Surface-Enhanced and tip-Enhanced Raman Spectroscopy, (M.A. Young, J.A. Dieringer, and R.P. van Duyne)
- Towards single molecule sensitivity in surface enhanced Raman scattering, (M. Futamata, and Y. Maruyama)
- Near field effects in tip-enhanced Raman scattering, (Y. Inouye, P. Verma, T. Ichimura, and
S. Kawata) - Use of tip-enhanced vibrational spectroscopy for analytical applications in chemistry, biology, and materials science, (T. Schmid, B.-S. Yeo, W. Zhang, and R. Zenobi)
- Tip-enhanced Optical Spectroscopy of Single-walled Carbon Nanotubes, (A. Hartschuh, H. Qian,
A.J. Meixner, N. Anderson, and L. Novotny) - Scanning Nano-Raman Spectroscopy of Silicon and Other Semiconducting Materials, (D. Mehtani,
N. Lee, R.D. Hartschuh, A. Kisliuk, M.D. Foster,
A.P. Sokolov, and J.F. Maguire) - Near-field Optical Structuring and Manipulation Based on Local Field Enhancement in the Vicinity of Metal Nano Structures, (R. Bachelot)
- Apertureless near-field microscopy of second-harmonic generation, (A. Zayats)
- Single emitters and optical antennas, (B. Hecht)
Weitere Informationen
- Allgemeine Informationen
- GTIN 09780444520586
- Genre Technology Encyclopedias
- Editor Kawata Satoshi, Shalaev Vladimir M.
- Anzahl Seiten 338
- Herausgeber Elsevier Science & Technology
- Größe H228mm x B161mm x T21mm
- Jahr 2006
- EAN 9780444520586
- Format Fester Einband
- ISBN 978-0-444-52058-6
- Veröffentlichung 28.12.2006
- Titel Tip Enhancement
- Gewicht 640g
- Sprache Englisch