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book: Volume 2 Instrumentation, Simulation & Materials
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Volume 2 Instrumentation, Simulation & Materials

  • Edited by: Alfred J. Meixner , Monika Fleischer , Dieter P. Kern , Antonio Cricenti , Ulrich Hohenester and Manuela Scarselli
Part of the multi-volume work
Optical Nanospectroscopy
Language: English
Published/Copyright: 2025
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About this book

This comprehensive two-volume graduate textbook presents the theoretical basis of optics and spectroscopy together with their advancement to the nanoscale, relevant experimental and numerical techniques, and selected emerging applications of nanospectroscopy. The work aims at students of the natural sciences and interested readers entering this fascinating interdisciplinary field.

Volume 2 covers theoretical and experimental methods essential for nanospectroscopy. The work explains necessary instrumentation, gives insights into simulation tools and introduces a wide variety of nanomaterials typically investigated by nanospectroscopy.

Vol. 1: Fundamentals & Methods.

The work "Optical Nanospectroscopy. Applications" presents numerous examples in modern photonics and optical sensing or state-of-the-art applications in material, chemical and biological sciences.

  • A first to cover the whole area at textbook level.
  • Covers comprehensively the theoretical basis as well as experimental and numerical techniques.
  • Discusses optical, electronic and chemical properties.

Author / Editor information

Alfred J. Meixner is a professor of physical chemistry and the director of the Institute of Physical and Theoretical Chemistry at the Eberhard Karls University in Tübingen. He studied chemistry at the Swiss Federal Institute of Technology (ETH), where he received his PhD in 1988 and earned his habilitation in Physics from the University of Basel in 1996. His research interests are in optical single molecule spectroscopy, confocal and near-field optical laser-microscopy and optical nanospectroscopy.

Monika Fleischer is a professor of physics at the Institute for Applied Physics at Eberhard Karls University in Tübingen, where she studied physics and received her PhD in 2006. She held an invited professorship at the University of Technology of Troyes and serves on the board of directors of the Tübingen Center for Light-Matter-Interaction, Sensors and Analytics (LISA+). Her research focuses on plasmonic nanostructures, nanofabrication, and optical spectroscopy of hybrid nanosystems.

Dieter P. Kern is an emeritus professor of physics at the Institute for Applied Physics of the Eberhard Karls University in Tübingen. He studied physics at the University of Tübingen, where he received his PhD in 1978. He then spent 15 years at the IBM T.J. Watson Research Center working on exploratory devices and nanofabrication. In 1993 he initiated the Nanostructures and Nanofabrication chair in Tübingen with emphasis on interdisciplinary applications of nanostructure physics and technology.

Antonio Cricenti is a Research Director at the Institute of structure of matter (ISM), National Research Council (CNR). He studied physics at the University of Rome "La Sapienza" graduating in 1983. He was visiting researcher at the University of Linkoping, Sweden, at IBM, Ruschlikon and Lausanne Polytechnique, Switzerland and Adjunct Professor at the University of Nashville, TN, USA. He works on Surface Science and has developed Scanning Probe Microscopy applied to early diagnosis of cancer.

Ulrich Hohenester is a professor of theoretical physics at the University of Graz, Austria. In 1997 he received his PhD from the University of Graz and spent several years as a Postdoc in Modena. He works on the theoretical description of nanoscale light–matter interactions with a strong focus on plasmonics and nanophotonics.

Manuela Scarselli is an associate professor of experimental solid-state physics at the university "Tor Vergata". She studied physics at the university "Sapienza" of Rome where she graduated in 1991. Her research interests focus on scanning probe microscopies mainly applied for the characterization of nano-systems and fabrication of pure and hybrid carbon-based nanomaterials for nanotechnological applications.

Publishing information
Pages and Images/Illustrations in book
eBook
Available soon
eBook ISBN:
9783110427059
Paperback
Available soon
Paperback ISBN:
9783110427042
Pages and Images/Illustrations in book
Front matter:
20
Main content:
330
Illustrations:
150
Coloured Illustrations:
150
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