Nanoplasmonics: Fundamentals And Applications Ed. By Gregory Barbillon

Nanoplasmonics: Fundamentals And Applications Ed. By Gregory Barbillon
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This book is intended for a broad audience and provides an overview of some of the fundamental knowledges and applications of nanoplasmonics.

Nanoplasmonics is a young topic of research, which is part of nanophotonics and nano-optics. Nanoplasmonics concerns to the investigation of electron oscillations in metallic nanostructures and nanoparticles. Surface plasmons have optical properties, which are very interesting. For instance, surface plasmons have the unique capacity to confine light at the nanoscale. Moreover, surface plasmons are very sensitive to the surrounding medium and the properties of the materials on which they propagate. In addition to the above, the surface plasmon resonances can be controlled by adjusting the size, shape, periodicity, and materials' nature. All these optical properties can enable a great number of applications, such as biosensors, optical modulators, photodetectors, and photovoltaic devices.

Preface

1 Graphene and Active Metamaterials: Theoretical Methods and Physical Properties by Marios Mattheakis, Giorgos P. Tsironis and Efthimios Kaxiras

2 Magneto‐Plasmonics and Optical Activity in Graphene‐Based Nanowires by Dmitry A. Kuzmin, Igor V. Bychkov, Vladimir G. Shavrov and Vasily V. Temnov

3 Nanoplasmonics in Metallic Nanostructures and Dirac Systems by Hari P. Paudel, Alireza Safaei and Michael N. Leuenberger

4 Ultrafast Nonlinear Optical Effects of Metal Nanoparticles Composites by Kwang-Hyon Kim, Anton Husakou and Joachim Herrmann

5 Understanding the Physical Behavior of Plasmonic Antennas Through Computational Electromagnetics by Xuezhi Zheng, Guy A.E. Vandenbosch and Victor V. Moshchalkov

6 Plasmonic Field Distribution of Homo- and Hetero Dimeric Ag and Au Nanoparticles by Nasrin Hooshmand

7 Optical Absorption and Thermal Effects of Plasmonic Nanostructures by Jingzhi Wu and Yanhong Wang

8 Infrared Solar Thermal-Shielding Applications Based on Oxide Semiconductor Plasmonics by Hiroaki Matsui and Hitoshi Tabata

9 Surface Plasmonics and Its Applications in Infrared Sensing by Guiru Gu, Xuejun Lu, Thitikorn Kemsri and Yingjie Zhang

10 Equivalent Nanocircuit Theory and Its Applications by Qing Zhang, Jun You and Chengpu Liu

11 Nanoplasmonic Waveguides Filled with Electro‐Optical Materials by Montasir Qasymeh

12 Impedance Matching Analysis of Cylindrical Plasmonic Nanoantennas Fed by Optical Transmission Lines by Karlo Queiroz da Costa, Janilson Leão Souza and Victor Dmitriev

13 Tapered Plasmonic Nanoantennas for Energy Harvesting Applications by Youssef Mamdouh El-Toukhy, Mohamed Farhat Othman Hameed, Mohamed Hussein and Salah Sabry Ahmed Obayya

14 Plasmonics Devoted to Photocatalytic Applications in Liquid, Gas, and Biological Environments by Carlos J. Bueno-Alejo, Adriana Arca-Ramos and Jose L. Hueso

15 Plasmonic Nanostructures as Surface-Enhanced Raman Scattering (SERS) Substrate for Protein Biomarker Sensing by Dan Li and Yuling Wang

16 SERS Application for Analysis of Live Single Cell by Waleed Ahmed El-Said, Hyeon-Yeol Cho and Jeong-Woo Choi

17 Localized Surface Plasmon Resonance for Optical Fiber-Sensing Applications by Pedro J. Rivero, Javier Goicoechea and Francisco J. Arregui

18 Laser Annealing as a Platform for Plasmonic Nanostructuring by Nikolaos Kalfagiannis, Demosthenes C. Koutsogeorgis, Elefterios Lidorikis and Panos Patsalas

19 Fabrication of Plasmonic Crystalline Thin Film of Titanium Nitride (TiN) by Pulsed Laser Deposition with Third Harmonic of Nd:YAG Laser and Its Spectroscopic Analyses by Yasushi Oshikane

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