Nonlinear Nanophotonics In Plasmonic And Graphene Structures PDF Download

Are you looking for read ebook online? Search for your book and save it on your Kindle device, PC, phones or tablets. Download Nonlinear Nanophotonics In Plasmonic And Graphene Structures PDF full book. Access full book title Nonlinear Nanophotonics In Plasmonic And Graphene Structures.

Nonlinear Nanophotonics in Plasmonic and Graphene Structures

Nonlinear Nanophotonics in Plasmonic and Graphene Structures
Author: Daria Smirnova
Publisher:
Total Pages: 0
Release: 2016
Genre:
ISBN:

Download Nonlinear Nanophotonics in Plasmonic and Graphene Structures Book in PDF, ePub and Kindle

Going beyond the diffraction limit of light, nanophotonics studies nontrivial physical phenomena involving the interaction of photons with nanostructured media. Within decades of fruitful developments, the field of nanophotonics has become a prominent area of research with applications ranging from integrated optical circuits and ultrafast photonic devices to super-imaging, nanolasing and biosensing. Nonlinear intensity-dependent optical effects, facilitated by strong light-matter interaction, are indispensable in modern photonics, enriching the beauty of physics comprised and providing novel opportunities for subwavelength light control. To date, the possibilities of photon nanoscale confinement and operations with photonic flows are primarily associated with surface plasmons that are localized in the vicinity of metal-dielectric interfaces infrared or visible-frequency electromagnetic eigenmodes originating from coupling of the electromagnetic field to the electron oscillations in a metal plasma. Physics of light interaction with metal structures that are much smaller than the free space wavelength of light constitutes one of the most significant branches of contemporary nanophotonics - nanoplasmonics. Combining strong surface plasmon resonances and high intrinsic nonlinearities in the deep subwavelength scales, plasmonic structures offer a unique playground to develop novel concepts for light manipulation at the nanoscale. Tight field confinement in plasmonic systems can boost the efficiency of various nonlinear optical effects, the study of which can help delineate a roadmap in designing novel subwavelength nonlinear optical elements. Recently, graphene, a single atomic layer of graphite, has emerged as a promising alternative to noble metals for applications in plasmonics. The study of plasmonic effects in doped graphene structures has attracted special interest from the nanoplasmonics research community due to novel functionalities suggested by such systems, including an extraordinary field confinement by a graphene layer, tunability of graphene properties through doping or electrostatic gating and longer lifetimes in the infrared and terahertz frequency ranges, which is extremely important for biomedical and security applications. In addition, graphene demonstrates strong and tunable optical nonlinearity and it can be incorporated into various components of nanoscale optics. However, the potential of the nonlinear response of graphene is not yet fully realized and almost not studied, especially in the resonant plasmonic geometries. It is therefore of significant interest to construct analytical models for the underlying principles and explore the viability of nonlinear optical effects in graphene-based photonic devices. This thesis focuses on the nonlinear photonics of plasmonic and graphene-based nanostructures. Exploiting nonlinear optical response, it develops theoretical ideas for the alloptical light control at subwavelength scales and studies the advantageous possibilities of manipulating electromagnetic waves by utilizing the unique properties of graphene. Chapter 2 presents a comprehensive study of nonlinear dynamics in arrays of optically driven plasmonic nanoparticles with a Kerr-like nonlinear response. We perform detailed modulation instability analysis and demonstrate the pattern formation and the existence of plasmonic kinks and nonlinear localized modes in the form of trapped and walking solitons in such systems under control guidance of the external driving field. Chapters 3 and 4 include a theoretical prediction and analytical description of manifold nonlinear effects that can be actualized due to the graphene nonlinear response. Utilizing conventional concepts of photonics and metal plasmonics combined with unique electronic and optical properties of graphene, we establish a theoretical framework for designing various graphene-enhanced components of nanoscale optics and nanodevices, such as waveguides, couplers, nano-antennas and metasurfaces. These studies outline substantial features of graphene as a promising material for surface physics and plasmonics, and envision their potential applications in optical nanocircuits, optoelectronics, metamaterials, and THz technology. Specifically, in Chapter 3 we investigate the nonlinear self-action of surface plasmons and the generation of subwavelength solitons in graphene waveguides and multilayers. Our studies elucidate the nonlinear switching of light in two coupled layers of graphene, the formation of nonlinear modes in graphene metamaterials, and the excitation of dissipative plasmon solitons coupled to the external driving source via an evanescent field. Chapter 4 examines the harmonic generation in different geometries with graphene. We develop theoretical models for the resonant (enhanced) second-harmonic generation from a graphene-wrapped dielectric spherical nanoparticle and frequency conversion in graphene-based waveguides through the phase-matched nonlinear interaction of the plasmonic modes. We describe the second-harmonic generation from a double-layer graphene structure with modulated conductivity and nonlinear plasmon-to-plasmon conversion in hybrid graphene-semiconductor waveguides, predicting the cascading effect in the thirdharmonic generation. Finally, we propose the concept of tunable nonlinear graphene metasurfaces composed of a graphene layer and a planar gold metamaterial. We demonstrate that such hybrid graphene metasurfaces provide strong tunability and dramatic field enhancement, giving rise to the enhanced nonlinear response and high efficiency of the second-harmonic generation. Chapter 5 summarizes the results and concludes this thesis.


Fundamentals and Applications of Nonlinear Nanophotonics

Fundamentals and Applications of Nonlinear Nanophotonics
Author: Nicolae C. Panoiu
Publisher: Elsevier
Total Pages: 514
Release: 2023-09-18
Genre: Technology & Engineering
ISBN: 0323908284

Download Fundamentals and Applications of Nonlinear Nanophotonics Book in PDF, ePub and Kindle

Fundamentals and Applications of Nonlinear Nanophotonics includes key concepts of nonlinear nanophotonics, computational and modeling techniques to design these materials, and the latest advances. This book addresses the scientific literature on nanophotonics while most existing books focus almost exclusively on the linear aspects of light-matter interaction at the nanoscale. Sections cover nonlinear optics of sub-wavelength photonic nanostructured materials, review nonlinear optics of bound-states in the continuum, nonlinear optics of chiral plasmonic metasurfaces, nonlinear hyperbolic nanomaterials, nonlinear topological photonics, plasmonic lattice solitons, and more. This book is suitable for academics and industry professionals working in the discipline of materials science, engineering and nanotechnology. Discusses advances in nonlinear optics research such as plasmonics, topological photonics and emerging materials Reviews the latest computational methods to model and design nonlinear photonic materials Introduces key principles of advanced concepts in nonlinear optics of bound-states in a continuum and symmetries in nonlinear nano-optics


Optical Nonlinearities in Nanostructured Systems

Optical Nonlinearities in Nanostructured Systems
Author: Carlos Torres-Torres
Publisher: Springer Nature
Total Pages: 181
Release: 2022-09-02
Genre: Science
ISBN: 3031108248

Download Optical Nonlinearities in Nanostructured Systems Book in PDF, ePub and Kindle

This book provides readers with a detailed overview of second- and third-order nonlinearities in various nanostructures, as well as their potential applications. Interest in the field of nonlinear optics has grown exponentially in recent years and, as a result, there is increasing research on novel nonlinear phenomena and the development of nonlinear photonic devices. Thus, such a book serves as a comprehensive guide for researchers in the field and those seeking to become familiar with it. This text focuses on the nonlinear properties of nanostructured systems that arise as a result of optical wave mixing. The authors present a review of nonlinear optical processes on the nanoscale and provide theoretical descriptions for second and third-order optical nonlinearities in nanostructures such as carbon allotropes, metallic nanostructures, semiconductors, nanocrystals, and complex geometries. Here, the characterization and potential applications of these nanomaterials are also discussed. The factors that determine the nonlinear susceptibility in these systems are identified as well as the influence of physical mechanisms emerging from resonance and off-resonance excitations. In addition, the authors detail the effects driven by important phenomena such as quantum confinement, localized surface plasmon resonance, Fano resonances, bound states, and the Purcell effect on specific nanostructured systems. Readers are provided with a groundwork for future research as well as new perspectives in this growing field.


Recent Advances in Graphene Nanophotonics

Recent Advances in Graphene Nanophotonics
Author: Shobhit K. Patel
Publisher: Springer Nature
Total Pages: 379
Release: 2023-05-20
Genre: Science
ISBN: 3031289420

Download Recent Advances in Graphene Nanophotonics Book in PDF, ePub and Kindle

There are growing advantages to the use of graphene-based nanophotonics in communication, sensing, security, safety, spectroscopy, manufacturing, biomedicine, agriculture, imaging, and other fields. These advantages, as well as the numerous challenges associated with this technology and proposed solutions to these challenges, are summarized in this book. The key objective of the book is to serve as a single-source reference for the rapidly expanding application aspects of the technology of graphene-based nanophotonics, as well as the number of modules required for their successful implementation. This book seeks to give readers a comprehensive understanding of several elements of graphene-based nanophotonics, such as emerging application areas, the design and modelling of sensors, absorbers, optical fiber, encoders, etc. A complete view of the progress and breakthroughs in novel materials for sensing, detecting and encoding technology is presented. The book also emphasizes the consequences of THz signals on human health, as well as the environmental components of THz. This book will be of tremendous value for those with an interest in electronic engineering, particularly those keeping an eye on this emerging technology.


Thermoplasmonics

Thermoplasmonics
Author: Guillaume Baffou
Publisher: Cambridge University Press
Total Pages: 310
Release: 2017-10-19
Genre: Science
ISBN: 1108307868

Download Thermoplasmonics Book in PDF, ePub and Kindle

Plasmonics is an important branch of optics concerned with the interaction of metals with light. Under appropriate illumination, metal nanoparticles can exhibit enhanced light absorption, becoming nanosources of heat that can be precisely controlled. This book provides an overview of the exciting new field of thermoplasmonics and a detailed discussion of its theoretical underpinning in nanophotonics. This topic has developed rapidly in the last decade, and is now a highly-active area of research due to countless applications in nanoengineering and nanomedicine. These important applications include photothermal cancer therapy, drug and gene delivery, nanochemistry and photothermal imaging. This timely and self-contained text is suited to all researchers and graduate students working in plasmonics, nano-optics and thermal-induced processes at the nanoscale.


Graphene Photonics, Optoelectronics, and Plasmonics

Graphene Photonics, Optoelectronics, and Plasmonics
Author: Qiaoliang Bao
Publisher: CRC Press
Total Pages: 222
Release: 2017-09-07
Genre: Science
ISBN: 1351767755

Download Graphene Photonics, Optoelectronics, and Plasmonics Book in PDF, ePub and Kindle

Graphene has been hailed as a rising star in photonics and optoelectronics. The wonderful optical properties of graphene make possible the multiple functions of signal emission, transmission, modulation, and detection to be realized in one material. This book compiles and details cutting-edge research in graphene photonics, plasmonics, and broadband optoelectronic devices. Particularly, it emphasizes the ability to integrate graphene photonics onto the silicon platform to afford broadband operation in light routing and amplification, which involves components such as the polarizer, the modulator, and the photodetector. It also includes other functions such as a saturable absorber and an optical limiter. The book provides a comprehensive overview of the interrelationship between the operation of these conceptually new photonic devices and the fundamental physics of graphene involved in the interactions between graphene and light.


Graphene Photonics

Graphene Photonics
Author: Jia-Ming Liu
Publisher: Cambridge University Press
Total Pages: 362
Release: 2018-12-13
Genre: Technology & Engineering
ISBN: 1108751873

Download Graphene Photonics Book in PDF, ePub and Kindle

Understand the fundamental concepts, theoretical background, major experimental observations, and device applications of graphene photonics with this self-contained text. Systematically and rigorously developing each concept and theoretical model from the ground up, it guides readers through the major topics, from basic properties and band structure to electronic, optical, optoelectronic, and nonlinear optical properties, and plasmonics and photonic devices. The connections between theory, modeling, experiment, and device concepts are demonstrated throughout, and every optical process is analyzed through formal electromagnetic analysis. Suitable for both self-study and a one-semester or one-quarter course, this is the ideal text for graduate students and researchers in photonics, optoelectronics, nanoscience and nanotechnology, and optical and solid-state physics, who are working in this rapidly developing field.


Photonics, Volume 2

Photonics, Volume 2
Author: David L. Andrews
Publisher: John Wiley & Sons
Total Pages: 424
Release: 2015-01-28
Genre: Technology & Engineering
ISBN: 1119014018

Download Photonics, Volume 2 Book in PDF, ePub and Kindle

Discusses the basic physical principles underlying thescience and technology of nanophotonics, its materials andstructures This volume presents nanophotonic structures and Materials.Nanophotonics is photonic science and technology that utilizeslight/matter interactions on the nanoscale where researchers arediscovering new phenomena and developing techniques that go wellbeyond what is possible with conventional photonics andelectronics.The topics discussed in this volume are: CavityPhotonics; Cold Atoms and Bose-Einstein Condensates; Displays;E-paper; Graphene; Integrated Photonics; Liquid Crystals;Metamaterials; Micro-and Nanostructure Fabrication; Nanomaterials;Nanotubes; Plasmonics; Quantum Dots; Spintronics; Thin FilmOptics Comprehensive and accessible coverage of the whole of modernphotonics Emphasizes processes and applications that specifically exploitphoton attributes of light Deals with the rapidly advancing area of modern optics Chapters are written by top scientists in their field Written for the graduate level student in physical sciences;Industrial and academic researchers in photonics, graduate studentsin the area; College lecturers, educators, policymakers,consultants, Scientific and technical libraries, governmentlaboratories, NIH.


Plasmonic Materials and Metastructures

Plasmonic Materials and Metastructures
Author: Shangjr Gwo
Publisher: Elsevier
Total Pages: 347
Release: 2023-09-11
Genre: Technology & Engineering
ISBN: 0323860184

Download Plasmonic Materials and Metastructures Book in PDF, ePub and Kindle

Plasmonic Materials and Metastructures: Fundamentals, Current Status, and Perspectives reviews the current status and emerging trends in the development of conventional and alternative plasmonic materials. Sections cover fundamentals and emerging trends of plasmonic materials development, including synthesis strategies (chemical and physical) and optical characterization techniques. Next, the book addresses fundamentals, properties, remaining barriers for commercial translation, and the latest advances and opportunities for conventional noble metal plasmonic materials. Fundamentals and advances for alternative plasmonic materials are also reviewed, including two-dimensional hybrid materials composed of graphene, monolayer transition metal dichalcogenides, boron nitride, etc. In addition, other sections cover applications of plasmonic metastructures enabled by plasmonic materials with improved material properties and newly discovered functionalities. Applications reviewed include quantum plasmonics, topological plasmonics, chiral plasmonics, nanolasers, imaging (metalens), active, and integrated technologies. Provides an overview of materials properties, characterization and fabrication techniques for plasmonic metastructured materials Includes key concepts and advances for a wide range of metastructured materials, including metamaterials, metasurfaces and epsilon-near-zero plasmonic metastructures Discusses emerging applications and barriers to commercial translation for quantum plasmonics, topological plasmonics, nanolasers, imaging and integrated technologies


Recent Advances in Nanophotonics

Recent Advances in Nanophotonics
Author: Mojtaba Kahrizi
Publisher: BoD – Books on Demand
Total Pages: 174
Release: 2020-11-26
Genre: Technology & Engineering
ISBN: 183962843X

Download Recent Advances in Nanophotonics Book in PDF, ePub and Kindle

This volume brings together several recent research articles in the field of nanophotonics. The editors have arranged the chapters in three main parts: quantum devices, photonic devices, and semiconductor devices. The chapters cover a wide variety of scopes in those areas including principles of plasmonic, SPR, LSPR and their applications, graphene-based nanophotonic devices, generation of entangled photon and quantum dots, perovskite solar cells, photo-detachment and photoionization of two-electrons systems, diffusion and intermixing of atoms in semiconductor crystals, lattice and molecular elastic and inelastic scattering including surface-enhanced Raman Scattering and their applications. It is our sincerest hope that science and engineering students and researchers could benefit from the new ideas and recent advances in the field that are covered in this book.