Control Of Scattering And Absorption Of Light By Multilayer Nanowires 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 Control Of Scattering And Absorption Of Light By Multilayer Nanowires PDF full book. Access full book title Control Of Scattering And Absorption Of Light By Multilayer Nanowires.

Control of Scattering and Absorption of Light by Multilayer Nanowires

Control of Scattering and Absorption of Light by Multilayer Nanowires
Author: Ali Mirzaei
Publisher:
Total Pages: 0
Release: 2017
Genre:
ISBN:

Download Control of Scattering and Absorption of Light by Multilayer Nanowires Book in PDF, ePub and Kindle

In recent decades, nanotechnology has become one of the biggest steps forward in expanding the horizons of science and engineering. Nanotechnology progressively plays more important roles in various modern technologies that are revolutionising human lifestyle. Nano-photonics as one of the fastest growing fields in nanotechnology, is finding its way to become a key tool in various applications. This involves variety of scientific and technological problems, from medical diagnosis and cancer therapy to ultrafast computation and data communication. However, continuously improving cutting-edge technology of optical nanostructures, requires further development of analysis for designing more advanced nanostructures for future generations of optical nano-devices. The reported progress in nanophotonics, is mainly based on advances in theoretical optics and experimental techniques. Numerical simulations and experiments have made a significant progress in analysing and designing optical nanostructures for various applications. However, they both become considerably expensive in terms of time and material especially when they have to be repeated for several times to optimise a set of parameters. Furthermore, repeatability and measurement challenges in experiments, and robustness and finite precision complications in simulations, yet remain. These restrictions, consequently, limit the exploration possibility for new ideas and solutions for future nanophotonics. To address this, I introduce a novel, fast and exact approach by employing analytical/semianalytical solutions and powerful optimisation techniques without the mentioned restrictions. This approach suggests a novel platform for wide exploration of unique possibilities for developing new ideas. I discuss the details of my approach by employing multilayer nanostructures for example applications in optics. To achieve optimal performance, I develop a smart optimisation process that employs the fast analytical solutions within a genetic algorithm. I explain the details of this process that can optimise complicated structures by exploring multi-dimensional parameter space in both linear and nonlinear regimes. My proposed approach, can generally be applied for different types of nanostructures with different geometries. However, among various introduced components, nanowires have proven themselves to be appropriate candidates for taking important roles in optical devices for different applications. In addition, by studying long nanowires, I analyse optical nanostructures using the developed semi-analytical approach in a two-dimensional platform. Therefore, we can concentrate on developing the main concepts by avoiding unnecessary complications. In this thesis I provide the complete analysis of nanowire with large aspect ratios, however our further studies prove that the developed design solution and achieved results are not restricted to two-dimensional platform, and are also applicable for three-dimensional structures. I briefly discuss this with some examples, such as nanodisks and nanospheres, even in more complicated configurations and by presence of substrates. To discuss the details, after a brief introduction in Chapter 1, I first discuss two parallel approaches in Chapter 2: (i) a semi-analytical method to analyse the scattering and absorption of light with single and interfering multilayer nanowires, and (ii) a smart genetic optimisation algorithm, employing the fast semi-analytical solution to search for optimal set of designing parameters. Then, I focus on developing specific structures based on multilayer nanowire systems. Controlling the light-matter interaction in nanowires allows to engineer the scattering and absorption efficiencies, with the possibility to enhance or suppress the corresponding cross section. As examples, I discuss invisibility cloaking and superscattering of light as two oppositely different effects in Chapter 3. Enhancing the absorption of light on the other hand, is important for improving the efficiency of many optical devices which in its extremum case, can cause superabsorption effect. This is also discussed in detail by the use of single multilayer nanowires in Chapter 3. By bringing more nanowires together and constructing more complicated systems, the interference between the nanowires can lead to remarkable effects. In Chapters 2 and 4, I explain the analytical solution of multiple scattering problems in nanowire systems. Example structures in Chapter 4 demonstrate that carefully controlling the behaviour of light in nanowire dimer systems can lead us to manage electric and magnetic hotspots, and a complex nanowire system to electromagnetically shield non-isolated areas. Finally, going beyond the linear regime, I discuss nonlinear effects in multilayer nanowires in Chapter 5, by introducing my novel semi-analytical recipe. By studying an example of nonlinear superscattering of light by a core-shell nanowire and its hysteresis loop and bistability, I demonstrate that my approach is accurate and more than 100,000 times faster than finite difference time domain.


Manipulating Light-matter Interactions with Plasmonic Metamolecules and Metasurfaces

Manipulating Light-matter Interactions with Plasmonic Metamolecules and Metasurfaces
Author: Nasim Mohammadi Estakhri
Publisher:
Total Pages: 412
Release: 2016
Genre:
ISBN:

Download Manipulating Light-matter Interactions with Plasmonic Metamolecules and Metasurfaces Book in PDF, ePub and Kindle

The interaction of electromagnetic waves with materials is at the basis of several phenomena influencing our everyday lives. Throughout the past few decades we are witnessing a rapid progress in the development of new platforms to engineer and design different aspects of wave-matter interaction for applications ranging from green energy harvesting, to high speed data communication, and medicine. In line with these developments, the advent of metamaterials, or artificially structured materials, introduces an alternative path to mold and control electromagnetic waves with degrees of freedom that are not accessible in natural materials. There is, however, a strong need to broaden the range of applicability of metamaterials thorough strong nanoscale light management, real-time tunability, ease of fabrication, and lowering the losses. In this study we discuss that to what extent it is possible to engineer the scattering, absorption, and local wave-matter interaction of metamolecules, as the basic building-blocks of metamaterials, as well as assembles of them forming complex systems. In this work, first, we propose and investigate new nanoparticle geometries with tailored complex absorption and scattering signatures. We demonstrate that plasmonic-based nanostructures can be tailored to provide unprecedented control of their scattering and absorption/emission response over broad bandwidths, specifically in the optical frequency range. We show that judicious combination of plasmonic-dielectric singular nanoparticles provides very efficient broadband and controllable light absorption and amplification. Based on these composite elements, we propose a nanoscale optical switch with strong sensitivity and tunability. These engineered nanoparticles are also particularly interesting for applications in nonlinear optics, spasing, and energy-harvesting devices. Next, we answer the fundamental question of "to what extent the unwanted scattering from a general absorbing body may be reduced?". We demonstrate the theoretical limitations of a furtive sensor and provide a proof of the concept implementation of minimum-scattering superabsorbers at optical and microwave frequencies. Based on our theoretical analysis, we also explore experimental realization of microwave low-scattering antennas. This study is of particular importance for the near-field subdiffractive probing and closely-packed antenna designs. Last, we propose a new degree of freedom in controlling the propagation and scattering of light through proper arrangements of dissimilar metamolecules over a surface, i.e. gradient metasurfaces. We theoretically investigate and design metasurfaces that are capable of performing complex wave shaping functionalities such as cloaking, yet, over a single ultrathin volume. Our full analytical approach enables us to underline the inherent limitations and wide range of capabilities of metasurfaces, and we propose novel techniques to significantly improve the efficiency of wave manipulation by metasurfaces. We also investigate the proposed concept of local wave manipulation in several practical applications in beam steering, improved energy harvesting, and cloaking arbitrary obstacles, accompanied by experimental realization of negative reflection from optical metasurfaces. Such unprecedented control of optical wave propagation along with compatibility of metasurfaces with standard lithographic techniques and on-chip technology will significantly impact the future application of metasurfaces, paving the way toward flat, compact optical devices.


Optical Resonances of Semiconductor Nanowires

Optical Resonances of Semiconductor Nanowires
Author: Linyou Cao
Publisher:
Total Pages:
Release: 2010
Genre:
ISBN:

Download Optical Resonances of Semiconductor Nanowires Book in PDF, ePub and Kindle

Semiconductor nanowires are one of the most exciting frontiers of materials research due to their potential applications in a wide range of important fields, including information technology, biomedicine, sustainable energy and artificial intelligence. Embarking on these exciting applications heavily hinges on deep understanding of fundamental properties of the nanowires. For the first time, we experimentally demonstrate the general existence of strong, tunable optical resonances in semiconductor nanowires, and propose a theoretical model, leaky mode resonances (LMRs), that provides an intuitive understanding of the optical resonances. The optical resonances enable to engineer light absorption, scattering and emission of the nanowires for the rational design of high-performance optoelectronic devices, including photodetectors, solar cells, and light emitters. More interestingly, coupled optical resonances in a complex nanowire structure can give rise to many novel optical functionalities that do not exist in stand-alone nanowires, for example, coupled nanowire optical waveguiding. Physically, the optical resonances arise from strong and resonant coupling of light with leaky modes supported by the nanowires. When the light wavelength matches one of the allowed LMRs, the high refractive index wire can capture and trap the light by multiple internal reflections at its boundary and build up strong electromagnetic field inside. As a consequence, the photoresponses of the nanowire at the specific wavelength or wavelength bands, including absorption, scattering and emission, can be dramatically enhanced. By tuning the NW diameter, both the number of allowed LMRs in the nanowire and the spectral position of specific LMRs can be precisely controlled. This size-dependent tunability provides a powerful guidance for the rational design of photonic devices with desired spectral, polarization response features. The technological promise of this approach is illustrated in efficient germanium photodetectors in near infrared regime, silicon solar cells with 250% enhancement in solar absorption efficiency, and multicolored silicon nanostructures. Optical coupling between neighboring nanowires provides extra latitudes to manipulate light at the nanoscale. The essence of the optical coupling lies in the exchange of photons between the nanowires, much like the exchange of electrons between neighboring atoms in molecules. Experimentally, it can be observed by monitoring the light scattering spectra of a bi-nanowire structure that consists of two nanowires with similar diameter and parallel to each other. By taking into account the leaky nature of optical modes in the nanowire resonator, we propose a theoretical model, coupled leaky mode theory (CLMT), to account for the experimental observations and to point towards rational designs of complex nanostructures with desirable light-matter interaction features for nanophotonic applications, such as efficient transfer of optical power at the nanoscale through a chain of coupled nanowires. Overall, these results represent the first systematic studies of optical resonances of semiconductor nanowires. The demonstrated general existence of the LMRs and the coupled LMRs cast new light on semiconductor nanostructures, and open up enormous opportunities to explore novel optical and optoelectronic funtionalities in semiconductor nanostructures for photonics applications.


Materials for Sustainable Energy

Materials for Sustainable Energy
Author: Vincent Dusastre
Publisher: World Scientific
Total Pages: 360
Release: 2011
Genre: Science
ISBN: 9814317640

Download Materials for Sustainable Energy Book in PDF, ePub and Kindle

The search for cleaner, cheaper, smaller and more efficient energy technologies has to a large extent been motivated by the development of new materials. The aim of this collection of articles is therefore to focus on what materials-based solutions can offer and show how the rationale design and improvement of their physical and chemical properties can lead to energy-production alternatives that have the potential to compete with existing technologies. In terms of alternative means to generate electricity that utilize renewable energy sources, the most dramatic breakthroughs for both mobile (i.e., transportation) and stationary applications are taking place in the fields of solar and fuel cells. And from an energy-storage perspective, exciting developments can be seen emerging from the fields of rechargeable batteries and hydrogen storage.


Nature

Nature
Author: Sir Norman Lockyer
Publisher:
Total Pages: 1692
Release: 2007
Genre: Science
ISBN:

Download Nature Book in PDF, ePub and Kindle


Plasmonics: Fundamentals and Applications

Plasmonics: Fundamentals and Applications
Author: Stefan Alexander Maier
Publisher: Springer Science & Business Media
Total Pages: 234
Release: 2007-05-16
Genre: Technology & Engineering
ISBN: 0387378251

Download Plasmonics: Fundamentals and Applications Book in PDF, ePub and Kindle

Considered a major field of photonics, plasmonics offers the potential to confine and guide light below the diffraction limit and promises a new generation of highly miniaturized photonic devices. This book combines a comprehensive introduction with an extensive overview of the current state of the art. Coverage includes plasmon waveguides, cavities for field-enhancement, nonlinear processes and the emerging field of active plasmonics studying interactions of surface plasmons with active media.


Computational Nanophotonics

Computational Nanophotonics
Author: Sarhan Musa
Publisher: CRC Press
Total Pages: 545
Release: 2018-10-08
Genre: Technology & Engineering
ISBN: 1351832115

Download Computational Nanophotonics Book in PDF, ePub and Kindle

This reference offers tools for engineers, scientists, biologists, and others working with the computational techniques of nanophotonics. It introduces the key concepts of computational methods in a manner that is easily digestible for newcomers to the field. The book also examines future applications of nanophotonics in the technical industry and covers new developments and interdisciplinary research in engineering, science, and medicine. It provides an overview of the key computational nanophotonics and describes the technologies with an emphasis on how they work and their key benefits.


Renewable and Alternative Energy: Concepts, Methodologies, Tools, and Applications

Renewable and Alternative Energy: Concepts, Methodologies, Tools, and Applications
Author: Management Association, Information Resources
Publisher: IGI Global
Total Pages: 2040
Release: 2016-10-19
Genre: Technology & Engineering
ISBN: 1522516727

Download Renewable and Alternative Energy: Concepts, Methodologies, Tools, and Applications Book in PDF, ePub and Kindle

As the human population expands and natural resources become depleted, it becomes necessary to explore other sources for energy consumption and usage. Renewable and Alternative Energy: Concepts, Methodologies, Tools, and Applications provides a comprehensive overview of emerging perspectives and innovations for alternative energy sources. Highlighting relevant concepts on energy efficiency, current technologies, and ongoing industry trends, this is an ideal reference source for academics, practitioners, professionals, and upper-level students interested in the latest research on renewable energy.


Semiconductor Nanowires

Semiconductor Nanowires
Author: J Arbiol
Publisher: Elsevier
Total Pages: 573
Release: 2015-03-31
Genre: Technology & Engineering
ISBN: 1782422633

Download Semiconductor Nanowires Book in PDF, ePub and Kindle

Semiconductor nanowires promise to provide the building blocks for a new generation of nanoscale electronic and optoelectronic devices. Semiconductor Nanowires: Materials, Synthesis, Characterization and Applications covers advanced materials for nanowires, the growth and synthesis of semiconductor nanowires—including methods such as solution growth, MOVPE, MBE, and self-organization. Characterizing the properties of semiconductor nanowires is covered in chapters describing studies using TEM, SPM, and Raman scattering. Applications of semiconductor nanowires are discussed in chapters focusing on solar cells, battery electrodes, sensors, optoelectronics and biology. Explores a selection of advanced materials for semiconductor nanowires Outlines key techniques for the property assessment and characterization of semiconductor nanowires Covers a broad range of applications across a number of fields


Printing on Polymers

Printing on Polymers
Author: Joanna Izdebska-Podsiadły
Publisher: William Andrew
Total Pages: 446
Release: 2015-09-24
Genre: Technology & Engineering
ISBN: 0323375006

Download Printing on Polymers Book in PDF, ePub and Kindle

Printing on Polymers: Fundamentals and Applications is the first authoritative reference covering the most important developments in the field of printing on polymers, their composites, nanocomposites, and gels. The book examines the current state-of-the-art and new challenges in the formulation of inks, surface activation of polymer surfaces, and various methods of printing. The book equips engineers and materials scientists with the tools required to select the correct method, assess the quality of the result, reduce costs, and keep up-to-date with regulations and environmental concerns. Choosing the correct way of decorating a particular polymer is an important part of the production process. Although printing on polymeric substrates can have desired positive effects, there can be problems associated with various decorating techniques. Physical, chemical, and thermal interactions can cause problems, such as cracking, peeling, or dulling. Safety, environmental sustainability, and cost are also significant factors which need to be considered. With contributions from leading researchers from industry, academia, and private research institutions, this book serves as a one-stop reference for this field—from print ink manufacture to polymer surface modification and characterization; and from printing methods to applications and end-of-life issues. Enables engineers to select the correct decoration method for each material and application, assess print quality, and reduce costs Increases familiarity with the terminology, tests, processes, techniques, and regulations of printing on plastic, which reduces the risk of adverse reactions, such as cracking, peeling, or dulling of the print Addresses the issues of environmental impact and cost when printing on polymeric substrates Features contributions from leading researchers from industry, academia, and private research institutions