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VLSI Micro- and Nanophotonics

VLSI Micro- and Nanophotonics
Author: El-Hang Lee
Publisher: CRC Press
Total Pages: 632
Release: 2018-09-03
Genre: Technology & Engineering
ISBN: 142001790X

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Addressing the growing demand for larger capacity in information technology, VLSI Micro- and Nanophotonics: Science, Technology, and Applications explores issues of science and technology of micro/nano-scale photonics and integration for broad-scale and chip-scale Very Large Scale Integration photonics. This book is a game-changer in the sense that it is quite possibly the first to focus on "VLSI Photonics". Very little effort has been made to develop integration technologies for micro/nanoscale photonic devices and applications, so this reference is an important and necessary early-stage perspective on this field. New demand for VLSI photonics brings into play various technological and scientific issues, as well as evolutionary and revolutionary challenges—all of which are discussed in this book. These include topics such as miniaturization, interconnection, and integration of photonic devices at micron, submicron, and nanometer scales. With its "disruptive creativity" and unparalleled coverage of the photonics revolution in information technology, this book should greatly impact the future of micro/nano-photonics and IT as a whole. It offers a comprehensive overview of the science and engineering of micro/nanophotonics and photonic integration. Many books on micro/nanophotonics focus on understanding the properties of individual devices and their related characteristics. However, this book offers a full perspective from the point of view of integration, covering all aspects of benefits and advantages of VLSI-scale photonic integration—the key technical concept in developing a platform to make individual devices and components useful and practical for various applications.


Micro and Nanophotonics for Semiconductor Infrared Detectors

Micro and Nanophotonics for Semiconductor Infrared Detectors
Author: Zoran Jakšić
Publisher: Springer
Total Pages: 274
Release: 2014-09-25
Genre: Technology & Engineering
ISBN: 3319096745

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The advent of microelectromechanic system (MEMS) technologies and nanotechnologies has resulted in a multitude of structures and devices with ultra compact dimensions and with vastly enhanced or even completely novel properties. In the field of photonics it resulted in the appearance of new paradigms, including photonic crystals that exhibit photonic bandgap and represent an optical analog of semiconductors and metamaterials that have subwavelength features and may have almost arbitrary values of effective refractive index, including those below zero. In addition to that, a whole new field of plasmonics appeared, dedicated to the manipulation with evanescent, surface-bound electromagnetic waves and offering an opportunity to merge nanoelectronics with all-optical circuitry. In the field of infrared technologies MEMS and nanotechnologies ensured the appearance of a new generation of silicon-based thermal detectors with properties vastly surpassing the conventional thermal devices. However, another family of infrared detectors, photonic devices based on narrow-bandgap semiconductors, has traditionally been superior to thermal detectors. Literature about their micro and nanophotonic enhancement has been scarce and scattered through journals. This book offers the first systematic approach to numerous different MEMS and nanotechnology-based methods available for the improvement of photonic infrared detectors and points out to a path towards uncooled operation with the performance of cryogenically cooled devices. It is shown that a vast area for enhancement does exists and that photonic devices can readily keep their leading position in infrared detection. The various methods and approaches described in the book are also directly applicable to different other types of photodetectors like solar cells, often with little or no modification.


Optical Processes in Microparticles and Nanostructures

Optical Processes in Microparticles and Nanostructures
Author: Ali Serpenguzel
Publisher: World Scientific
Total Pages: 486
Release: 2011
Genre: Science
ISBN: 9814295779

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This Festschrift is a tribute to the eminent scholar, Professor Richard Kounai Chang, on his retirement from Yale University on June 12, 2008. During his over four decades of scientific exploration, Professor Chang has made a lasting contribution to the development of linear and nonlinear optics and devices in confined geometries, of surface second-harmonic generation and surface-enhanced Raman scattering, and of novel methods for detecting airborne aerosol pathogens. This volume assembles a collection of articles contributed by former students, collaborators, and colleagues of Professor Chang all over the world. The topics span a diverse scope in applied optics frontiers, many of which are rooted in Professor Chang's pioneering research.


Fabrication of Micro and Nanophotonic Devices

Fabrication of Micro and Nanophotonic Devices
Author: Michael Roman
Publisher:
Total Pages:
Release: 2011
Genre: Nanophotonics
ISBN:

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As the interconnect bottleneck in electronic circuits is becoming a more serious problem, optical (or photonic) interconnects are becoming a promising solution. Optical interconnects in combination with optical routing and switching components allow for a large increase in bandwidth over electrical interconnects with a decrease in power consumption. The realization of photonic interconnects in silicon provides great advantages, as much of the experience is available in silicon processing. Techniques have been borrowed from the VLSI and MEMS toolkits and many new fabrication processes and techniques have been developed for silicon photonics platforms. In order for this technology to mature to a point of widespread industrial acceptance, there is still much work that must be done in a research environment. The work done in a silicon photonics research environment relies heavily on the use of specialized equipment for creating high precision, highly reproducible micrometer and nanometer scale features. In addition to the traditional requirements of VLSI and MEMS processing, nanophotonics has added restrictions on the quality and roughness of structures as the interactions between the light and the materials are very strong. In order to fabricate devices of the quality needed for silicon photonics research, researchers must be properly trained in fabrication techniques and how to use the fabrication equipment. The time required to completely master the operation of the fabrication can take years. However, basic tasks can be performed with a little training. Two of the major pieces of fabrication equipment, which will be covered in this work, are an RIE-ICP system and a PECVD system. These are a Samco® RIE-200iP and Samco® PD-220N, respectively. They are two pieces of very important pieces of equipment for most researches in the nanophotonics field. The first step to mastering the use of the equipment is learning about the background of the equipment. Because of this, the theory of how each of these tools operates is covered to provide background for new users and provide information to experienced users which may help in advancing their research. Understanding how the process works is just the first step to using the equipment. The next major component step is the actual operation of the equipment. By learning the setup of the equipment and the operation of its individual components much can be learned about machine operation and device processing. This will help in making process decisions and with process troubleshooting should a problem arise. After the operation and use of the equipment is understood the preparation of samples is important. So some example fabrication processes are described to provide examples of processing techniques. These examples also show some processing recipes, which are commonly used and should be familiar to users. These topics are covered in this document. Finally, in addition to the basic theory and operation a more detailed analysis of process parameters and variables will be presented. Along with fabrication, testing and characterization of devices is extremely important. While the types of testing and setups vary greatly, depending on the nature of the research, there are some tools which find broad use in nanophotonics research. Two of these are the spectrometer and the ellipsometer. The spectrometer allows for spectral characterization of light sources, whether this light is from testing equipment or from a fabricated device itself. The ellipsometer is able to determine the thickness and index of thin film layers on a sample. These two pieces are extremely important when doing material level work, which helps greatly in the advancement of new materials. As with the fabrication equipment, the theory, operation, and basic use of this equipment are discussed to facilitate testing of fabricated devices. The last important component of using fabrication equipment is proper maintenance. Without proper maintenance and servicing, the quality of results will not be repeatable. This will lead to slower research progress and more machine downtime for major repair. Because maintenance of equipment is very important and is often overlooked, it is also covered in this work. By combining good maintenance of equipment with proper use, it will lend itself to better, more reliable results in the nanophotonics research environment. This is presented throughout this work as the different components build on each other to show how they help to form a strong bond between the equipment and its users.


Micro- and Nanophotonic Technologies

Micro- and Nanophotonic Technologies
Author: Patrick Meyrueis
Publisher: John Wiley & Sons
Total Pages: 571
Release: 2017-03-20
Genre: Technology & Engineering
ISBN: 3527699937

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Edited and authored by leading experts from top institutions in Europe, the US and Asia, this comprehensive overview of micro- and nanophotonics covers the physical and chemical fundamentals, while clearly focusing on the technologies and applications in industrial R&D. As such, the book reports on the four main areas of telecommunications and display technologies; light conversion and energy generation; light-based fabrication of materials; and micro- and nanophotonic devices in metrology and control.


Nano Optoelectronic Sensors and Devices

Nano Optoelectronic Sensors and Devices
Author: Ning Xi
Publisher: William Andrew
Total Pages: 273
Release: 2011-11-29
Genre: Technology & Engineering
ISBN: 1437734715

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Nanophotonics has emerged as a major technology and applications domain, exploiting the interaction of light-emitting and light-sensing nanostructured materials. These devices are lightweight, highly efficient, low on power consumption, and are cost effective to produce. The authors of this book have been involved in pioneering work in manufacturing photonic devices from carbon nanotube (CNT) nanowires and provide a series of practical guidelines for their design and manufacture, using processes such as nano-robotic manipulation and assembly methods. They also introduce the design and operational principles of opto-electrical sensing devices at the nano scale. Thermal annealing and packaging processes are also covered, as key elements in a scalable manufacturing process. Examples of applications of different nanowire based photonic devices are presented. These include applications in the fields of electronics (e.g. FET, CNT Schotty diode) and solar energy. Discusses opto-electronic nanomaterials, characterization and properties from an engineering perspective, enabling the commercialization of key emerging technologies Provides scalable techniques for nanowire structure growth, manipulation and assembly (i.e. synthesis) Explores key application areas such as sensing, electronics and solar energy


Integrated Optics: Theory and Applications

Integrated Optics: Theory and Applications
Author: Tadeusz Pustelny
Publisher: SPIE-International Society for Optical Engineering
Total Pages: 446
Release: 2005
Genre: Technology & Engineering
ISBN:

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Proceedings of SPIE present the original research papers presented at SPIE conferences and other high-quality conferences in the broad-ranging fields of optics and photonics. These books provide prompt access to the latest innovations in research and technology in their respective fields. Proceedings of SPIE are among the most cited references in patent literature.


Optical MEMS, Nanophotonics, and Their Applications

Optical MEMS, Nanophotonics, and Their Applications
Author: Guangya Zhou
Publisher: CRC Press
Total Pages: 622
Release: 2017-12-14
Genre: Technology & Engineering
ISBN: 1351647601

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This book covers device design fundamentals and system applications in optical MEMS and nanophotonics. Expert authors showcase examples of how fusion of nanoelectromechanical (NEMS) with nanophotonic elements is creating powerful new photonic devices and systems including MEMS micromirrors, MEMS tunable filters, MEMS-based adjustable lenses and apertures, NEMS-driven variable silicon nanowire waveguide couplers, and NEMS tunable photonic crystal nanocavities. The book also addresses system applications in laser scanning displays, endoscopic systems, space telescopes, optical telecommunication systems, and biomedical implantable systems. Presents efforts to scale down mechanical and photonic elements into the nano regime for enhanced performance, faster operational speed, greater bandwidth, and higher level of integration. Showcases the integration of MEMS and optical/photonic devices into real commercial products. Addresses applications in optical telecommunication, sensing, imaging, and biomedical systems. Prof. Vincent C. Lee is Associate Professor in the Department of Electrical and Computer Engineering, National University of Singapore. Prof. Guangya Zhou is Associate Professor in the Department of Mechanical Engineering at National University of Singapore.


Nano/Microscale Heat Transfer

Nano/Microscale Heat Transfer
Author: Zhuomin M. Zhang
Publisher: Springer Nature
Total Pages: 780
Release: 2020-06-23
Genre: Science
ISBN: 3030450392

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This substantially updated and augmented second edition adds over 200 pages of text covering and an array of newer developments in nanoscale thermal transport. In Nano/Microscale Heat Transfer, 2nd edition, Dr. Zhang expands his classroom-proven text to incorporate thermal conductivity spectroscopy, time-domain and frequency-domain thermoreflectance techniques, quantum size effect on specific heat, coherent phonon, minimum thermal conductivity, interface thermal conductance, thermal interface materials, 2D sheet materials and their unique thermal properties, soft materials, first-principles simulation, hyperbolic metamaterials, magnetic polaritons, and new near-field radiation experiments and numerical simulations. Informed by over 12 years use, the author’s research experience, and feedback from teaching faculty, the book has been reorganized in many sections and enriched with more examples and homework problems. Solutions for selected problems are also available to qualified faculty via a password-protected website.• Substantially updates and augments the widely adopted original edition, adding over 200 pages and many new illustrations;• Incorporates student and faculty feedback from a decade of classroom use;• Elucidates concepts explained with many examples and illustrations;• Supports student application of theory with 300 homework problems;• Maximizes reader understanding of micro/nanoscale thermophysical properties and processes and how to apply them to thermal science and engineering;• Features MATLAB codes for working with size and temperature effects on thermal conductivity, specific heat of nanostructures, thin-film optics, RCWA, and near-field radiation.