Silicon-based Tunable Optical Filters
Title | Silicon-based Tunable Optical Filters PDF eBook |
Author | Dennis Hohlfeld |
Publisher | |
Pages | 0 |
Release | 2005 |
Genre | |
ISBN |
Tunable Micro-optics
Title | Tunable Micro-optics PDF eBook |
Author | Hans P. Zappe |
Publisher | Cambridge University Press |
Pages | 477 |
Release | 2016 |
Genre | Science |
ISBN | 1107032458 |
The first comprehensive survey of state-of-the-art tunable micro-optics, covering advances in materials, components and systems.
Fundamentals of Micro-Optics
Title | Fundamentals of Micro-Optics PDF eBook |
Author | Hans Zappe |
Publisher | Cambridge University Press |
Pages | 646 |
Release | 2010-09-30 |
Genre | Technology & Engineering |
ISBN | 1139493639 |
From optical fundamentals to advanced applications, this comprehensive guide to micro-optics covers all the key areas for those who need an in-depth introduction to micro-optic devices, technologies, and applications. Topics covered range from basic optics, optical materials, refraction, and diffraction, to micro-mirrors, micro-lenses, diffractive optics, optoelectronics, and fabrication. Advanced topics, such as tunable and nano-optics, are also discussed. Real-world case studies and numerous worked examples are provided throughout, making complex concepts easier to follow, whilst an extensive bibliography provides a valuable resource for further study. With exercises provided at the end of each chapter to aid and test understanding, this is an ideal textbook for graduate and advanced undergraduate students taking courses in optics, photonics, micro-optics, microsystems, and MEMs. It is also a useful self-study guide for research engineers working on optics development.
Fast Simulation of Electro-Thermal MEMS
Title | Fast Simulation of Electro-Thermal MEMS PDF eBook |
Author | Tamara Bechtold |
Publisher | Springer Science & Business Media |
Pages | 185 |
Release | 2006-11-01 |
Genre | Technology & Engineering |
ISBN | 3540346139 |
This book provides the reader with a complete methodology and software environment for creating efficient dynamic compact models for electro-thermal MEMS devices. It supplies the basic knowledge and understanding for using model order reduction at the engineering level. This tutorial is written for MEMS engineers and is enriched with many case studies which equip readers with the know-how to facilitate the simulation of a specific problem.
Towards the First Silicon Laser
Title | Towards the First Silicon Laser PDF eBook |
Author | Lorenzo Pavesi |
Publisher | Springer Science & Business Media |
Pages | 495 |
Release | 2012-12-06 |
Genre | Science |
ISBN | 9401001499 |
Silicon, the leading material in microelectronics during the last four decades, also promises to be the key material in the future. Despite many claims that silicon technology has reached fundamental limits, the performance of silicon microelectronics continues to improve steadily. The same holds for almost all the applications for which Si was considered to be unsuitable. The main exception to this positive trend is the silicon laser, which has not been demonstrated to date. The main reason for this comes from a fundamental limitation related to the indirect nature of the Si band-gap. In the recent past, many different approaches have been taken to achieve this goal: dislocated silicon, extremely pure silicon, silicon nanocrystals, porous silicon, Er doped Si-Ge, SiGe alloys and multiquantum wells, SiGe quantum dots, SiGe quantum cascade structures, shallow impurity centers in silicon and Er doped silicon. All of these are abundantly illustrated in the present book.
Silicon Photonics
Title | Silicon Photonics PDF eBook |
Author | Graham T. Reed |
Publisher | John Wiley & Sons |
Pages | 354 |
Release | 2008-05-23 |
Genre | Technology & Engineering |
ISBN | 0470994525 |
Silicon photonics is currently a very active and progressive area of research, as silicon optical circuits have emerged as the replacement technology for copper-based circuits in communication and broadband networks. The demand for ever improving communications and computing performance continues, and this in turn means that photonic circuits are finding ever increasing application areas. This text provides an important and timely overview of the ‘hot topics’ in the field, covering the various aspects of the technology that form the research area of silicon photonics. With contributions from some of the world’s leading researchers in silicon photonics, this book collates the latest advances in the technology. Silicon Photonics: the State of the Art opens with a highly informative foreword, and continues to feature: the integrated photonic circuit; silicon photonic waveguides; photonic bandgap waveguides; mechanisms for optical modulation in silicon; silicon based light sources; optical detection technologies for silicon photonics; passive silicon photonic devices; photonic and electronic integration approaches; applications in communications and sensors. Silicon Photonics: the State of the Art covers the essential elements of the entire field that is silicon photonics and is therefore an invaluable text for photonics engineers and professionals working in the fields of optical networks, optical communications, and semiconductor electronics. It is also an informative reference for graduate students studying for PhD in fibre optics, integrated optics, optical networking, microelectronics, or telecommunications.
Optical Microscanners and Microspectrometers using Thermal Bimorph Actuators
Title | Optical Microscanners and Microspectrometers using Thermal Bimorph Actuators PDF eBook |
Author | Gerhard Lammel |
Publisher | Springer Science & Business Media |
Pages | 278 |
Release | 2013-03-09 |
Genre | Technology & Engineering |
ISBN | 1475760833 |
Optical Microscanners and Microspectrometers using Thermal Bimorph Actuators shows how to design and fabricate optical microsystems using innovative technologies and and original architectures. A barcode scanner, laser projection mirror and a microspectrometer are explained in detail, starting from the system conception, discussing simulations, choice of cleanroom technologies, design, fabrication, device test, packaging all the way to the system assembly. An advanced microscanning device capable of one- and two-dimensional scanning can be integrated in a compact barcode scanning system composed of a laser diode and adapted optics. The original design of the microscanner combines efficiently the miniaturized thermal mechanical actuator and the reflecting mirror, providing a one-dimensional scanning or an unique combination of two movements, depending on the geometry. The simplicity of the device makes it a competitive component. The authors rethink the design of a miniaturized optical device and find a compact solution for a microspectrometer, based on a tunable filter and a single pixel detector. A porous silicon technology combines efficiently the optical filter function with a thermal mechanical actuator on chip. The methodology for design and process calibration are discussed in detail. The device is the core component of an infrared gas spectrometer.