6 edition of Microresonators as building blocks for VLSI photonics found in the catalog.
Microresonators as building blocks for VLSI photonics
Course of the International School of Quantum Electronics (39th 2003 Ettore Majorana International Centre for Scientific Culture)
|Statement||editors, Francesco Michelotti, Alfred Driessen, Mario Bertolotti.|
|Series||AIP conference proceedings -- v. 709, AIP conference proceedings -- no. 709.|
|Contributions||Michelotti, Francesco., Driessen, Alfred., Bertolotti, Mario., American Institute of Physics.|
|LC Classifications||TA1505 .C69 2003|
|The Physical Object|
|Pagination||ix, 451 p. :|
|Number of Pages||451|
|LC Control Number||2004104517|
This paper presents an overview of our work on the theory, design, fabrication, and integration of micro and nano-scale optical wires and devices for generic and application specific VLSI photonic integrated circuits. We use micro- and nano-wires, micro-resonators, plasmonic wires, photonic crystals, and metamaterials as the basic building blocks of the photonic integrated circuits and analyze. Although the concept of constructing active optical waveguides in crystalline silicon has existed for over twenty years, it is only in the past few years that silicon photonics has been given serious attention as a displacing technology. Fueled by the predicted saturation of "Moore's Law" within the next decade, universities and industries from all over the world are exploring the Cited by:
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Photonics on CMOS is the integration of microelectronics technology and optics components to enable either improved functionality of the electronic circuit or miniaturization of optical functions. The integration of a photonic layer on an electronic circuit has been studied with three routes. For combined fabrication at the front end level, several building blocks using a silicon on insulator Cited by: A link to Luceda Photonics IPKISS allows a completely automated model generation from layout data. The photonic/plasmonic behavior of the device can then be simulated by selecting the most appropriate algorithm (e.g., FIT/FDTD, FEM, BEM/MoM, MLFMM, and more).
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Microresonators as Building Blocks for VLSI Photonics: International School of Quantum Electronics, 39th Course (AIP Conference Proceedings) [Michelotti, Francesco, Driessen, Alfred, Bertolotti, Mario] on *FREE* shipping on qualifying offers. Microresonators as Building Blocks for VLSI Photonics: International School of Quantum Electronics, 39th Course (AIP Conference Proceedings).
Get this from a library. Microresonators as building blocks for VLSI photonics: International School of Quantum Electronics, 39th Course, Erice, Italy, October [Francesco Michelotti; Alfred Driessen; Mario Bertolotti; American Institute of Physics.;].
Driessen A, Geuzebroek DH, Hoekstra H, Kelderman H, Klein EJ, Klunder DJW et al. Microresonators as building blocks for VLSI Photonics. In Michelotti F, Driessen A, Bertolotti M, editors, Microresonators as building blocks for VLSI photonics: International Cited by: In both cases the number of functional elements within a given chip area can be enhanced by several orders of magnitude: VLSI photonics.
In this talk optical microresonators are presented as promising basic building blocks for filtering, amplification, modulation, switching and by: The book also covers distributed feedback microresonators for slow light, controllable dispersion, and enhanced nonlinearity.
A portion of coverage is dedicated to the unique properties of resonators, which are extremely efficient tools when conducting multiple : Hardcover. Stoffer, K. Hiremath and M. Hammer, Comparison of coupled mode theory and FDTD simulations of coupling between bent and straight optical waveguides, AIP Proceedings on Microresonators as building blocks for VLSI photonics, International School of Quantum Electronics, 39th course, Erice, Sicily, editors: M.
Bertolotti, A. Driessen and F. In particular, this paper provides a higher-order logic formalization of optical microresonators which are the most fundamental building blocks of many photonic devices. In Michelotti F, Driessen A, Bertolotti M, editors, Microresonators As Building Blocks For VLSI Photonics: International School of Quantum Electronics, 39th Course.
Cited by: A new high-index contrast material system, micrometer sized building blocks, and IC fabrication techniques, are leveraged in order to realize commercial VLSI Photonic circuits. Do you want to read Author: Brent Little.
International School of Quantum Electronics "Microresonators as building blocks for VLSI photonics", Erice, Sicily, Italy (invited, ) M.
Hammer Quadridirectional mode expansion modeling in integrated optics Kleinheubacher Tagung, Miltenberg, Germany () M. Hammer. Supplies NIST traceable inspection and metrology calibration products for the semiconductor industry.
Products include instrument calibration standard. Microresonators as building blocks for VLSI photonics, otti, en, otti (Eds.), American Institute of Physics, VolumeISBNpages, New York ().
FISICA GENERALE Esercizi svolti per corsi del nuovo ordinamento universitario, otti, 3a - Edizione, Esculapio Editore, Bologna, (). Microelectronics deals with electronic devices or components at micro and nano scale where as VLSI Design deals with the technology to achieve the goal of microelectronics.
In a sense VLSI is subset of microelectronics. But the Master’s courses of. VLSI Photonics: Science and Engineering of Micro/Nano-Photonics Prof.
El-Hang Lee, Director OPERA (Optics and Photonics Elite Research Academy) National Research Center of Excellence for VLSI Photonic Integration Technology Micro/nano-Photonics Advanced Research Center (m-PARC). Journal/Conference/Book: Proceedings of the International School of Quantum Electronics, 39th course "Microresonators as building blocks for VLSI photonics" Volume(Issue): p Location: Erice, Italy: DOI: / Citations: Look up on Google Scholar.
ULTRACOMPACT OPTICAL SENSORS BASED ON HIGH INDEX-CONTRAST PHOTONIC STRUCTURES. Authors; Authors and affiliations Tan F.S., Krioukov E., Otto C., Gersen H., van Hulst N.F. and Kuipers L., Microresonators as building blocks for VLSI photonics, AIP Conf.
Proc. ,1–18 (). Driessen A. et al. () ULTRACOMPACT OPTICAL SENSORS BASED Cited by: 3. Microresonators as building blocks for VLSI photonics Driessen, A., Geuzebroek, DH., Hoekstra, HJWM., Kelderman, H., Klein, EJ., Klunder, DJW., Roeloffzen, CGH., Tan.
Proc. SPIEIntegrated Optics: Theory and Applications, (30 September ); doi: / [B] BOOK CHAPTERS [B.1] A. Melloni, R. Costa, G. Cusmai, F. Morichetti, P.
Rosotti and M. Martinelli, chapter “Experimental investigation of ring-resonators in SiON. Stoffer, R., Hiremath, K.R., et al. Comparison of coupled mode theory and FDTD simulations of coupling between bent and straight optical waveguides. In Michelotti, F., Driessen, A., et al. (eds.), Microresonators as building blocks for VLSI photonics, volume of AIP conference proceedings, – () Google ScholarCited by: 4.
Microresonators as promising building blocks for VLSI photonics Alfred Driessen, Ronald Dekker, Mart Diemeer, Douwe Geuzebroek, Hugo Hoekstra, Edwin Klein, Arne Leinse.The building blocks of photonic devices inside of silicon. In research described in the journal Nature Photonics, the Turkey-based researchers have developed a 3D laser fabrication technique that deliberately creates the conditions for exploiting these interactions, known as nonlinear feedback mechanisms.
The researchers have dubbed the.book: Microresonators as building blocks for VLSI photonics: International School of Quantum Electronics, 39th Course - () / - - Photoconductng polymer-liquid crystal structure studied by electro-reflectance.