DocumentCode
2493264
Title
Slow light and its potential applications
Author
Zhengbin, Li ; Chao, Peng ; Anshi, Xu
Author_Institution
Peking Univ., Beijing
fYear
2007
fDate
17-19 Oct. 2007
Firstpage
603
Lastpage
603
Abstract
Summary form only given. Slow light has achieved great progress in waveguide and fibers in room temperature, which could be accelerating the transition of this technique to applications. This talk will review devising methods for tailoring the dispersion of optical materials, such as electromagnetically induced transparency, photonic crystals, and nano-optic resonators over the last decade. And the potential applications of slow light for optical buffering, data synchronization, optical memories, and optical signal processing will be cataloged. Then the interaction between slow light and Sagnac effect is discussed. The concept of the Sagnac effect in a slow-light medium and resonator structure with high group dispersion is investigated. It is found that a slow-light medium can be utilized for relative motion sensing, and a slow-light resonator structure is suitable to detect absolute rotation for navigation purposes. It is noted that the high group dispersion leads to a huge enhancement of the rotation sensor´s sensitivity in a resonating structure, and an approach to evaluate and design resonator devices with slow-light property is proposed. Moreover, a folded loop-lattice-based structure is numerically simulated to verify the concept.
Keywords
optical fibre dispersion; optical resonators; photonic crystals; self-induced transparency; Sagnac effect; data synchronization; electromagnetically induced transparency; group dispersion; loop-lattice-based structure; nanooptic resonators; optical buffering; optical materials; optical memories; optical signal processing; photonic crystals; resonator structure; rotation sensor sensitivity; slow light; slow-light medium; Acceleration; Electromagnetic waveguides; Optical buffering; Optical resonators; Optical signal processing; Optical waveguides; Sagnac interferometers; Slow light; Temperature; Waveguide transitions;
fLanguage
English
Publisher
ieee
Conference_Titel
Optical Fiber Communication and Optoelectronics Conference, 2007 Asia
Conference_Location
Shanghai
Print_ISBN
978-0-9789217-2-9
Electronic_ISBN
978-0-9789217-2-9
Type
conf
DOI
10.1109/AOE.2007.4410890
Filename
4410890
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