DocumentCode :
29728
Title :
Coupled Spiral Interferometers
Author :
Wenqiong Guo ; Digonnet, Michel J. F.
Author_Institution :
Dept. of Appl. Phys., Stanford Univ., Stanford, CA, USA
Volume :
32
Issue :
21
fYear :
2014
fDate :
Nov.1, 1 2014
Firstpage :
4162
Lastpage :
4168
Abstract :
Coupled resonant optical waveguides (CROWs) exhibit unique abilities to support broadband slow light and steeply sloped resonances, which have important applications in many branches of photonics. These features, however, generally require coupling a large number N of resonators, which compromises compactness and thermal stability. Here, we introduce a class of optical interferometers that exhibit similar properties as CROWs, while occupying a much smaller area (~1/N) and being consequently more stable. Called a coupled spiral interferometer (CSPIN), it consists of a spiral waveguide with continuous coupling between the spiral´s arms, which induces radial energy exchange between arms. We show through numerical simulations that with suitable design, this coupling mechanism efficiently traps light inside the spiral. With proper choice of N and the sequence of coupling coefficients between arms, a CSPIN can be engineered to behave like a ring resonator or various types of CROWs and to support strong slow light, fast light, broadband slow light, and/or light of negative group index.
Keywords :
light interferometers; numerical analysis; optical couplers; optical design techniques; optical metamaterials; optical resonators; optical waveguides; slow light; thermal stability; CROW; CSPIN; broadband slow light; compactness; continuous coupling; coupled resonant optical waveguides; coupled spiral interferometers; coupling coefficient sequence; coupling mechanism; design; fast light; negative group index; numerical simulations; optical interferometers; radial energy exchange; ring resonator; spiral arms; spiral waveguide; steeply sloped resonances; strong slow light; thermal stability; Couplings; Delays; Indexes; Optical ring resonators; Optical waveguides; Slow light; Spirals; Interferometry; optical resonators; optical waveguides; slow light;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2348533
Filename :
6879232
Link To Document :
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