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Open AccessJournal ArticleDOI

Designing coupled-resonator optical waveguides based on high-Q tapered grating-defect resonators

Hsi-Chun Liu, +1 more
- 09 Apr 2012 - 
- Vol. 20, Iss: 8, pp 9249-9263
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TLDR
The numerical characterization of strong gratings, the design of high-Q tapered grating-defect resonators, and the control of inter-resonator coupling for CROWs are demonstrated.
Abstract
We present a systematic design of coupled-resonator optical waveguides (CROWs) based on high-Q tapered grating-defect resonators. The formalism is based on coupled-mode theory where forward and backward waveguide modes are coupled by the grating. Although applied to strong gratings (periodic air holes in single-mode silicon-on-insulator waveguides), coupled-mode theory is shown to be valid, since the spatial Fourier transform of the resonant mode is engineered to minimize the coupling to radiation modes and thus the propagation loss. We demonstrate the numerical characterization of strong gratings, the design of high-Q tapered grating-defect resonators (Q>2 × 10^6, modal volume = 0.38•(λ/n)^3), and the control of inter-resonator coupling for CROWs. Furthermore, we design Butterworth and Bessel filters by tailoring the numbers of holes between adjacent defects. We show with numerical simulation that Butterworth CROWs are more tolerant against fabrication disorder than CROWs with uniform coupling coefficient.

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Citations
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Coupled-resonator optical waveguides for temporal integration of optical signals.

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Special Smith–Purcell radiation from an open resonator array

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TL;DR: In this paper, an open resonator array excited by an electron beam and able to generate a special kind of Smith-Purcell radiation (SPR) was uncovered, which is a single frequency radiation in a specific direction that is essentially different from ordinary SPR.
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Rigorous design of an ultra-high Q/V photonic/plasmonic cavity to be used in biosensing applications

TL;DR: In this article, a hybrid device based on a 1D PhC dielectric cavity vertically coupled to a plasmonic slot is proposed for use in biosensing applications.
References
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Journal ArticleDOI

High- Q photonic nanocavity in a two-dimensional photonic crystal

TL;DR: A silicon-based two-dimensional photonic-crystal slab is used to fabricate a nanocavity with Q = 45,000 and V = 7.0 × 10-14 cm3; the value of Q/V is 10–100 times larger than in previous studies, underlying the realization that light should be confined gently in order to be confined strongly.
Journal ArticleDOI

Coupled-resonator optical waveguide:?a proposal and analysis

TL;DR: The relations for the dispersion and the group velocity of the photonic band of the CROW's are obtained and it is found that they are solely characterized by coupling factor k(1) .
Journal ArticleDOI

Ultracompact optical buffers on a silicon chip

TL;DR: In this paper, the trade-offs between resonantly enhanced group delay, device size, insertion loss and operational bandwidth are analyzed for various delay-line designs, and a large fractional group delay exceeding 10 bits is achieved for bit rates as high as 20 Gbps.
Journal ArticleDOI

Ultra-compact high order ring resonator filters using submicron silicon photonic wires for on-chip optical interconnects

TL;DR: Ultra-compact 5(th) order ring resonator optical filters based on submicron silicon photonic wires are demonstrated, all within a footprint of 0.0007mm(2) on a silicon chip.
Journal ArticleDOI

Large-scale arrays of ultrahigh-Q coupled nanocavities

TL;DR: In this paper, an array of more than 100 coupled optical resonators has been demonstrated using a photonic crystal, which can slow light down to below 1% of its speed in a vacuum.
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