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We present a comprehensive study of dispersion-engineered nanowire photonic crystal waveguides suitable for experiments in quantum optics and atomic physics with optically trapped atoms. Detailed design methodology and specifications are provided, as are the processing steps used to create silicon nitride
On guided waves in photonic crystal waveguides. Peter Kuchment and BengSeong Ong. ?. Department of Mathematics, Texas A&M University. College Station, TX 77843-3368 kuchment@math.tamu.edu bsong@math.tamu.edu. Abstract. The paper addresses the issue of existence of modes guided by linear defects in
Full-text (PDF) | The paper addresses the issue of existence and confinement of electromagnetic modes guided by linear defects in photonic crystals. Sufficient condition are provided for existence of such waves near a given spectral location. Confinement to the guide is achieved due to a photonic
Silica-embedded silicon photonic crystal waveguides. T. P. White1,*, L. O'Faolain1, Juntao Li1,2, L. C. Andreani3, and T. F. Krauss1. 1. School of Physics and Astronomy, University of St Andrews, St Andrews, Fife, KY169SS, UK. 2. . ZEISS GEMINI 1530/RAITH ELPHY electron beam writer at an acceleration voltage of 30.
The paper describes a systematic method for the tailoring of dispersion properties of slab-based photonic crystal waveguides. The method is based on the topology optimization method which consists in repeated finite element frequency domain analyzes, analytical sensitivity analyzes and gradient based design updates.
The light localization effects in silicon photonic crystal cavities at different disorder degrees have been studied using the finite difference time domain (FDTD) method in this paper. Numerical results showed that localization occurs and enhancement can be gained in the region of the cavity under certain conditions.
REPLACE THIS LINE WITH YOUR PAPER IDENTIFICATION NUMBER (DOUBLE-CLICK HERE TO EDIT) <. 1. Abstract—Slow light in photonic crystal waveguide (PCW) is now being heavily investigated for applications in optical devices. However, slow light with high group index in perfect PCW is usually accompanied by
2012. Document Version. Publisher's PDF, also known as Version of record. Link back to DTU Orbit nent, photonic crystal waveguides with a single quantum well, 10 quantum wells and three layers of quantum dots writer JEOL JBX-9300FS with an acceleration voltage of up to. 100kV . E-beam lithography is employed
Back to Top; Get PDF. Abstract. Slow light photonic crystal waveguides tightly compress propagating light and increase interaction times, showing immense potential for all-optical delay and The kagome-lattice waveguides are an excellent starting point for further slow light engineering in photonic crystal waveguides.
Back to Top; Get PDF. Abstract. The waveguide based on the honeycomb photonic crystal has propagating modes for both the TE and TM polarizations. The group index-normalized Transverse-electric and transverse-magnetic mode slow light propagation in a two-dimensional photonic crystal waveguide. Donglin Wang
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