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Computational silicon nanophotonic design

2018
Photonic integration circuits (PICs) have received overwhelming attention in the past few decades due to various advantages over electronic circuits including absence of Joule effect and huge bandwidth. The most significant problem obstructing their commercial application is the integration density, which is largely determined by a signal wavelength ...
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Silicon nanophotonics : nanolasers with a twist

Nature Photonics, 2011
Optics is widely considered to be the best solution for coping with the growing information traffic found inside increasingly complex electronic processors and circuits. In particular, it is believed that the speed bottleneck inside and between processor chips will significantly impede further growth in the field electronics1. One of the major research
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Technology Challenges for Silicon Nanophotonics and Beyond

2007 9th International Conference on Transparent Optical Networks, 2007
The development of Si-based photonics has been far behind the development of electronics for long time. There are two reasons for that. As silicon is an indirect band gap semiconductor, achieving light emission and gain is quite difficult. On the other hand, for using silicon as a light guiding material for passive devices, the main constrains until ...
Lech Wosinski   +3 more
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Nationwide Entanglement Distribution with Silicon Nanophotonic Chip

Optical Fiber Communication Conference (OFC) 2025
We developed a silicon chip capable of producing and delivering a detected rate of 460,000 pairs of entangled photons with a fidelity of 97.90(3)% fidelity. The entangled photons were transmitted over 155 km of fiber deployed across Singapore (66 dB loss), demonstrating a major advance in the capability of silicon nanophotonics for powering future ...
Jinyi Du   +6 more
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Nanophotonics in silicon-organic hybrid structures

SPIE Proceedings, 2009
Two dimensional photonic crystal waveguides in high index materials enable integrated optical devices with an extremely small geometrical footprint on the scale of micrometers.1-3 Slotted waveguides are based on the guiding of light in low refractive index materials and a field enhancement in this particular region of the device.
Manfred Eich   +8 more
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Nanophotonic Devices in Silicon for Nonlinear Optics

2010
Abstract : Silicon' s extremely high refractive index and low loss at telecommunications frequencies make it possible for silicon waveguides to confine optical modes to sub-diffraction-limited areas. We can gain control of photons on the nanometer scale, and can force strong interactions with nonlinear waveguide claddings.
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Silicon Nanophotonics

IEEE Design & Test, 2014
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Amorphous Silicon-on-Diamond Nanophotonics

2026 IEEE Silicon Photonics Conference (SiPhotonics)
Sohrab Samadi   +8 more
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