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Nonlinear optical interactions in silicon waveguides
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DOI:10.1515/nanoph-2016-0001.png)
Abstract
En 中文
The strong nonlinear response of silicon photonic nanowire waveguides allows for the integration of nonlinear optical functions on a chip. However, the detrimental nonlinear optical absorption in silicon at telecom wavelengths limits the efficiency of many such experiments. In this review, several approaches are proposed and demonstrated to overcome this fundamental issue. By using the proposed methods, we demonstrate amongst others supercontinuum generation, frequency comb generation, a parametric optical amplifier, and a parametric optical oscillator.
Keywords:
PARAMETRIC WAVELENGTH CONVERSION
PHOTONIC CRYSTAL FIBER
SUPERCONTINUUM GENERATION
AMORPHOUS-SILICON
TELECOMMUNICATION WAVELENGTHS
CHROMATIC DISPERSION
FREQUENCY-CONVERSION
NANOPHOTONIC WIRES
UP-CONVERSION
A-SIH
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