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Design and simulation of losses in Ge/SiGe terahertz quantum cascade laser waveguides

Authors :
Gallacher, Kevin
Ortolani, Michele
Ciano, Chiara
Baldassarre, Leonetta
Virgilio, Michele
Scalari, Giacomo
Faist, Jérôme
Di Gaspare, Luciana
De Seta, Monica
Capellini, Giovanni
Grange, Thomas
Birner, Stefan
Paul, Douglas J.
Source :
Optics Express, 28 (4)
Publication Year :
2020
Publisher :
OSA Publishing, 2020.

Abstract

The waveguide losses from a range of surface plasmon and double metal waveguides for Ge/Si1−xGex THz quantum cascade laser gain media are investigated at 4.79 THz (62.6 μm wavelength). Double metal waveguides demonstrate lower losses than surface plasmonic guiding with minimum losses for a 10 μm thick active gain region with silver metal of 21 cm−1 at 300 K reducing to 14.5 cm−1 at 10 K. Losses for silicon foundry compatible metals including Al and Cu are also provided for comparison and to provide a guide for gain requirements to enable lasers to be fabricated in commercial silicon foundries. To allow these losses to be calculated for a range of designs, the complex refractive index of a range of nominally undoped Si1−xGex with x = 0.7, 0.8 and 0.9 and doped Ge heterolayers were extracted from Fourier transform infrared spectroscopy measurements between 0.1 and 10 THz and from 300 K down to 10 K. The results demonstrate losses comparable to similar designs of GaAs/AlGaAs quantum cascade laser plasmon waveguides indicating that a gain threshold of 15.1 cm−1 and 23.8 cm−1 are required to produce a 4.79 THz Ge/SiGe THz laser at 10 K and 300 K, respectively, for 2 mm long double metal waveguide quantum cascade lasers with facet coatings.<br />Optics Express, 28 (4)<br />ISSN:1094-4087

Details

Language :
English
ISSN :
10944087
Database :
OpenAIRE
Journal :
Optics Express, 28 (4)
Accession number :
edsair.doi.dedup.....a02092e2c5bbc4c752ee6e0afca95d11