arXiv · 1611.09523
Ultra-compact injection terahertz laser using the resonant inter-layer radiative transitions in multi-graphene-layer structure
Abstract
The optimization of laser resonators represents a crucial issue for the design of terahertz semiconductor lasers with high gain and low absorption loss. In this paper, we put forward and optimize the surface plasmonic metal waveguide geometry for the recently proposed terahertz injection laser based on resonant radiative transitions between tunnel-coupled grapheme layers. We find an optimal number of active graphene layer pairs corresponding to the maximum net modal gain. The maximum gain increases with frequency and can be as large as ~ 500 cm-1 at 8 THz, while the threshold length of laser resonator can be as small as ~ 50 mkm. Our findings substantiate the possibility of ultra-compact voltage-tunable graphene-based lasers operating at room temperature.
Explore related subjects
Keep this discovery
Alexander A. Dubinov, Andrey Bylinkin, Vladimir Ya. Aleshkin, Victor Ryzhii, Taiichi Otsuji, Dmitry Svintsov. 2016-11-29. Ultra-compact injection terahertz laser using the resonant inter-layer radiative transitions in multi-graphene-layer structure. https://doi.org/10.1364/oe.24.029603
Cite the original work for its findings. Save a collection to share your selection of sources.