Title :
Metal-metal terahertz quantum cascade laser with hybrid mode section
Author :
Tobias Fobbe;Hanond Nong;Rüdiger Schott;Shovon Pal;Sergej Markmann;Negar Hekmat;Jingxuan Zhu;Yingjun Han;Lianhe Li;Paul Dean;Edmund H. Linfield;A. Giles Davies;Andreas D. Wieck;Nathan Jukam
Author_Institution :
AG Terahertz Spektroskopie und Technologie, Ruhr-Universitä
Abstract :
A hybrid mode section is integrated into the end of the metal-metal (MM) waveguide of a terahertz (THz) frequency quantum cascade laser (QCL) by removing sub-wavelength portions of the top metal layer. This allows a hybrid mode to penetrate into the air, which reduces the effective index of the mode and improves the out-coupling performance at the facet. The transmission of the processed metal-metal hybrid section (MMHS) waveguide is further increased by ensuring its length fulfills the criterion for constructive interference. These simple modifications to a 2.5 THz MM QCL waveguide result in a significant increase in the output emission power. In addition, simulations show that further improvements in out-coupling efficiency can be achieved for lower frequencies with effective refractive indices close to the geometric mean of the indices of the MM waveguide and air.
Keywords :
"Quantum cascade lasers","Interference","Reflection","Metals","Waveguide lasers","Refractive index","Current density"
Conference_Titel :
Infrared, Millimeter, and Terahertz waves (IRMMW-THz), 2015 40th International Conference on
Electronic_ISBN :
2162-2035
DOI :
10.1109/IRMMW-THz.2015.7327687