| Literature DB >> 20588857 |
S Fathololoumi1, E Dupont, S G Razavipour, S R Laframboise, A Delage, Z R Wasilewski, A Bezinger, G Z Rafi, S Safavi-Naeini, D Ban, H C Liu.
Abstract
The design and fabrication of a high power THz quantum cascade laser (QCL), with electrically controllable transverse mode is presented. The switching of the beam pattern results in dynamic beam switching using a symmetric side current injection scheme. The angular-resolved L-I curves measurements, near-field and far-field patterns and angular-resolved lasing spectra are presented. The measurement results confirm that the quasi-TM(01) transverse mode lases first and dominates the lasing operation at lower current injection, while the quasi-TM(00) mode lases at a higher threshold current density and becomes dominant at high current injection. The near-field and far-field measurements confirm that the lasing THz beam is maneuvered by 25 degrees in emission angle, when the current density changes from 1.9 kA/cm(2) to 2.3 kA/cm(2). A two-dimension (2D) current and mode calculation provides a simple model to explain the behavior of each mode under different bias conditions. (c) 2010 Optical Society of America.Entities:
Mesh:
Year: 2010 PMID: 20588857 DOI: 10.1364/OE.18.010036
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894