Title :
From Photonic Crystal to Subwavelength Micropillar Array Terahertz Lasers
Author :
Krall, Michael ; Brandstetter, Martin ; Deutsch, Christoph ; Detz, Hermann ; Andrews, Aaron Maxwell ; Schrenk, Werner ; Strasser, Gottfried ; Unterrainer, Karl
Author_Institution :
Center for Micro- & Nanostruct., Vienna Univ. of Technol., Vienna, Austria
Abstract :
We investigate terahertz quantum cascade lasers with a dense array of active micropillars forming the gain medium. Depending on the size of these pillars relative to the emission wavelength different optical regimes are identified. For pillar dimensions on the order of the emission wavelength, a photonic crystal resonator is created. Single mode emission is observed at high symmetry points of the photonic band structure. The selection mechanism of the favored laser mode is studied by analyzing the gain enhancement effect for eigenmodes with a low group velocity and a large mode confinement of the electric field energy in the micropillars. Subwavelength micropillar arrays constitute a photonic metamaterial, which can be described using an effective medium approximation. Similar to a bulk laser ridge, the array forms a Fabry-Pérot resonator that is defined by the boundaries of the array. From the longitudinal mode spacing, we derive an effective group index of the pillar medium. Limitations in terms of minimum filling factors and waveguide losses for the realization of subwavelength micropillar and nanowire array terahertz quantum cascade lasers are investigated.
Keywords :
eigenvalues and eigenfunctions; laser cavity resonators; laser modes; micro-optics; microwave photonics; nanophotonics; nanowires; optical metamaterials; photonic band gap; photonic crystals; quantum cascade lasers; semiconductor laser arrays; terahertz metamaterials; waveguide lasers; Fabry-Perot resonator; active micropillars; effective medium approximation; eigenmodes; electric field energy; emission wavelength; filling factors; gain enhancement effect; gain medium; group index; group velocity; laser mode; longitudinal mode spacing; mode confinement; nanowire array terahertz quantum cascade lasers; optical regimes; photonic band structure; photonic crystal resonator; photonic metamaterial; pillar dimensions; pillar medium; single mode emission; subwavelength micropillar array terahertz lasers; symmetry points; waveguide losses; Arrays; Laser modes; Optical losses; Optical waveguides; Photonic crystals; Quantum cascade lasers; Waveguide lasers; Photonic crystals; optical metamaterials; optical waveguides; quantum cascade lasers; terahertz;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2015.2419216