Fathololoumi S, Dupont E, Razavipour S G, Laframboise S R, Delage A, Wasilewski Z R, Bezinger A, Rafi G Z, Safavi-Naeini S, Ban D, Liu H C
Institute for Microstructural Sciences, National Research Council of Canada, Ottawa, ON, Canada.
Opt Express. 2010 May 10;18(10):10036-48. doi: 10.1364/OE.18.010036.
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.
本文介绍了一种具有电可控横向模式的高功率太赫兹量子级联激光器(QCL)的设计与制造。通过对称的侧向电流注入方案,光束模式的切换实现了动态光束切换。文中给出了角分辨L-I曲线测量、近场和远场图案以及角分辨激光光谱。测量结果证实,准TM(01)横向模式首先激射,并在较低电流注入时主导激光运转,而准TM(00)模式在较高阈值电流密度下激射,并在高电流注入时占主导地位。近场和远场测量证实,当电流密度从1.9 kA/cm² 变化到2.3 kA/cm² 时,激射太赫兹光束的发射角可操控25度。二维电流和模式计算提供了一个简单模型,用以解释不同偏置条件下各模式的行为。