Krall Michael, Brandstetter Martin, Deutsch Christoph, Detz Hermann, Andrews Aaron Maxwell, Schrenk Werner, Strasser Gottfried, Unterrainer Karl
Opt Express. 2014 Jan 13;22(1):274-82. doi: 10.1364/OE.22.000274.
We report on micropillar-based terahertz lasers with active pillars that are much smaller than the emission wavelength. These micropillar array lasers correspond to scaled-down band-edge photonic crystal lasers forming an active photonic metamaterial. In contrast to photonic crystal lasers which use significantly larger pillar structures, lasing emission is not observed close to high-symmetry points in the photonic band diagram, but in the effective medium regime. We measure stimulated emission at 4 THz for micropillar array lasers with pillar diameters of 5 µm. Our results not only demonstrate the integration of active subwavelength optics in a terahertz laser, but are also an important step towards the realization of nanowire-based terahertz lasers.
我们报道了基于微柱的太赫兹激光器,其有源柱比发射波长小得多。这些微柱阵列激光器对应于缩小比例的带边光子晶体激光器,形成了有源光子超材料。与使用明显更大柱结构的光子晶体激光器不同,在光子能带图中,激光发射并非在高对称点附近观测到,而是在有效介质区域观测到。对于柱直径为5微米的微柱阵列激光器,我们测量到了4太赫兹的受激发射。我们的结果不仅证明了有源亚波长光学器件在太赫兹激光器中的集成,也是朝着实现基于纳米线的太赫兹激光器迈出的重要一步。