Institut d'Electronique Fondamentale, Université Paris Sud, UMR 8622 CNRS, 91405 Orsay, France.
Opt Lett. 2010 Mar 15;35(6):859-61. doi: 10.1364/OL.35.000859.
We report single-mode, surface-emitting, mid-IR, photonic-crystal (PhC), quantum-cascade lasers with linearly polarized and highly directional single-lobed emission. A metallic square-lattice photonic crystal with elliptical air holes and pi phase shift was used as the resonator. The 2D feedback coupling--necessary for the operation of the photonic-crystal resonator--is induced by the mismatch between the modes supported by metalized and nonmetalized regions and yields single-mode output with a side-mode suppression ratio >30 dB. The elliptical air holes modify the relative intensities of the TM field components (H(x) and H(y)) in the PhC plane, thus yielding linearly polarized emission. The pi phase shift allows the system to produce a single-lobed pattern in the far field with a narrow divergence angle (2.4 degrees x 1.8 degrees). The emission is perfectly orthogonal to the device surface, and the maximum operating temperature--still limited by the metallic ohmic losses--is 240 K.
我们报告了一种单模、表面发射、中红外、光子晶体(PhC)量子级联激光器,具有线偏振和高度定向的单叶发射。采用具有椭圆形空气孔和π相移的金属正方形晶格光子晶体作为谐振腔。二维反馈耦合——光子晶体谐振腔运行所必需的——是由金属化和非金属化区域所支持的模式之间的失配引起的,从而产生具有>30 dB 的边模抑制比的单模输出。椭圆形空气孔改变了 PhC 平面中 TM 场分量(H(x)和 H(y))的相对强度,从而产生线偏振发射。π相移允许系统在远场中产生具有窄发散角(2.4 度×1.8 度)的单叶图案。发射与器件表面完全正交,最大工作温度——仍然受到金属欧姆损耗的限制——为 240 K。