Zhang Hua, Dunbar L Andrea, Scalari Giacomo, Houdré Romuald, Faist Jérôme
Opt Express. 2007 Dec 10;15(25):16818-27. doi: 10.1364/oe.15.016818.
We combine photonic crystal and quantum cascade band engineering to create an in-plane laser at terahertz frequency. We demonstrate that such photonic crystal lasers strongly improve the performances of terahertz quantum cascade material in terms of threshold current, waveguide losses, emission mode selection, tunability and maximum operation temperature. The laser operates in a slow-light regime between the M saddle point and K band-edge in reciprocal lattice. Coarse frequency control of half of a terahertz is achieved by lithographically tuning the photonic crystal period. Thanks to field assisted gain shift and cavity pulling, the single mode emission is continuously tuned over 30 GHz.
我们将光子晶体与量子级联能带工程相结合,以制造出太赫兹频率的面内激光器。我们证明,这种光子晶体激光器在阈值电流、波导损耗、发射模式选择、可调谐性和最高工作温度方面,极大地提升了太赫兹量子级联材料的性能。该激光器在倒易晶格中的M鞍点和K带边之间的慢光区域工作。通过光刻调整光子晶体周期,可实现高达半太赫兹的粗频率控制。得益于场辅助增益频移和腔牵引效应,单模发射可在超过30吉赫兹的范围内连续调谐。