Greusard L, Costantini D, Bousseksou A, Decobert J, Lelarge F, Duan G-H, De Wilde Y, Colombelli R
Institut Langevin, CNRS UMR7587, 1, rue Jussieu, 75005 Paris, France.
Opt Express. 2013 May 6;21(9):10422-9. doi: 10.1364/OE.21.010422.
We image in near-field the transverse modes of semiconductor distributed feedback (DFB) lasers operating at λ ≈ 1.3 μm and employing metallic gratings. The active region is based on tensile-strained InGaAlAs quantum wells emitting transverse magnetic polarized light and is coupled via an extremely thin cladding to a nano-patterned gold grating integrated on the device surface. Single mode emission is achieved, which tunes with the grating periodicity. The near-field measurements confirm laser operation on the fundamental transverse mode. Furthermore--together with a laser threshold reduction observed in the DFB lasers--it suggests that the patterning of the top metal contact can be a strategy to reduce the high plasmonic losses in this kind of systems.
我们对工作在λ≈1.3μm且采用金属光栅的半导体分布反馈(DFB)激光器的横向模式进行了近场成像。有源区基于发射横向磁偏振光的拉伸应变InGaAlAs量子阱,并通过极薄的包层与集成在器件表面的纳米图案化金光栅耦合。实现了单模发射,其随光栅周期调谐。近场测量证实了激光器在基模横向模式下工作。此外,与在DFB激光器中观察到的激光阈值降低一起,这表明顶部金属接触的图案化可以是降低此类系统中高等离子体损耗的一种策略。