Kundu Iman, Dean Paul, Valavanis Alexander, Chen Li, Li Lianhe, Cunningham John E, Linfield Edmund H, Davies A Giles
Opt Express. 2014 Jun 30;22(13):16595-605. doi: 10.1364/OE.22.016595.
Discrete Vernier frequency tuning of terahertz quantum cascade lasers is demonstrated using a device comprising a two-section coupled-cavity. The two sections are separated by a narrow air gap, which is milled after device packaging using a focused ion beam. One section of the device (the lasing section) is electrically biased above threshold using a short current pulse, while the other section (the tuning section) is biased below threshold with a wider current pulse to achieve controlled localized electrical heating. The resulting thermally-induced shift in the longitudinal cavity modes of the tuning section is engineered to produce either a controllable blue shift or red shift of the emission frequency. This discrete Vernier frequency tuning far exceeds the tuning achievable from standard ridge lasers, and does not lead to any corresponding change in emitted power. Discrete tuning was observed over bandwidths of 50 and 85 GHz in a pair of devices, each using different design schemes. Interchanging the lasing and tuning sections of the same devices yielded red shifts of 20 and 30 GHz, respectively.
利用一种包含两段耦合腔的器件,演示了太赫兹量子级联激光器的离散游标频率调谐。这两段由一个狭窄的气隙隔开,该气隙在器件封装后使用聚焦离子束进行铣削。器件的一段(激射段)使用短电流脉冲在阈值以上进行电偏置,而另一段(调谐段)使用较宽的电流脉冲在阈值以下进行偏置,以实现可控的局部电加热。调谐段纵向腔模产生的热致频移被设计为产生发射频率的可控蓝移或红移。这种离散游标频率调谐远远超过了标准脊形激光器可实现的调谐,并且不会导致发射功率发生任何相应变化。在一对器件中,分别使用不同的设计方案,在50和85 GHz的带宽上观察到了离散调谐。互换同一器件的激射段和调谐段分别产生了20和30 GHz的红移。