Wallis R, Degl'Iinnocenti R, Jessop D S, Ren Y, Klimont A, Shah Y D, Mitrofanov O, Bledt C M, Melzer J E, Harrington J A, Beere H E, Ritchie D A
Opt Express. 2015 Oct 5;23(20):26276-87. doi: 10.1364/OE.23.026276.
The growth in terahertz frequency applications utilising the quantum cascade laser is hampered by a lack of targeted power delivery solutions over large distances (>100 mm). Here we demonstrate the efficient coupling of double-metal quantum cascade lasers into flexible polystyrene lined hollow metallic waveguides via the use of a hollow copper waveguide integrated into the laser mounting block. Our approach exhibits low divergence, Gaussian-like emission, which is robust to misalignment error, at distances > 550 mm, with a coupling efficiency from the hollow copper waveguide into the flexible waveguide > 90%. We also demonstrate the ability to nitrogen purge the flexible waveguide, increasing the power transmission by up to 20% at 2.85 THz, which paves the way for future fibre based terahertz sensing and spectroscopy applications.
利用量子级联激光器的太赫兹频率应用的发展受到缺乏远距离(>100毫米)目标功率传输解决方案的阻碍。在此,我们展示了通过将集成在激光器安装块中的空心铜波导,将双金属量子级联激光器高效耦合到柔性聚苯乙烯内衬空心金属波导中。我们的方法在距离>550毫米时表现出低发散、类高斯发射,对对准误差具有鲁棒性,从空心铜波导到柔性波导的耦合效率>90%。我们还展示了对柔性波导进行氮气吹扫的能力,在2.85太赫兹时功率传输增加高达20%,这为未来基于光纤的太赫兹传感和光谱应用铺平了道路。