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2D patch antenna array on a double metal quantum cascade laser with 90% coupling to a Gaussian beam and selectable facet transparency at 1.9 THz

机译:双金属量子级联激光器上的2D贴片天线阵列,与高斯光束的耦合度> 90%,并且在1.9 THz时可选择的小面透明度

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摘要

2 x 2 parallel fed and 3 x 3 serial fed patch antenna arrays on a benzocyclobutene (BCB) polymer layer are integrated with a 70 mu m wide, dry etched, double metal waveguide quantum cascade laser, operating at about 1.9 THz. The BCB surrounds the quantum cascade laser ridge and is planarized to fit precisely its height. The patch antenna arrays emit a linearly polarized, highly symmetric beam perpendicular to the antenna plane. The beams have a FWHM angle of 49 degrees (2 x 2) and 35 degrees (3 x 3). Both measurements and simulations indicate coupling factors to a Gaussian beam of over 90%. The antenna design is strongly governed by the high thickness (h = 13.6 mu m) and the low dielectric constant (epsilon(r) = 2.45) of the BCB substrate. Because the patch array has a very low input reflectivity of -13 to -20 dB over the 1.7-2.1 THz operation band, the laser needs a partially transmitting reflector to maintain the Q-factor of the active medium resonator to assure lasing in the antennas operation band. By changing the dimensions of the reflector, the facet transparency can be designed in a wide range from fully transmissive to highly reflective. (C) 2016 Optical Society of America
机译:苯并环丁烯(BCB)聚合物层上的2 x 2并行馈电和3 x 3串行馈电贴片天线阵列与70微米宽,干法蚀刻的双金属波导量子级联激光器集成在一起,工作频率约为1.9 THz。 BCB围绕量子级联激光脊,并被平面化以精确地适合其高度。贴片天线阵列发射垂直于天线平面的线性极化的高度对称波束。光束的FWHM角为49度(2 x 2)和35度(3 x 3)。测量和模拟均表明与高斯光束的耦合因子超过90%。天线设计受到BCB基板的高厚度(h = 13.6μm)和低介电常数(epsilon(r)= 2.45)的支配。因为贴片阵列在1.7-2.1 THz的工作频带上具有-13至-20 dB的非常低的输入反射率,所以激光器需要部分透射的反射器来维持有源介质谐振器的Q因子,以确保天线发射激光操作带。通过更改反射镜的尺寸,可以在从完全透射到高反射的宽范围内设计小面透明度。 (C)2016美国眼镜学会

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