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Multiple terahertz beams based on a Fourier grating and a quantum cascade laser

机译:基于傅里叶光栅和量子级联激光器的多个太赫兹梁

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Large heterodyne receiver arrays (∼100 pixel) allow astronomical instrumentations mapping more area within limited space mission lifetime. One challenge is to generate multiple local oscillator (LO) beams. Here, We succeeded in generating 81 beams at 3.86 THz by combining a reflective, metallic Fourier grating with an unidirectional antenna coupled 3rd-order distributed feedback (DFB) quantum cascade laser (QCL). We have measured the diffracted 81 beams by scanning a single pyroelectric detector at a plane, which is in the far field for the diffraction beams. The measured output beam pattern agrees well with a simulated result from COMSOL Multiphysics with respect to the angular distribution and power distribution among the 81 beams. We also derived the diffraction efficiency to be $94pm 3%$, which is very close to what was simulated for a manufactured Fourier grating (97%). For an array of equal superconducting hot electron bolometer mixers, 64 out of 81 beams can pump the HEB mixers with similar power, resulting in receiver sensitivities within 10%. Such a combination of a Fourier grating and a QCL can create an LO with 100 beams or more, enabling a new generation of large heterodyne arrays for astronomical instrumentation. This paper is essentially a copy of our paper in Optics Express.
机译:大型外差接收器阵列(~100像素)允许天文仪器在有限的空间任务寿命范围内绘制更多区域。一个挑战是生成多个本地振荡器(LO)光束。这里,我们通过将反射的金属傅立叶光栅与单向天线耦合的3rd阶分布式反馈(DFB)量子级联反馈(DFB)量子级联激光器(QCL)组合,在3.86THz上成功地在3.86 THz上产生81个光束。我们通过在平面处扫描在衍射梁的远场中的单个热电检测器来测量衍射的81梁。测量的输出波束图案与COMSOL多体学相对于81梁之间的角分布和功率分布的模拟结果吻合良好。我们也衍生出衍射效率 $ 94 pm 3 %$ ,这非常接近制造傅里叶格栅(97%)的模拟。对于一个等级超导热电计钻头混合器的阵列,81个光束中的64个可以将HEB混频器泵泵出具有类似功率的HEB混合器,导致接收器敏感性在10%以内。傅里叶光栅和QCL的这种组合可以用100个或更多梁或更多地产生LO,从而实现用于天文仪器的新一代大型外差阵列。本文基本上是我们在光学表达的纸张的副本。

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