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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Squint-Free Fourier-Optical RF Beamforming Using a SHB Crystal as an Imaging Detector
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Squint-Free Fourier-Optical RF Beamforming Using a SHB Crystal as an Imaging Detector

机译:使用SHB晶体作为成像检测器的无傅里叶光学RF波束成形

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摘要

We describe and demonstrate a Fourier-optical beamformer that modulates RF energy from an antenna array onto a corresponding array of coherent optical beams and forms RF-frequency-scaled (or beam-squinted), far-field images through a single-lens optical Fourier transform. The squinted image is formed into a cryogenically cooled spectral hole burning (SHB) crystal, where it writes spatially-localized spectral images as holes in the crystal''''s spatial-spectral absorption profile. The spectral-hole images at each resolvable spectral bin ($≪ $10 MHz at 4.2 K) integrate during the population lifetime ($approx$ 1 ms) for frequencies within the inhomogeneous crystal bandwidth ($le$ 20 GHz). A chirped laser diffracts from the holes, producing a sequence of spectrally resolved RF images. The diffracted light passes through a swept-zoom lens synchronized to the chirped laser readout. This zoom lens compensates for beam squint during readout and forms the squint-free images onto a charge-coupled device (CCD), where they are coherently detected. We demonstrate experimental squinted images from a 5 element array across a 350 MHz bandwidth that are recorded into and read from a Er:Eu:Y$_2$SiO$_5$ SHB crystal before a digital zoom compensates for beam squint. This system can be scaled up to form images from 2-D arrays with 1000s of elements across 20 GHz bandwidths.
机译:我们描述并演示了一种傅立叶光学波束形成器,该调制器将天线阵列上的RF能量调制到相干光束的相应阵列上,并通过单透镜光学傅立叶形成RF频率缩放(或斜视)的远场图像转变。斜视后的图像形成为低温冷却的光谱孔燃烧(SHB)晶体,在其中将空间定位的光谱图像写为晶体的空间光谱吸收曲线中的孔。在不均匀晶体带宽($ 20 GHz)内,在整个寿命($ 1 ms左右)内,每个可分辨光谱仓($ 4.2 MHz处$ 10 MHz)的光谱孔图像积分。 holes激光从孔中衍射,产生一系列光谱分辨的RF图像。衍射光通过与to激光读数同步的扫掠变焦透镜。该变焦镜头可在读出期间补偿光束的斜视,并将无斜视的图像形成到电荷耦合器件(CCD)上,并在其中进行连贯的检测。我们演示了在350 MHz带宽上来自5个元素阵列的实验斜视图像,这些图像在数字变焦补偿光束斜视之前记录到Er:Eu:Y $ _2 $ SiO $ _5 $ SHB晶体中并从中读取。可以按比例放大该系统,以在20 GHz带宽上由具有1000个元素的2-D阵列形成图像。

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