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Integrated photonic beamformer employing continuously tunable ring resonator-based delays in CMOS-compatible LPCVD waveguide technology

机译:集成光子波束形成器,采用基于CMOS兼容LPCVD波导技术的基于连续可调环形谐振器的延迟

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摘要

In this paper a novel CW laser-compatible, squint-free, continuously tunable ring resonator-based optical beamformer mechanism for a phased array receiver system is proposed and partly demonstrated. When the optical delay elements and optical signal processing circuitry are integrated on a chip, a single-chip optical beam forming network (OBFN) is obtained. The optical delay elements are ideally continuously tunable to achieve continuous control of the beam direction, and should have a flat delay and magnitude response over the signal band, to avoid distortion. In the proposed system architecture, filter-based optical single-sideband suppressed-carrier modulation and balanced coherent optical detection are used. Such architecture has significant advantages over a straightforward architecture using optical intensity modulation and direct optical detection, namely reduced complexity of the OBFN chip, and enhanced dynamic range. Measurements on an actual 1×8 OBFN chip and an optical sideband filter chip are presented. Both are realized in CMOS-compatible planar optical waveguide technology (TriPleX).
机译:本文针对相控阵接收机系统提出了一种新型的连续波激光器兼容,无斜视,连续可调的环形谐振器的新型波束成形器机制,并进行了部分演示。当光延迟元件和光信号处理电路集成在一个芯片上时,便获得了单芯片光束形成网络(OBFN)。光学延迟元件理想地是连续可调的,以实现对光束方向的连续控制,并且应在信号频带上具有平坦的延迟和幅度响应,以避免失真。在提出的系统架构中,使用了基于滤波器的光学单边带抑制载波调制和平衡相干光学检测。与使用光强度调制和直接光学检测的直接架构相比,这种架构具有显着的优势,即降低了OBFN芯片的复杂性,并提高了动态范围。给出了在实际的1×8 OBFN芯片和光学边带滤波器芯片上的测量结果。两者均采用兼容CMOS的平面光波导技术(TriPleX)实现。

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