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Dual polarized and balanced receivers at millimeter and submillimeter wavelengths

机译:毫米波和亚毫米波长的双极化和平衡接收器

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摘要

Dramatic advances in millimeter and submillimeter wave receivers in recent years have resulted from the development of superconductor insulator superconductor (SIS) mixers, which now offer unsurpassed performance from 70 GHz to 1 THz. To increase the sensitivity of the receivers further at these frequencies, one needs to use dual-polarized and balanced receivers. When both the polarizations are received simultaneously, there is a square root of two improvement in the signal to noise ratio (SNR). Balanced mixers improve the sensitivity of receivers by suppressing local oscillator (LO) amplitude modulation (AM) noise and rejecting LO thermal noise. This thesis describes the design, fabrication and performance of mixers and components for low noise dual-polarized and balanced receivers at millimeter and submillimeter wavelengths both in quasi-optical and waveguide configurations. The quasi-optical receiver utilizes a novel cross-slot antenna on a silicon hyperhemispherical lens, two junction tuning circuits, niobium trilayer junctions, and an IF circuit containing a lumped element 180 degree hybrid. The antenna has four feed points, two for each polarization; and each feed point is coupled to a two-junction SIS mixer. For dual polarization operation, the mixer is mounted in such a way that a single LO can pump the junctions for both the polarizations. For the balanced receiver, the LO and the RF signals are coupled to the mixer in orthogonal polarizations using a wire-grid polarizer. For waveguide dual polarization receivers, a moderately broadband septum ortho-mode transducer (OMT) is designed and experimental results are presented at millimeter wavelengths. Broadband finline OMTs are investigated for possible use at millimeter wavelengths, and experimental results of a finline OMT is presented at X-band.
机译:近年来,毫米波和亚毫米波接收器取得了显着进步,这是由于超导体绝缘子超导体(SIS)混频器的发展所致,该混频器现在可提供70 GHz至1 THz的卓越性能。为了在这些频率上进一步提高接收器的灵敏度,需要使用双极化和平衡的接收器。当同时接收到两个极化时,信噪比(SNR)有两个平方根的提高。平衡混频器通过抑制本地振荡器(LO)幅度调制(AM)噪声并抑制LO热噪声来提高接收器的灵敏度。本文描述了准光学和波导配置中毫米和亚毫米波长的低噪声双极化和平衡接收器的混频器和组件的设计,制造和性能。准光接收机在硅半球透镜上使用了一种新颖的十字槽天线,两个结调谐电路,三层铌结和一个包含集总元件180度混合的IF电路。天线有四个馈电点,每个极化点两个。每个馈电点都耦合到两结SIS混频器。对于双极化操作,混频器的安装方式应使单个LO可以为两种极化泵浦结。对于平衡接收机,使用线栅偏振器以正交极化将LO和RF信号耦合到混频器。对于波导双极化接收器,设计了中等带宽的隔片正交模式换能器(OMT),并在毫米波波长下显示了实验结果。研究了宽带finline OMT在毫米波长下的可能用途,并在X波段展示了finline OMT的实验结果。

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    Chattopadhyay Goutam;

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  • 年度 2000
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