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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Wideband IF-Integrated Terahertz HEB Mixers: Modeling and Characterization
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Wideband IF-Integrated Terahertz HEB Mixers: Modeling and Characterization

机译:宽带IF集成太赫兹HEB混频器:建模和表征

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摘要

This paper presents a detailed study of the IF properties of phonon-cooled NbN hot electron bolometer (HEB) terahertz mixers and receivers, performed over the widest intermediate frequency range reported so far. First, a broadband technique is used to obtain the IF small-signal output impedance of HEB mixers using network analyzer measurements. The impedance is measured over an IF range of 300 kHz to 8.5 GHz under the presence of dc bias and local oscillator (LO) illumination. The LO frequencies $(f_{rm LO})$ used in this investigation range from 694 GHz to nearly 2 THz, covering frequencies below and above the superconducting bandgap frequency of the NbN film for the first time. The impedance (real and imaginary parts) can be fitted to the Standard model for HEB devices over almost the entire range of frequencies measured. The impedance data are then used in conjunction with a computer-aided design model for the monolithic micorwave integrated circuit IF amplifier to design and analyze the performance of integrated receivers (mixer/IF amplifier combinations). The measured and predicted variations of the receiver noise, mixer gain, and mixer output noise with IF are in good agreement. A record IF noise bandwidth of 8 GHz (obtained for $f_{rm LO}=$ 694 GHz) is demonstrated for a receiver designed using the technique described in this paper.
机译:本文对声子冷却的NbN热电子辐射热计(HEB)太赫兹混频器和接收器的IF特性进行了详细的研究,在迄今为止报道的最宽的中频范围内进行了研究。首先,使用宽带技术通过网络分析仪测量来获得HEB混频器的IF小信号输出阻抗。在存在直流偏置和本地振荡器(LO)照明的情况下,在300 kHz至8.5 GHz的IF范围内测量阻抗。在本研究中使用的LO频率$(f_ {rm LO})$在694 GHz至近2 THz的范围内,首次覆盖了NbN薄膜的超导带隙频率之上和之下的频率。阻抗(实部和虚部)可以在几乎整个测量频率范围内安装到HEB设备的标准模型中。然后,将阻抗数据与计算机辅助设计模型结合使用,用于单片micorwave集成电路IF放大器,以设计和分析集成接收器(混频器/ IF放大器组合)的性能。接收器噪声,混频器增益和混频器输出噪声随IF的测量和预测变化非常一致。对于使用本文所述技术设计的接收机,展示了创纪录的8 GHz IF噪声带宽(对于$ f_rmrm} = 694 GHz获得)。

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