Non-linear two-frequency analysis of SIS mixers through harmonic balance

S. Withington, P. Kittara, G. Yassin
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引用次数: 1

Abstract

We present a numerical procedure for simulating the non-linear behaviour of Superconductor-Insulator-Superconductor (SIS) tunnel-junction mixers. Mixers of this kind are used extensively in high-performance submillimetre-wave astronomical receivers. The procedure is complete in that both the signal and local-oscillator voltages can be at high levels, with significant amounts of harmonic content; also, the full quantum mechanical behaviour of the tunnel junction is taken into account. The initial simulations show that multi-tone analysis can be carried out in a numerically efficient manner, and that saturation, and the attendant generation of IF harmonics, can be modelled rigorously. This work constitutes the first full non-linear model of an SIS mixer, and the theoretical and numerical procedures described, will be of great importance when designing the next generation of heterodyne astronomical receivers.
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基于谐波平衡的SIS混频器非线性双频分析
我们提出了一种模拟超导体-绝缘体-超导体(SIS)隧道结混频器非线性行为的数值方法。这种混频器广泛应用于高性能亚毫米波天文接收机中。该过程是完整的,因为信号和本地振荡器电压都可以处于高电平,具有显著量的谐波含量;此外,还考虑了隧道结的全量子力学行为。初步的仿真表明,多音分析可以在数值上有效地进行,并且饱和和随之而来的中频谐波的产生可以严格地建模。这项工作构成了一个SIS混频器的第一个全非线性模型,并描述了理论和数值过程,将在设计下一代外差天文接收机时具有重要意义。
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