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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Quantum-Noise Theory for Terahertz Hot Electron Bolometer Mixers
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Quantum-Noise Theory for Terahertz Hot Electron Bolometer Mixers

机译:太赫兹热电子流量计混合器的量子噪声理论

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摘要

In this paper, we first review general quantum mechanical limits on the sensitivity of heterodyne receivers. The main aim of the paper is to explore the quantum-noise (QN) properties of hot electron bolometric (HEB) mixers. HEB mixers have a characteristic feature not found in other mixers: based on the "hot-spot" model, the conversion loss varies along the length dimension of the bolometer, and some sections of the bolometer are essentially passive, in which little frequency conversion occurs. We analyze a quantitative distributed quantum-noise model of the HEB mixer, making use of simulated hot-spot model data, that takes into account the continuous variation of the sensitivity along the bolometer bridge. An expression for the HEB receiver noise temperature, including optical input loss, is derived. We find that the predicted double-sideband receiver noise temperature agrees well with the available measured data (up to 5.3 THz). The results of our analysis suggest that QN and classical HEB noise contribute about equally at 3 THz, while at higher terahertz frequencies QN dominates. QN thus appears to show measurable effects in existing HEB mixers and will be even more important to take into account as HEB mixers continue to be developed for higher terahertz frequencies.
机译:在本文中,我们首先回顾了外差接收器灵敏度的一般量子力学极限。本文的主要目的是探讨热电子辐射热(HEB)混合器的量子噪声(QN)特性。 HEB混频器具有其他混频器中未发现的特征:基于“热点”模型,转换损耗沿测辐射热计的长度方向变化,并且测辐射热计的某些部分基本上是无源的,因此几乎没有频率转换。我们利用模拟的热点模型数据分析了HEB混合器的定量分布量子噪声模型,该模型考虑了沿辐射热测量计桥的灵敏度的连续变化。得出包括光输入损耗在内的HEB接收机噪声温度的表达式。我们发现,预测的双边带接收机噪声温度与可用的测量数据(高达5.3 THz)非常吻合。我们的分析结果表明,在3 THz时,QN和经典HEB噪声的贡献大致相等,而在更高的太赫兹频率下,QN占主导地位。因此,QN似乎在现有的HEB混频器中显示出可测量的效果,并且随着HEB混频器继续为更高的太赫兹频率而开发,这一点将变得更加重要。

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