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An investigation of the performance of the superconducting HEB mixer as a function of its RF embedding impedance

机译:研究超导HEB混频器的性能与其RF嵌入阻抗的关系

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We have conducted an investigation of the optimal embedding impedance for a waveguide superconducting hot-electron bolometric (HEB) mixer. Three mixer chip designs for 800 GHz, offering nominal embedding resistances of 70 /spl Omega/, 35 /spl Omega/, and 15 /spl Omega/, have been developed. We used both High Frequency Structure Simulator (HFSS) software and scale model impedance measurements in the design process. We subsequently fabricated HEB mixers to these designs using 3-4 nm thick NbN thin film. Receiver noise temperature measurements and Fourier Transform Spectrometer (FTS) scans were performed to determine the optimal combination of embedding impedance and normal-state resistance for a 50 Ohm IF load impedance. A receiver noise temperature of 440 K was measured at a local oscillator frequency 850 GHz for a mixer with normal state resistance of 62 /spl Omega/ incorporated into a circuit offering a nominal embedding impedance of 70 /spl Omega/. We conclude from our data that, for low noise operation, the normal state resistance of the HEB mixer element should be close to the embedding impedance of the mixer mount.
机译:我们已经对波导超导热电子辐射热(HEB)混合器的最佳嵌入阻抗进行了研究。已经开发了三种混频器芯片设计,用于800 GHz,提供70 / spl Omega /,35 / spl Omega /和15 / spl Omega /的标称嵌入电阻。在设计过程中,我们同时使用了高频结构模拟器(HFSS)软件和比例模型阻抗测量。随后,我们使用3-4 nm厚的NbN薄膜为这些设计制造了HEB混合器。进行接收器噪声温度测量和傅立叶变换光谱仪(FTS)扫描,以确定对于50 Ohm IF负载阻抗,嵌入阻抗和正常状态电阻的最佳组合。在混频器中将其正常状态电阻为62 / spl Omega /的混频器在本地振荡器频率850 GHz下测得的440 K接收机噪声温度为标称嵌入阻抗为70 / spl Omega /。从我们的数据可以得出结论,对于低噪声操作,HEB混合器元件的正常状态电阻应接近混合器底座的嵌入阻抗。

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