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Bandwidth and noise of submillimeter wave cuprate bicrystal Josephson junction detectors

机译:亚毫米波铜酸盐双晶约瑟夫森结探测器的带宽和噪声

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Detectors made from superconducting cuprate YBa/sub 2/Cu/sub 3/O/sub x/ bicrystal Josephson junctions (BJJs) on sapphire and NdGaO/sub 3/ substrates have been fabricated and characterized in the frequency band 200-900 GHz. Junctions on sapphire substrates had a normal state resistance R/sub N//spl ap/15-60 /spl Omega/, and I/sub C/R/sub N/ product up to 2.5 mV at T=4.2 K. Junctions on NdGaO/sub 3/ substrates had lower R/sub N/=1-5 /spl Omega/ and I/sub C/R/sub N/=0.4-0.9 mV at T=77 K. Three types of detecting devices have been investigated in both the broadband and the frequency-selective detection modes. One type was patterned with log-periodic antenna, and two others with Pt-metal double-slot antenna designed for a central frequency f=300 GHz and f=400 GHz, respectively. Measurements at f=320 GHz of the reception bandwidth /spl Delta/f for a device with double-slot antenna gave a quality factor Q=f//spl Delta/f/spl ap/10. A low-noise cooled 1-2 GHz bandwidth amplifier enables a better sensitivity in the self-pumping frequency mixing mode, avoiding the 1/f noise. The dependence of the spectral density of noise on voltage was compared to the data for the Josephson emission linewidth obtained by the selective detector response method. Also discussed are measurements at 500 GHz of the NEP values carried out at different experimental conditions.
机译:蓝宝石和NdGaO / sub 3 /衬底上的超导铜酸盐YBa / sub 2 / Cu / sub 3 / O / sub x /双晶约瑟夫森结(BJJs)制成的探测器已经制成,其检波频段为200-900 GHz。蓝宝石衬底上的结在T = 4.2 K时具有正常状态电阻R / sub N // spl ap / 15-60 / spl Omega /,I / sub C / R / sub N /积高达2.5 mV。 NdGaO / sub 3 /基板在T = 77 K时具有较低的R / sub N / = 1-5 / spl Omega /和I / sub C / R / sub N / = 0.4-0.9 mV。在宽带和频率选择性检测模式下进行了研究。一种是用对数周期天线构图的,另一种是采用Pt金属双缝天线构图的,分别设计用于中心频率f = 300 GHz和f = 400 GHz。对于具有双槽天线的设备,在f = 320 GHz接收带宽/ spl Delta / f处的测量得出的质量因子Q = f // spl Delta / f / spl ap / 10。低噪声冷却的1-2 GHz带宽放大器在自泵混频模式下具有更高的灵敏度,避免了1 / f噪声。将噪声频谱密度对电压的依赖性与通过选择性检测器响应方法获得的约瑟夫森发射线宽的数据进行了比较。还讨论了在不同实验条件下进行的500 GHz NEP值的测量。

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