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首页> 外文期刊>IEEE Transactions on Magnetics >Electromagnetic radiation mixer based on electron heating in resistive state of superconductive Nb and YBaCuO films
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Electromagnetic radiation mixer based on electron heating in resistive state of superconductive Nb and YBaCuO films

机译:基于电子加热的Nb和YBaCuO超导膜的电阻状态的电磁辐射混合器

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A theory of an electron-heating mixer which makes it possible to calculate all the characteristics of the device is developed. It is shown that positive conversion gain is possible for such a mixer in the millimeter to near-infrared wavelength range. The dynamic range and the optimum heterodyne power can be selected from a very wide interval by varying the mixing element volume. Measurements made for Nb within the frequency range of 120-750 GHz confirm the theory. The conversion loss obtained at T=1.6 K and normalized to the element reaches 0.3 dB in the intermediate frequency band of 40 MHz; the possible noise temperature is 50 K. The estimation of noise temperature and output band for YBaCuO at T=77 yields 200 K and more than 10 GHz, respectively.
机译:开发了一种电子加热混合器的理论,该理论使得可以计算该设备的所有特性。已经表明,对于这种混频器,在毫米至近红外波长范围内,正转换增益是可能的。通过改变混合元件的体积,可以从很宽的间隔中选择动态范围和最佳外差功率。在120-750 GHz频率范围内对Nb进行的测量证实了这一理论。在T = 1.6 K处获得的并归一化为元素的转换损耗在40 MHz的中间频带达到0.3 dB;可能的噪声温度为50K。在T = 77时,YBaCuO的噪声温度和输出频带的估计分别产生200 K和10 GHz以上的频率。

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