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Harmonic mixing in a superconducting tunnel junction

机译:超导隧道结中的谐波混频

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A theoretical analysis of harmonic mixing in a quasiparticle tunnel junction atVbias=0 shows that harmonic mixing for submillimeter frequencies is a viable alternative to fundamental mixing. It is also shown that the signal gain from the first harmonic above the pump frequency to the intermediate frequency is independent of the embedding admittance at the pump frequency. In fact, we show that the five‐port model reduces to the three‐port model as a result of the inversion symmetry of theI‐Vcurve and, moreover, no large‐signal analysis is necessary. Full simulations of harmonic mixing using a five‐port model confirm these results. The simulations have been done for the case of a superconductor‐insulator‐normal junction in which there is no pair current interference. For this type of harmonic mixer we show that the local oscillator (LO) power requirement can be less than a fundamental mixer operating at the same signal frequency, which is particularly useful in circumventing the problems of high‐frequency LO power generation.
机译:对atVbias=0的准粒子隧道结中的谐波混频的理论分析表明,亚毫米频率的谐波混频是基波混频的可行替代方案。还表明,从泵浦频率以上的一次谐波到中间频率的信号增益与泵浦频率处的嵌入导纳无关。事实上,我们表明,由于 I‐Vcurve 的反演对称性,five‐port 模型简化为 three‐port 模型,而且不需要大的‐信号分析。使用五连字符端口模型对谐波混频进行全面仿真,证实了这些结果。对于没有对电流干扰的超导体&连字符;绝缘体&连字符;法向结的情况,已经进行了仿真。对于这种类型的谐波混频器,我们发现本振(LO)功率要求可以小于在相同信号频率下工作的基波混频器,这对于规避高频LO发电问题特别有用。

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