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Superconducting diode from flux biased Josephson junction arrays
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We propose a realization of the superconducting diode effect in flux biased superconducting circuits of Josephson junctions. So far the observation of the superconducting diode effect has been limited to rather exotic material platforms. In theoretical proposals, it relied on a non-sinusoidal form of the current phase relation of Josephson junctions. Here, we show how the diode effect can be engineered in superconducting circuits without any such requirements. The only necessary ingredients are standard sinusoidal Josephson junctions and flux bias lines that are readily available in scalable industrial silicon-chip based superconducting design processes.
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Cited by 2 Pith papers
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Edge dependent Josephson Diode effect in WTe$_{2}$-Based Josephson junction
Edge termination asymmetry in WTe2 nanoribbons produces a magnetic-flux-tunable Josephson diode effect, boosted above 50% efficiency by admixing bulk transport channels.
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Emergent Harmonics in Josephson Tunnel Junctions Due to Series Inductance
Nearly symmetric SQUIDs biased at half flux reveal that the second harmonic in Al/AlOx Josephson junctions scales with junction energy as expected for series inductance, bounding intrinsic Andreev harmonics below 0.1%...
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