Development of RF Power Dividers for the Josephson Arbitrary Waveform Synthesizer

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Abstract

To make the experimental setup of the Josephson arbitrary waveform synthesizer less complex by reducing the number of RF cables between room and cryogenic temperature, we developed on-chip RF power dividers. By integration of these components, we can eventually increase the number of Josephson junctions operated by one single pulse-pattern generator channel, and thus reduce the costs of the setup. At Physikalisch-Technische Bundesanstalt, we designed, fabricated, and investigated the performance of two different RF power dividers types: The serial-parallel and the Wilkinson power divider. Spectrally pure sinusoidal waveforms were successfully synthesized with both types of power dividers. With the Wilkinson power divider, we obtained 17.55 mV (rms) at a clock frequency of 15 GHz combined with a test array of 1000 Josephson junctions. As for the serial-parallel power divider combined with a test array of 2000 Josephson junctions, we synthesized rms output voltages of 19.0 mV.

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Tian, H., Kieler, O., Behr, R., Wendisch, R., Gerdau, R. W., Kuhlmann, K., & Kohlmann, J. (2020). Development of RF Power Dividers for the Josephson Arbitrary Waveform Synthesizer. IEEE Transactions on Applied Superconductivity, 30(5). https://doi.org/10.1109/TASC.2020.2970216

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