Experimental analysis of the measurement strength dependence of superconducting qubit readout using a Josephson bifurcation readout method

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Abstract

We succeeded in controlling the measurement strength of a macroscopic quantum system, namely a persistent current quantum bit (qubit), by using a transmission line type Josephson bifurcation amplifier (JBA: an ac-driven superconducting quantum interferometer device) as a probe. By employing a special pulse sequence, we found that the weighted average of the Ramsey fringe visibility (α-value) can be used as an indicator of quantum state projection. The sudden change in the α-value magnitude at around the threshold suggests that an entangled state of the qubit-JBA composite system settles in one of the two possible classically correlated qubit-JBA states caused by strong decoherence. This is an important result in terms of understanding the mechanisms of quantum state measurement. © IOP Publishing and Deutsche Physikalische Gesellschaft.

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Kakuyanagi, K., Kagei, S., Koibuchi, R., Saito, S., Lupaşcu, A., Semba, K., & Nakano, H. (2013). Experimental analysis of the measurement strength dependence of superconducting qubit readout using a Josephson bifurcation readout method. New Journal of Physics, 15. https://doi.org/10.1088/1367-2630/15/4/043028

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