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Inductively shunted transmon qubit with tunable transverse and longitudinal coupling

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arxiv 1708.04917 v2 pith:RT5RJ7YB submitted 2017-08-16 quant-ph

Inductively shunted transmon qubit with tunable transverse and longitudinal coupling

classification quant-ph
keywords couplingqubitcircuitlongitudinaltransverseinductivelypurereadout
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present the design of an inductively shunted transmon qubit with flux-tunable coupling to an embedded harmonic mode. This circuit construction offers the possibility to flux-choose between pure transverse and pure longitudinal coupling, that is coupling to the $\sigma_x$ or $\sigma_z$ degree of freedom of the qubit. While transverse coupling is the coupling type that is most commonly used for superconducting qubits, the inherently different longitudinal coupling has some remarkable advantages both for readout and for the scalability of a circuit. Being able to choose between both kinds of coupling in the same circuit provides the flexibility to use one for coupling to the next qubit and one for readout, or vice versa. We provide a detailed analysis of the system's behavior using realistic parameters, along with a proposal for the physical implementation of a prototype device.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Suppression of measurement-induced state transitions in cos{\phi}-coupling transmon readout

    quant-ph 2025-09 conditional novelty 6.0

    A cos-phi-coupled transmon readout is experimentally free of measurement-induced state transitions up to roughly 300 photons, with flux-controlled activation of specific transitions.