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A Dynamically Reconfigurable Quantum Processor Architecture

ORAL

Abstract

Despite recent improvements in two-qubit gate fidelities in superconducting qubit architectures, the entangling of distant qubits still requires cascading multiple nearest neighbor two-qubit gates, so the overall compound error rate grows exponentially with the distance between the qubits on the connectivity graph. We seek to combine the controllability of superconducting quantum circuits with the flexibility of the all-to-all qubit connectivity graphs experimentally demonstrated in AMO experiments. Here we propose our scheme to utilize 3D integration techniques and parametric coupling in building a high-performance 3D QPU with programmable arbitrary qubit connectivity enabled by the chip architecture. Our scheme employs a squid tunable multimode bus resonator coupled to all of the qubits to enable the parametric coupling. By using a single chip scale bus resonator to couple all qubits we transfer the reconfigurability complexity to the room temperature electronics where multiplexed microwave signals control the qubit connectivity graph.

Presenters

  • Brian Marinelli

    Lawrence Berkeley National Laboratory, University of California, Berkeley

Authors

  • Brian Marinelli

    Lawrence Berkeley National Laboratory, University of California, Berkeley

  • Jie Luo

    UC Berkeley, Lawrence Berkeley National Laboratory, University of California, Berkeley

  • Kyunghoon Lee

    University of California, Berkeley

  • David Ivan Santiago

    Lawrence Berkeley National Laboratory, University of California, Berkeley, Lawrence Berkely National Laboratory, Quantum Nanoelectronics Laboratory, Dept. of Physics, University of California, Berkeley

  • Irfan Siddiqi

    Lawrence Berkeley National Laboratory, University of California, Berkeley, Univ of California - Berkeley, Univ of California – Berkeley, Quantum Nanoelectronics Lab, UC Berkeley, Physics, University of California, Berkeley, Quantum Nanoelectronics Laboratory, Dept. of Physics, University of California, Berkeley