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Valley-polarized Josephson Junctions as gate-tunable 0-π qubit platforms

POSTER

Abstract

Recently, gate-defined Josephson junctions based on magic-angle twisted bilayer graphene (MATBG) have been fabricated. In such a junction, local electrostatic gating can create two superconducting regions connected by an interaction-driven valley-polarized state as the weak link. Due to the spontaneous time-reversal and inversion symmetry breaking of the valley-polarized state, novel phenomena such as the Josephson diode effect have been observed without applying external fields. Importantly, when the so-called nonreciprocity efficiency (which measures the sign and strength of the Josephson effect) changes sign, the energy-phase relation of the junction is approximate F(φ)≈cos(2φ) where F is the free energy and φ is the phase difference of the two superconductors. In this work, we show that such a MATBG-based Josephson junction, when shunted by a capacitor, can be used to realize the long-sought-after 0-π qubits which are protected from local perturbation-induced decoherence. Interestingly, by changing the junction parameters, transmon-like qubits with large anharmonicity can also be realized. In short, by utilizing the novel interaction-driven valley-polarized state in MATBG, a single gate-defined Josephson junction can be used to replace complicated superconducting circuits for realizing qubits that are protected from local perturbations.


Presenters

  • Yuxuan Deng

    The Hong Kong University of Science and Technology, The Hong Kong University of Science and Technology (HKUST)

Authors

  • Yuxuan Deng

    The Hong Kong University of Science and Technology, The Hong Kong University of Science and Technology (HKUST)

  • Zhongchangfei LI

    The Hong Kong University of Science and Technology (HKUST)

  • Ziting Sun

    The Hong Kong University of Science and Technology (HKUST), Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China

  • Jinxin Hu

    Hong Kong University of Science and Technology, Nanyang Technological University

  • Kam Tuen Law

    The Hong Kong University of Science and Technology (HKUST), The Hong Kong University of Science and Technology, Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China