Observation of Josephson Harmonics in Tunnel Junctions
arXiv:2302.09192 · doi:10.1038/s41567-024-02400-8
Abstract
Approaches to developing large-scale superconducting quantum processors must cope with the numerous microscopic degrees of freedom that are ubiquitous in solid-state devices. State-of-the-art superconducting qubits employ aluminum oxide (AlO) tunnel Josephson junctions as the sources of nonlinearity necessary to perform quantum operations. Analyses of these junctions typically assume an idealized, purely sinusoidal current-phase relation. However, this relation is only expected to hold in the limit of vanishingly low-transparency channels in the AlO barrier. Here we show that the standard current-phase relation fails to accurately describe the energy spectra of transmon artificial atoms across various samples and laboratories. Instead, a mesoscopic model of tunneling through an inhomogeneous AlO barrier predicts percent-level contributions from higher Josephson harmonics. By including these in the transmon Hamiltonian, we obtain orders of magnitude better agreement between the computed and measured energy spectra. The presence and impact of Josephson harmonics has important implications for developing AlO-based quantum technologies including quantum computers and parametric amplifiers. As an example, we show that engineered Josephson harmonics can reduce the charge dispersion and the associated errors in transmon qubits by an order of magnitude, while preserving their anharmonicity.
Updated to align with the published version at Nature Physics
References in corpus (20)
- Supplementary information for "Quantum supremacy using a programmable superconducting processor"
- Charge insensitive qubit design derived from the Cooper pair box
- Demonstration of Two-Qubit Algorithms with a Superconducting Quantum Processor
- Simple pulses for elimination of leakage in weakly nonlinear qubits
- Quantum information processing with circuit quantum electrodynamics
- Suppressing Charge Noise Decoherence in Superconducting Charge Qubits
- Real-time quantum error correction beyond break-even
- Coplanar Waveguide Resonators for Circuit Quantum Electrodynamics
- Black-box superconducting circuit quantization
- High-Fidelity Readout in Circuit Quantum Electrodynamics Using the Jaynes-Cummings Nonlinearity
- Analytic control methods for high fidelity unitary operations in a weakly nonlinear oscillator
- Coherence and Decay of Higher Energy Levels of a Superconducting Transmon Qubit
- Josephson junctions with negative second harmonic in the current-phase relation: properties of novel varphi-junctions
- Are pinholes the cause of excess current in superconducting tunnel junctions? A study of Andreev current in highly resistive junctions
- Double-Fourier engineering of Josephson energy-phase relationships applied to diodes
- Epitaxial Superconductor-Semiconductor Two-Dimensional Systems for Superconducting Quantum Circuits
- Hamiltonian Extrema of an Arbitrary Flux-Biased Josephson Circuit
- Superconducting qubits beyond the dispersive regime
- Introduction to Experimental Quantum Measurement with Superconducting Qubits
- Performance Analysis of Superconductor-constriction-Superconductor Transmon Qubits
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- Direct measurement of a current phase relation in a graphene superconducting quantum interference device
- A Review of Design Concerns in Superconducting Quantum Circuits
- The hybrid Josephson rhombus: A superconducting element with tailored current-phase relation
- Voltage-controlled synthesis of higher harmonics in hybrid Josephson junction circuits
- Homological Quantum Rotor Codes: Logical Qubits from Torsion
- Toolbox for nonreciprocal dispersive models in circuit QED
- SQuADDS: A validated design database and simulation workflow for superconducting qubit design
- The influence of pinholes and weak-points in aluminium-oxide Josephson junctions
- Quasiparticle effects in magnetic-field-resilient 3D transmons
- Driving a Josephson Traveling Wave Parametric Amplifier into chaos: effects of a non-sinusoidal current-phase relation
- Offset Charge Dependence of Measurement-Induced Transitions in Transmons
- Characterization of drive-induced unwanted state transitions in superconducting circuits
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- Nonlinearity of transparent SNS weak links decreases sharply with length
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- Effect of 2 harmonic current--phase relation on a behavior of a Josephson Traveling Wave Parametric Amplifier
- Low barrier ZrO-based Josephson junctions
- Current Conservation in the Self-Consistent Josephson Junction
- Analysis of Josephson Junction Barrier Variation: A Combined Electron Microscopy, Breakdown and Monte-Carlo Approach
- Quantum error mitigation in optimized circuits for particle-density correlations in real-time dynamics of the Schwinger model
- Parametric phase modulation in superconducting circuits
- Circuit Quantisation from First Principles
- Systematic Schrieffer-Wolff-transformation approach to Josephson junctions: quasiparticle effects and Josephson harmonics
- Mesoscopic theory of the Josephson junction
- On "Consistent Quantization of Nearly Singular Superconducting Circuits"
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- Improving the accuracy of circuit quantization using the electromagnetic properties of superconductors
- Exact amplitudes of parametric processes in driven Josephson circuits
- Towards a Josephson element using aluminum junctions with well-transmitted channels