A Linear Quantum Coupler for Clean Bosonic Control
arXiv:2501.18025 · doi:10.1103/7rnm-rxhh
Abstract
Quantum computing with superconducting circuits relies on high-fidelity driven nonlinear processes. An ideal quantum nonlinearity would selectively activate desired coherent processes at high strength, without activating parasitic mixing products or introducing additional decoherence. The wide bandwidth of the Josephson nonlinearity makes this difficult, with undesired drive-induced transitions and decoherence limiting qubit readout, gates, couplers, and amplifiers. Significant strides have been recently made into building better `quantum mixers', with promise being shown by Kerr-free three-wave mixers that suppress driven frequency shifts, and balanced quantum mixers that explicitly forbid a significant fraction of parasitic processes. We propose a novel mixer that combines both these strengths, with engineered selection rules that make it essentially linear (not just Kerr-free) when idle, and activate clean parametric processes even when driven at high strength. Further, its ideal Hamiltonian is simple to analyze analytically, and we show that this ideal behavior is first-order insensitive to dominant experimental imperfections. We expect this mixer to allow significant advances in high-Q control, readout, and amplification.
25 pages (9 Main + 16 Appdx), 9 figures (3 Main + 6 Appdx)
References in corpus (47)
- Circuit Quantum Electrodynamics: Coherent Coupling of a Single Photon to a Cooper Pair Box
- Circuit Quantum Electrodynamics
- Encoding a qubit in an oscillator
- Dynamical decoupling and noise spectroscopy with a superconducting flux qubit
- Quantum error correction below the surface code threshold
- The Kerr-Cat Qubit: Stabilization, Readout, and Gates
- A quantum-enhanced search for dark matter axions
- A widely tunable parametric amplifier based on a SQUID array resonator
- Exponential suppression of bit-flips in a qubit encoded in an oscillator
- 3-Wave Mixing Josephson Dipole Element
- The reconfigurable Josephson circulator/directional amplifier
- Nonreciprocal microwave signal processing with a Field-Programmable Josephson Amplifier
- Fast Universal Control of an Oscillator with Weak Dispersive Coupling to a Qubit
- Optimizing the nonlinearity and dissipation of a SNAIL Parametric Amplifier for dynamic range
- Rotating-frame relaxation as a noise spectrum analyzer of a superconducting qubit undergoing driven evolution
- Widely tunable, non-degenerate three-wave mixing microwave device operating near the quantum limit
- Quantum superposition of a single microwave photon in two different "colour" states
- Widely tunable on-chip microwave circulator for superconducting quantum circuits
- Kerr-free three-wave mixing in superconducting quantum circuits
- Characterizing and optimizing qubit coherence based on SQUID geometry
- Superconducting circuit protected by two-Cooper-pair tunneling
- Hardware-efficient quantum error correction via concatenated bosonic qubits
- Dynamics of Transmon Ionization
- Programmable interference between two microwave quantum memories
- Coherence properties of the 0- qubit
- Universal Gate Set for Continuous-Variable Quantum Computation with Microwave Circuits
- Engineering bilinear mode coupling in circuit QED: Theory and experiment
- One hundred second bit-flip time in a two-photon dissipative oscillator
- Measurement-Induced Transmon Ionization
- Quantization of inductively-shunted superconducting circuits
- Universal control of a bosonic mode via drive-activated native cubic interactions
- High-fidelity parametric beamsplitting with a parity-protected converter
- Josephson parametric converter saturation and higher order effects
- Multiparametric Amplification and Qubit Measurement with a Kerr-free Josephson Ring Modulator
- Frequency-tunable Kerr-free three-wave mixing with a gradiometric SNAIL
- Magnifying quantum phase fluctuations with Cooper-pair pairing
- Hamiltonian Extrema of an Arbitrary Flux-Biased Josephson Circuit
- Strong parametric dispersive shifts in a statically decoupled multi-qubit cavity QED system
- Intermodulation Distortion in a Josephson Traveling Wave Parametric Amplifier
- High-Coherence Kerr-cat qubit in 2D architecture
- Josephson parametric circulator with same-frequency signal ports, 200 MHz bandwidth, and high dynamic range
- Two-qubit operations for finite-energy Gottesman-Kitaev-Preskill encodings
- Superconducting microwave resonators with non-centrosymmetric nonlinearity
- Near-ultrastrong nonlinear light-matter coupling in superconducting circuits
- Symmetrically Threaded Superconducting Quantum Interference Devices As Next Generation Kerr-cat Qubits
- Recovering Quantum Coherence of a Cavity Qubit Coupled to a Noisy Ancilla through Real-Time Feedback
- In-situ tunable interaction with an invertible sign between a fluxonium and a post cavity