Microwave photons in a superconducting resonator hop between evenly spaced frequency modes, forming a synthetic lattice whose dispersion, wavepacket motion, and Bloch oscillations are measured in time.
Wustmann \ and\ author V
3 Pith papers cite this work, alongside 119 external citations. Polarity classification is still indexing.
representative citing papers
Parametrically driven oscillators achieve optimal reservoir computing performance for chaotic time-series prediction in the 2:1 parametric resonance regime, with performance degrading in chaotic frequency-comb states.
A new class of superconducting tunable resonators enables fast, low-loss magnetometry at milli-kelvin temperatures with MHz sampling rates.
citing papers explorer
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Electric fields for light: Propagation of microwave photons along a synthetic dimension
Microwave photons in a superconducting resonator hop between evenly spaced frequency modes, forming a synthetic lattice whose dispersion, wavepacket motion, and Bloch oscillations are measured in time.
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Neuromorphic Computing Based on Parametrically-Driven Oscillators and Frequency Combs
Parametrically driven oscillators achieve optimal reservoir computing performance for chaotic time-series prediction in the 2:1 parametric resonance regime, with performance degrading in chaotic frequency-comb states.
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Tunable Resonator Integrated Magnetometry
A new class of superconducting tunable resonators enables fast, low-loss magnetometry at milli-kelvin temperatures with MHz sampling rates.