A single augmented reservoir computer infers bifurcation diagrams for two distinct chaotic systems from partial time series observations.
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Quantum reservoir computing using a fully connected transverse-field Ising model with input and memory qubits outperforms econometric and standard ML benchmarks in realized volatility forecasting.
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Inferring bifurcation diagrams of two distinct chaotic systems by a single machine
A single augmented reservoir computer infers bifurcation diagrams for two distinct chaotic systems from partial time series observations.
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Quantum Reservoir Computing for Realized Volatility Forecasting
Quantum reservoir computing using a fully connected transverse-field Ising model with input and memory qubits outperforms econometric and standard ML benchmarks in realized volatility forecasting.