A theoretical extension of multi-plane diffraction to photonic Fourier optics claims to support Riemann theta sums, quantum supremacy-scale path counts, quantum neurons, and nonlinear Schrödinger solutions, but offers no experiment and only heuristic application arguments.
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Theory of Quantum Path Computing with Fourier Optics and Future Applications for Quantum Supremacy, Neural Networks and Nonlinear Schr\"odinger Equations
A theoretical extension of multi-plane diffraction to photonic Fourier optics claims to support Riemann theta sums, quantum supremacy-scale path counts, quantum neurons, and nonlinear Schrödinger solutions, but offers no experiment and only heuristic application arguments.