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investigate questions such as: Which designs support controlled switching? What laser pulse powers and durations are required? How many distinct optical states can be achieved, and how reproducibly? Depending
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reconstruction, at the same time you can also use it as a resource: for instance we showed in a recent paper that you can engineer metasurface resonances to boost sensitivity of diffraction patterns to certain
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principles such as spatiotemporal symmetries and quantum mechanics. We explore how suitable system design and control over light-matter interactions can engage the conventional limits to nanophotonic and
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that randomly fluctuate between 0 and 1 with a controllable probability. Rather than avoiding randomness, this approach uses noise as a computational resource. Probabilistic computing is actively investigated in