Introduces non-Gaussian control parameters (s0, δ0) and an optimization method that reduces photon detections by a factor of three and increases preparation probability by nearly 10^8 for GKP states, with gains shown across cat, cubic phase, and random states.
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Valerio Scarani argues that quantum information perspectives risk three specific distortions in physics claims about light coherence, unitary evolution generators, and adversarial discovery of nature.
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Beyond Stellar Rank: Control Parameters for Scalable Optical Non-Gaussian State Generation
Introduces non-Gaussian control parameters (s0, δ0) and an optimization method that reduces photon detections by a factor of three and increases preparation probability by nearly 10^8 for GKP states, with gains shown across cat, cubic phase, and random states.
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Three sins against physics by an exaggerated quantum information perspective
Valerio Scarani argues that quantum information perspectives risk three specific distortions in physics claims about light coherence, unitary evolution generators, and adversarial discovery of nature.