Quantum Gravity and String Theory

   

Experimental Design for Measuring Negative Energy Density Using Optical Squeezing and Casimir-Induced Curvature with ai Feedback Control

Authors: Daniel S. Zachary

We present a feasible optomechanical protocol for the detection of localized negative energy density arising from quantum field correlations in squeezed vacuum and Casimir configurations. The proposed setup combines a dual-cavityinterferometer with Casimir-separated mirrors and a tunable optical squeezing source,enabling modulation of vacuum fluctuations at sub-picowatt energy scales. Realtimefeedback is implemented using an adaptive artificial intelligence (AI) controllerand Kalman-filtered reference clocks, allowing dynamic optimization of signal-to-noiseratios (SNR) in curvature-sensitive observables. Numerical simulations incorporatingrealistic optical and thermal noise predict measurable fractional clock drifts (Δτ/τ ∼10−18) and curvature pulses (δR ∼ 10−5) consistent with theoretical constraints onnegative energy densities. These results demonstrate a practical pathway towardlaboratory-scale verification of quantum energy teleportation and vacuum-energymodulation using current photonic and metrological technologies.

Comments: 12 Pages. (Note by viXra Admin: For the last time, please submit article written with AI assistance to ai.viXra.org)

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[v1] 2025-11-14 21:54:11

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