Zero-Point Systems
Speculative public-safe exploration of vacuum fluctuations, Casimir-force architectures, boundary-field behavior, and precision measurement concepts.
This page provides a restrained, public-facing overview of speculative zero-point research. We focus on measurement discipline, boundary effects, Casimir-style plate geometries, and careful interpretation of vacuum fluctuations.
The intent is not to overclaim energy extraction, but to explore the physics at the limits of what can be measured, modeled, and understood — always with rigorous controls, peer review, and responsible disclosure.

Research Focus
System Concept Cards

Casimir Boundary Array
Arrayed plate configurations with tunable separation and surface properties to characterize Casimir forces and boundary-dependent energy density.

Vacuum Fluctuation Chamber
Ultra-high vacuum chamber designed for low-noise measurements of vacuum fluctuations, temperature stability, and pressure-dependent force variation.

Micro-Gap Force Stack
Precision micro-gap stacks with piezo-actuated control to measure force gradients and explore scaling behavior at sub-micron separations.

Zero-Point Metrology
Metrology systems for femto- to pico-newton force detection and spectral analysis of vacuum noise and boundary-induced fluctuations.

Boundary Field Lattice
Mapping boundary fields and mode structure in cavities and metasurfaces to understand how geometry shapes vacuum mode distributions.

Energy Claim Safeguards
Protocols to prevent overclaiming and ensure transparency, replication, and public-safe communication of all results and limitations.