Abstract

This specification formalizes an engineering protocol linking the Dimensionally Extended Holographic Projection (DEHP) cosmological framework to the three-dimensional Photoemission Orbital Tomography (3D-POT) metrology apparatus developed at the University of Göttingen. Utilizing tabletop, 35-femtosecond extreme ultraviolet (EUV) photoexcitation pulses coupled with high-resolution hemispherical momentum microscopy, the 3D-POT system isolates the complete three-dimensional spatial amplitude and phase profiles of electronic wavefunctions.

This disclosure operationalizes that laboratory apparatus as an empirical testbed for Topological Substrate Mechanics (TSM) [Eckes]. We demonstrate that the reconstructed out-of-plane vertical electron density profile (\(\Psi \)) maps directly to the vertical displacement coordinates (\(z > 0\)) of the DEHP fluid-substrate continuum [Eckes]. We provide the mathematical translation layers and coordinate transforms required to decode the material stress tensor, Lamé elastic constants, and localized acoustic phase velocities of the vacuum fabric from raw experimental momentum-space (\(k\)-space) datasets, transforming a macroscopic cosmological model into a reproducible laboratory discipline.

Creative Commons License

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.

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