STATE OF THE ART: Information and Holography
Abstract
An audit of holographic and entropic information frameworks—including Susskind’s Holographic Principle and Verlinde’s Entropic Gravity—demonstrates how macro-scale forces map to surface states. By translating these concepts into transmission-line mechanics, we replace abstract information processing with boundary impedance termination and substrate pressure restoration.
Susskind's Holographic Principle
Orthodox Approach: Proposes that the maximum information content of any given volumetric region of space is proportional to its boundary surface area rather than its volume, suggesting space itself may be an emergent illusion.
Resonant Relativity Translation: Translates boundary-encoded information into surface impedance termination and reflection states. The Lumen substrate handles volumetric capacity by mapping internal phase constraints directly to boundary scattering matrices and terminal nodes.
Verlinde's Entropic Gravity
Orthodox Approach: Treats gravity not as a fundamental interaction, but as an emergent entropic force driven by changes in information storage associated with the positions of material bodies on holographic screens.
Resonant Relativity Translation: Rewrites entropic force emergence as mechanical substrate pressure normalization and line restoration. What appears as information entropy change is actually the circuit-level minimization of local reactive stress and thermal gradients within the Lumen lattice.