Published August 4, 2026 | Version v1

(16)Geometric Limitations of the Static Block Universe and the Self-Emergence Model of Dynamic Holographic Screens via Response Viscosity

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Modern physics, particularly the "Block Universe" concept derived from Einstein's theory of relativity, has presented a deterministic view in which the entire history of past, present, and future exists statically within a 4D spacetime continuum. Even in contemporary holographic principles (such as AdS/CFT correspondence), adherence to this assumption forces physics into an unnatural framework: a fixed, static screen existing at infinity, pre-encoded with data regarding the future.

This paper points out the blind spots resulting from physicists' obsession with the "frictionless vacuum illusion" and their oversight of "viscosity (response delay)," a fundamental element of transient phenomena. To resolve this, we introduce the Dejima Model (Universe OS), originating from Paper 13 ("Viscosity Evaluation in Universe System Response Delay and Time Generation Model via Complex Dynamical Systems"), which posits pair creation from 0 (Null) and "Response Viscosity c (systemic synchronization delay)" as its foundation.

In this model, the holographic boundary (screen) is not a pre-existing static stage, but a dynamic boundary that self-emerges and expands as the accumulated history (transient response) of internal complex recursive operations: x[n+1] = -a * x[n]^2. This establishes a dynamic cosmological view where future information does not exist in advance, but is rendered in real-time through the execution of operations, offering a simple and consistent solution to the quantum information paradox and the measurement problem.

 

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