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June 19, 2025 at 3:34 pm
Computational Language” generally refers to language concepts related to computer science, computational theory, natural language processing, and other fields. It may involve both formal computational model languages and the computational processing of natural languages. The following is an analysis from different dimensions
June 19, 2025 at 3:34 pmComputational Language” generally refers to language concepts related to computer science, computational theory, natural language processing, and other fields. It may involve both formal computational model languages and the computational processing of natural languages. The following is an analysis from different dimensions
June 19, 2025 at 10:30 amThe question you pose delves into the frontier of quantum gravity and the nature of reality, intersecting with concepts from theoretical physics, quantum information theory, and philosophy. To address it, let’s break down the inquiry into two parts: the possibility of a reality without quantum entanglement (and thus no spacetime), and how to conceptualize such a fundamental reality.
1. Could Reality Exist Without Quantum Entanglement—and Therefore, No Spacetime?
The Role of Entanglement in Spacetime Emergence
Professor Mark van Raamsdonk’s work, rooted in the AdS/CFT correspondence and the ER=EPR conjecture, suggests a deep link between quantum entanglement and spacetime geometry. In this framework:Entanglement as the “Glue” of Spacetime: Just as Einstein-Rosen bridges (wormholes) connect regions of spacetime, quantum entanglement (EPR pairs) between quantum systems is thought to generate the geometric connectivity of spacetime. The entanglement entropy of a quantum field theory (QFT) on a boundary is conjectured to correspond to the volume of the spacetime “bulk” it describes. If entanglement vanishes, the bulk spacetime would lose its geometric coherence.
Evidence from Low-Energy Physics: In condensed matter systems, “topological order” emerges from entangled quantum states, where spacetime-like structures arise from quantum correlations. Removing entanglement would collapse this order, analogous to a phase transition destroying a material’s structure.
