There is a maximum theoretical limit for data density
Theoretical physics and information theory support the existence of fundamental limits on data density and storage capacity, governed by spacetime geometry and entropic bounds.
The retrieved literature contains several physics and information theory papers discussing fundamental limits on information storage, density, and representation (e.g., entropic capacity of causal horizons, minimum spacetime length, and physical memory capacity limits). No papers refute the claim.
Antiba CA. Finite-Capacity Thermodynamics of Causal Horizons.. 2026. https://doi.org/10.3390/e28050557
Paper [1] establishes that local classical representability is bounded by the finite entropic capacity of causal horizons, implying intrinsic representational limits.
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Rossi V, Cacciatori SL, Pesci A. Minimum Spacetime Length and the Thermodynamics of Spacetime.. 2026. https://doi.org/10.3390/e28010097
Paper [2] discusses fundamental theories of quantum gravity implying a minimum spacetime length that imposes a natural granularity limit on geometry.
Viaña J. The Wafold: Curvature-Driven Termination and Dimensional Compression in Black Holes.. 2025. https://doi.org/10.3390/e28010022
Paper [3] explores how geometric compression in black holes terminates on a critical hypersurface boundary, confining information and energy to a finite capacity.
Thakkar A, Rivas-Padilla JR, Arrieta AF. Visco-Bits: temporal-coding-inspired viscoelastic metamaterial for mechanical memory expansion.. 2026. https://doi.org/10.1039/d6mh00721j
Paper [8] derives fundamental limits on memory capacity for physical memory blocks, demonstrating theoretical bounds on information storage.
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