PaperScope
LIVE · 2026-09-10 05:40 UTC

Gradland: On Phenomenal Experience, Differentiated Across Many Dimensions

David Balduzzi

Latestcs.CLcs.LGcs.AIcs.CV
arXiv ID
2609.09306 v1
Category
Submitted
2026-09-08

Abstract

This paper investigates the hypothesis that the first-order structure of physical interactions, i.e. gradients or Jacobians, characterizes the structure of phenomenal experience. It does so in an idealized world inhabited by neural networks, Gradland, where the physics are known and the functions are (mostly) differentiable. The paper introduces two measures of Jacobian structure: effective rank and cohesion, based on Kirchhoff complexity. Applying the measures to a series of worked examples shows the hypothesis accounts for: (1) the duration of experience, that it can prolong over hundreds of milliseconds; (2) the difference between what is experienced vividly and obscurely; (3) the experience of texture; (4) the blooming buzzing confusion presumably experienced by newborns; (5) the difference between ideas that are held distinctly in mind and ideas that are confused; (6) what learning is like; and finally (7) the paper explains the function of rich, dense experience.

Comment: Code: https://github.com/dbalduzzi/gradland/

arXiv abs page · PDF · same-day batch