HγC W3: Fluctuation-Dependent Reorganization of Structured Near-Critical Bands

Indexed indatacite

Abstract

This paper introduces the first controlled fluctuation-dependent reorganization layer for structured near-critical bands in the HγC framework. Earlier work established that the coarse-graining descriptor γ may be dynamically self-selected into a finite near-critical band, that this band should be treated as a structured mesoscopic distribution, that effective time becomes meaningful only after sufficient mesoscopic stabilization, and that occupied band morphology can be described over emergent effective time. W3 takes the next justified step after temporal organization. Once the occupied mean morphology of a structured near-critical band has been stabilized as a slowly evolving mesoscopic object, the paper…

Citation impact

8
total citations
FWCI
Percentile
References
6
Too recent for citation history.

Authors

1

Topics & keywords

Keywords
  • Mesoscopic physics
  • Scope (computer science)
  • Construct (python library)
  • Morphology (biology)
  • Layer (electronics)
  • Work (physics)
No related works found for this paper.