A formalism for nemato-elasticity enforces Saint Venant compatibility via a helical basis, yielding direction-selective criticality and defect-induced random fields as universal features of crystalline systems.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
fields
cond-mat.str-el 2years
2025 2verdicts
UNVERDICTED 2roles
background 1polarities
background 1representative citing papers
Elastic compatibility constraints bifurcate nematic fluctuations into critical compatible and gapped incompatible sectors, yielding universal direction-selective nematic criticality protected from microscopic defect strains.
citing papers explorer
-
Theory of Electronic Nematic Criticality Constrained by Elastic Compatibility
A formalism for nemato-elasticity enforces Saint Venant compatibility via a helical basis, yielding direction-selective criticality and defect-induced random fields as universal features of crystalline systems.
-
Compatible Instability: Gauge Constraints of Elasticity Inherited by Electronic Nematic Criticality
Elastic compatibility constraints bifurcate nematic fluctuations into critical compatible and gapped incompatible sectors, yielding universal direction-selective nematic criticality protected from microscopic defect strains.