175 citations · 315 across the 29 of their papers we have counts for
9 papers · 1 filter
Self-Organized Networks and Lattice Effects in High Temperature Superconductors III: Dopant Internal Structure
J. C. Phillips
The self-organized dopant percolative filamentary model, entirely orbital in character (no fictive spins), predicted the existence and even the ~ 3 nm diameters of gap nanodomains…
Self-Organized Networks and Lattice Effects in High Temperature Superconductors II: Fermi Arc Anomalies
J. C. Phillips
The self-organized dopant percolative filamentary model, entirely orbital in character (no fictive spins), explains the evolution with doping of Fermi arcs observed by ARPES, inclu…
Self-Organized Networks and Lattice Effects in High Temperature Superconductors I: Lattice Softening
J. C. Phillips
The self-organized dopant percolative filamentary model, entirely orbital in character (no fictive spins), explains chemical trends in superconductive transition temperatures Tc, a…
Onset of rigidty in glasses: from random to self-organized networks
M. Micoulaut, P. Boolchand, J. C. Phillips
We review in this paper the signatures of a new elastic phase that is found in glasses with selected compositions. It is shown that in contrast with random networks, where rigidity…
Structure and Function of Window Glass and Pyrex
James C. Phillips, Richard Kerner
Window glass is a ternary mixture, while pyrex (after window glass, the most common form of commercial glass) is a quaternary. Building on our previous success in deriving the comp…
Strong Disorder and High Temperature Superconductivity
J. C. Phillips
ARPES and wide area, high resolution STM studies of a micaceous cuprate high temperature superconductor have shown strong nanoscale gap disorder, but the question of whether this d…