Mesoscale field theory for quasicrystals

We present a mesoscale field theory unifying the modeling of growth, elasticity, and dislocations in quasicrystals. The theory is based on the amplitudes entering their density-wave representation. We introduce a free energy functional for complex amplitudes and assume nonconserved dissipative dynam...

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Veröffentlicht in:Physical review research 2024-12, Vol.6 (4), p.043285, Article 043285
Hauptverfasser: De Donno, Marcello, Angheluta, Luiza, Elder, Ken R., Salvalaglio, Marco
Format: Artikel
Sprache:eng
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Zusammenfassung:We present a mesoscale field theory unifying the modeling of growth, elasticity, and dislocations in quasicrystals. The theory is based on the amplitudes entering their density-wave representation. We introduce a free energy functional for complex amplitudes and assume nonconserved dissipative dynamics to describe their evolution. Elasticity, including phononic and phasonic deformations, along with defect nucleation and motion, emerges self-consistently by prescribing only the symmetry of quasicrystals. Predictions on the formation of semicoherent interfaces and dislocation kinematics are given.
ISSN:2643-1564
2643-1564
DOI:10.1103/PhysRevResearch.6.043285