Lazar, Markus ; Michelitsch, Thomas ; Agiasofitou, Eleni (2024)
Three-Dimensional Green Tensor of One-Dimensional Hexagonal Quasicrystals.
In: Crystals, 2024, 14 (12)
doi: 10.26083/tuprints-00028850
Article, Secondary publication, Publisher's Version
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Item Type: | Article |
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Type of entry: | Secondary publication |
Title: | Three-Dimensional Green Tensor of One-Dimensional Hexagonal Quasicrystals |
Language: | English |
Date: | 10 December 2024 |
Place of Publication: | Darmstadt |
Year of primary publication: | December 2024 |
Place of primary publication: | Basel |
Publisher: | MDPI |
Journal or Publication Title: | Crystals |
Volume of the journal: | 14 |
Issue Number: | 12 |
Collation: | 20 Seiten |
DOI: | 10.26083/tuprints-00028850 |
Corresponding Links: | |
Origin: | Secondary publication DeepGreen |
Abstract: | In this work, the elastic 4×4 Green tensor of one-dimensional quasicrystals is given and has phonon, phason and phonon–phason coupling components. Using the residue method, a closed-form expression of the elastic 4×4 Green tensor for one-dimensional hexagonal quasicrystals of Laue class 10, which possess 10 independent material constants, is derived. The 10 independent components of the obtained 4×4 Green tensor are numerically presented in contour plots, revealing features of anisotropy as well as the interesting result that the phason component of the Green tensor has the strongest contribution in comparison with all the other components. In the case of vanishing phonon–phason coupling, the phonon part of the derived Green tensor reproduces Kröner’s well-known elastic 3×3 Green tensor for hexagonal crystals. The analytical closed-form expression of the derived Green tensor provides an advantage for efficient computational calculations in various applications. |
Uncontrolled Keywords: | quasicrystals, Green tensor, one-dimensional hexagonal quasicrystals, residue method |
Identification Number: | Artikel-ID: 1034 |
Status: | Publisher's Version |
URN: | urn:nbn:de:tuda-tuprints-288506 |
Additional Information: | This article belongs to the Section: Crystalline Metals and Alloys |
Classification DDC: | 500 Science and mathematics > 530 Physics 600 Technology, medicine, applied sciences > 624 Civil engineering and environmental protection engineering |
Divisions: | 13 Department of Civil and Environmental Engineering Sciences > Mechanics > Continuum Mechanics 05 Department of Physics > Institute for Condensed Matter Physics |
Date Deposited: | 10 Dec 2024 13:37 |
Last Modified: | 12 Dec 2024 09:35 |
SWORD Depositor: | Deep Green |
URI: | https://tuprints.ulb.tu-darmstadt.de/id/eprint/28850 |
PPN: | 524525331 |
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