Symmetry and Asymmetry in Quasicrystals or Amorphous Materials

About forty years after its discovery, it is still common to read in the literature that quasicrystals (QCs) occupy an intermediate position between amorphous materials and periodic crystals. However, QCs exhibit high-quality diffraction patterns containing a collection of discrete Bragg reflections...

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Year of Publication:2020
Language:English
Physical Description:1 electronic resource (120 p.)
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spelling Barber, Enrique Maciá edt
Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2020
1 electronic resource (120 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
About forty years after its discovery, it is still common to read in the literature that quasicrystals (QCs) occupy an intermediate position between amorphous materials and periodic crystals. However, QCs exhibit high-quality diffraction patterns containing a collection of discrete Bragg reflections at variance with amorphous phases. Accordingly, these materials must be properly regarded as long-range ordered materials with a symmetry incompatible with translation invariance. This misleading conceptual status can probably arise from the use of notions borrowed from the amorphous solids framework (such us tunneling states, weak interference effects, variable range hopping, or spin glass) in order to explain certain physical properties observed in QCs. On the other hand, the absence of a general, full-fledged theory of quasiperiodic systems certainly makes it difficult to clearly distinguish the features related to short-range order atomic arrangements from those stemming from long-range order correlations. The contributions collected in this book aim at gaining a deeper understanding on the relationship between the underlying structural order and the resulting physical properties in several illustrative aperiodic systems, including the border line between QCs and related complex metallic alloys, hierarchical superlattices, electrical transmission lines, nucleic acid sequences, photonic quasicrystals, and optical devices based on aperiodic order designs.
English
Research & information: general bicssc
nucleic acids
aperiodic
quasiperiodic
fractal
order
disorder
energy structure
charge transport
Mg-Zn-Gd alloys
symmetrical rod phase
quasicrystal
morphologies and properties
quasiperiodic order
self-similarity
quasiperiodic photonic micro/nanostructures
fractal-like photonic micro/nanostructures
quasiperiodic or fractal-like plasmonic structures
non-periodic systems
localization properties
electrical transmission lines
quasiperiodicity
localization
tight-binding model
Kubo formula
low-dimensional systems
3-03943-056-4
3-03943-057-2
Barber, Enrique Maciá oth
language English
format eBook
author2 Barber, Enrique Maciá
author_facet Barber, Enrique Maciá
author2_variant e m b em emb
author2_role Sonstige
title Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
spellingShingle Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
title_full Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
title_fullStr Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
title_full_unstemmed Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
title_auth Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
title_new Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
title_sort symmetry and asymmetry in quasicrystals or amorphous materials
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2020
physical 1 electronic resource (120 p.)
isbn 3-03943-056-4
3-03943-057-2
illustrated Not Illustrated
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is_hierarchy_title Symmetry and Asymmetry in Quasicrystals or Amorphous Materials
author2_original_writing_str_mv noLinkedField
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