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arXiv:math/0506054 [math.DS]AbstractReferencesReviewsResources

Tilings, tiling spaces and topology

Lorenzo Sadun

Published 2005-06-02, updated 2018-07-06Version 2

To understand an aperiodic tiling (or a quasicrystal modeled on an aperiodic tiling), we construct a space of similar tilings, on which the group of translations acts naturally. This space is then an (abstract) dynamical system. Dynamical properties of the space (such as mixing, or the spectrum of the translation operator) are closely related to bulk properties of the individual tilings (such as the diffraction pattern). The topology of the space of tilings, particularly the Cech cohomology, gives information on how the original tiling can be deformed. Tiling spaces can be constructed as inverse limits of branched manifolds.

Comments: 8 pages, including 2 figures, talk given at ICQ9
Journal: Philosophical Magazine 86 (2006) 875-881
Categories: math.DS, math-ph, math.MG, math.MP
Subjects: 37B50, 52C23
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