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<a target="_blank" rel="noopener" href="https://fatcat.wiki/container/mtjzh5k74rffbo7d6gwo5kig2e" style="color: black;">European Physical Journal B : Condensed Matter Physics</a>
The diffraction properties of a quenched Al-Mg alloy which has been recently termed as a "cubic quasicrystal" are quantitatively reanalyzed. It is shown that the phase can be interpreted within the superspace formalism as an ordinary incommensurately modulated structure. The cubic six-dimensional superspace group that describes its symmetry properties has been determined. The additional inflation symmetry features exhibited by the diffraction diagram can be summed up by its invariance for the<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s100510050591">doi:10.1007/s100510050591</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/j2itcm56vvdp5emjjdfpx4zfzm">fatcat:j2itcm56vvdp5emjjdfpx4zfzm</a> </span>
more »... flation factor (2 + √ 3), but this property has its origin in the specific value of the modulus of the modulation wave vectors, which is composition dependent. Other particular values of this modulus can give rise to similar scaling properties. Further experiments are required to ellucidate if the mentioned inflation symmetry is a fortuitous situation in a composition dependent wave vector, or has indeed the physical significance which would allow to describe the system as a "cubic quasicrystal". PACS. 61.44.Fw Incommensurate crystals -61.44.-n Semi-periodic solids -61 Structure of solids and liquids; crystallography
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