CAS Key Laboratory of Soft Matter Chemistry, Hefei National Laboratory for Physical Sciences at the Microscale, and Department of Physics, University of Science and Technology of China, Hefei, 230026, People's Republic of China.
State Key Laboratory of Surface Physics and Department of Physics, Fudan University, Shanghai, 200433, People's Republic of China.
Nat Commun. 2017 Dec 12;8(1):2089. doi: 10.1038/s41467-017-02316-3.
In traditional approaches to form quasicrystals, multiple competing length scales involved in particle size, shape, or interaction potential are believed to be necessary. It is unexpected that quasicrystals can be formed by monodisperse, isotropic particles interacting via a simple potential that does not contain explicit multiple length scales to stabilize quasicrystals. Here, we report the surprising finding of the formation of such quasicrystals in high-density systems of soft-core particles. Although there are length scales naturally introduced in our model systems, they do not establish the quasicrystalline order. In two dimensions, we find not only dodecagonal but also octagonal quasicrystals, which have not been found yet in soft quasicrystals. In such unexpected quasicrystals, particles tend to form pentagons, which are essential elements to develop the quasicrystalline order. Our findings thus pave an unexpected and simple way to form quasicrystals and pose a challenge for theoretical understanding of quasicrystals.
在传统的准晶形成方法中,人们认为需要涉及粒径、形状或相互作用势能的多个竞争长度尺度。令人意想不到的是,通过单分散、各向同性粒子相互作用形成的简单势能也可以形成准晶,而这种势能中没有明确的多个长度尺度来稳定准晶。在这里,我们报告了在高密度软核粒子系统中形成这种准晶的惊人发现。尽管我们的模型系统中自然会引入长度尺度,但它们并没有建立准晶序。在二维空间中,我们不仅发现了十二角准晶,还发现了八角准晶,而这在软准晶中尚未发现。在这种意想不到的准晶中,粒子往往会形成五边形,这是发展准晶序的基本要素。因此,我们的发现为形成准晶开辟了一条出人意料且简单的途径,也为准晶的理论理解提出了挑战。