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Inherent structures for soft long-range interactions in two-dimensional many-particle systems

机译:二维多粒子系统中软性远程相互作用的固有结构

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We generate inherent structures, local potential-energy minima, of the k-space overlap potential in two-dimensional many-particle systems using a cooling and quenching simulation technique. The ground states associated with the k-space overlap potential are stealthy (i.e., completely suppress single scattering of radiation for a range of wavelengths) and hyperuniform (i.e., infinite wavelength density fluctuations vanish). However, we show via quantitative metrics that the inherent structures exhibit a range of stealthiness and hyperuniformity depending on the fraction of degrees of freedom that are constrained. Inherent structures in two dimensions typically contain five-particle rings, wavy grain boundaries, and vacancy-interstitial defects. The structural and thermodynamic properties of the inherent structures are relatively insensitive to the temperature from which they are sampled, signifying that the energy landscape is relatively flat along the directions sampled, with wide shallow local minima and devoid of deep wells. Using the nudged-elastic-band algorithm, we construct paths from ground-state configurations to inherent structures and identify the transition points between them. In addition, we use point patterns generated from a random sequential addition (RSA) of hard disks, which are nearly stealthy, and examine the particle rearrangements necessary to make the configurations absolutely stealthy. We introduce a configurational proximity metric to show that only small local, but collective, particle rearrangements are needed to drive initial RSA configurations to stealthy disordered ground states. These results lead to a more complete understanding of the unusual behaviors exhibited by the family of collective-coordinate potentials to which the k-space overlap potential belongs.
机译:我们使用冷却和淬灭模拟技术生成二维多粒子系统中k空间重叠势能的固有结构,即局部势能极小值。与k空间重叠电势相关的基态是隐身的(即,在一定波长范围内完全抑制辐射的单次散射)和超均匀性(即,无限的波长密度波动消失)。但是,我们通过定量指标表明,固有结构根据受约束的自由度的分数显示出一系列的隐身性和超均匀性。二维的固有结构通常包含五粒子环,波浪状晶界和空位间隙缺陷。固有结构的结构和热力学特性对它们所采样的温度相对不敏感,这表明沿采样方向的能量格局相对较平坦,局部最小值极小,没有深井。使用微动弹性带算法,我们构造了从基态配置到固有结构的路径,并确定了它们之间的过渡点。此外,我们使用从硬盘的随机顺序加法(RSA)生成的点模式,这些模式几乎是隐身的,并检查了使配置绝对隐身所需的粒子重排。我们介绍了一种配置接近度度量,以表明仅需要进行局部但集体的小粒子重排,即可将初始RSA配置驱动到隐身的无序基态。这些结果导致对k空间重叠电势所属的集体坐标电势家族表现出的异常行为有了更完整的理解。

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