Collective motion and its connection to the energy landscape in 2D soft crystals

被引:0
|
作者
Hassan, Md. Rakib [1 ]
Aronow, Sam R. [1 ]
Douglas, Jack F. [2 ]
Starr, Francis W. [1 ]
机构
[1] Wesleyan Univ, Phys Dept, Middletown, CT 06459 USA
[2] Natl Inst Stand & Technol, Mat Sci & Engn Div, Gaithersburg, MD 20899 USA
关键词
DYNAMICAL HETEROGENEITIES; POTENTIAL-ENERGY; RELAXATION; TRANSITION; DEFECTS; LIQUIDS;
D O I
10.1039/d4sm01405g
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We examine the collective motion in computational models of a two-dimensional dusty plasma crystal and a charged colloidal suspension as they approach their respective melting transitions. To unambiguously identify rearrangement events in the crystal, we map the trajectory of configurations from an equilibrium molecular dynamics simulation to the corresponding sequence of configurations of local potential energy minima ("inherent structures"). This inherent structure (IS) trajectory eliminates the ambiguity that arises from localized vibrational motion. We find that the evolution of the IS trajectory in the crystal can be split into comparatively longer-lived ground states and shorter-lived discrete excited states. These discrete excited energy levels are a consequence of discrete numbers of defect clusters in the crystal. We find that the collective rearrangement occurs through different mechanisms: (i) small closed-loop motion in the ground states without the facilitation of defects, and (ii) much larger and complex open-ended particle motions in excited states that are facilitated by clusters of defects. In both cases, clusters of displacing particles can be separated into much smaller groups of replacing particles with a loop-like structure. In contrast to glass-forming liquids, the mass of the rearranging groups grows on heating towards the melting temperature rather than cooling. We find that crystal melting in these systems can be anticipated by the merging of the average time the crystal spends in the ground state with the average time in the excited states.
引用
收藏
页码:2070 / 2080
页数:11
相关论文
共 50 条
  • [1] Diffusion and collective motion of rotlets in 2D space
    Daiki Matsunaga
    Takumi Chodo
    Takuma Kawai
    ChinesePhysicsB, 2020, 29 (06) : 53 - 59
  • [2] Diffusion and collective motion of rotlets in 2D space
    Matsunaga, Daiki
    Chodo, Takumi
    Kawai, Takuma
    CHINESE PHYSICS B, 2020, 29 (06)
  • [3] Disentangling collective motion and local rearrangements in 2D and 3D cell assemblies
    Cerbino, Roberto
    Villa, Stefano
    Palamidessi, Andrea
    Frittoli, Emanuela
    Scita, Giorgio
    Giavazzi, Fabio
    SOFT MATTER, 2021, 17 (13) : 3550 - 3559
  • [4] Expanding the 2D landscape
    Taroni, Andrea
    NATURE MATERIALS, 2013, 12 (09) : 778 - 778
  • [5] Expanding the 2D landscape
    Andrea Taroni
    Nature Materials, 2013, 12 : 778 - 778
  • [6] Collective excitations in 2D materials
    Rodin, Aleksandr
    Trushin, Maxim
    Carvalho, Alexandra
    Castro Neto, A. H.
    NATURE REVIEWS PHYSICS, 2020, 2 (10) : 524 - 537
  • [7] Soft 2D nanoarchitectonics
    Ariga, Katsuhiko
    Watanabe, Shun
    Mori, Taizo
    Takeya, Jun
    NPG ASIA MATERIALS, 2018, 10 : 90 - 106
  • [8] Soft 2D nanoarchitectonics
    Katsuhiko Ariga
    Shun Watanabe
    Taizo Mori
    Jun Takeya
    NPG Asia Materials, 2018, 10 : 90 - 106
  • [9] Collective excitations in 2D materials
    Aleksandr Rodin
    Maxim Trushin
    Alexandra Carvalho
    A. H. Castro Neto
    Nature Reviews Physics, 2020, 2 : 524 - 537
  • [10] Theory of defect motion in 2D passive and active nematic liquid crystals
    Tang, Xingzhou
    Selinger, Jonathan V.
    SOFT MATTER, 2019, 15 (04) : 587 - 601