Cao Xin, Panizon Emanuele, Vanossi Andrea, Manini Nicola, Tosatti Erio, Bechinger Clemens
Fachbereich Physik, Universität Konstanz, 78464 Konstanz, Germany.
International School for Advanced Studies (SISSA), Via Bonomea 265, 34136 Trieste, Italy.
Phys Rev E. 2021 Jan;103(1-1):012606. doi: 10.1103/PhysRevE.103.012606.
Understanding the drift motion and dynamical locking of crystalline clusters on patterned substrates is important for the diffusion and manipulation of nano- and microscale objects on surfaces. In a previous work, we studied the orientational and directional locking of colloidal two-dimensional clusters with triangular structure driven across a triangular substrate lattice. Here we show with experiments and simulations that such locking features arise for clusters with arbitrary lattice structure sliding across arbitrary regular substrates. Similar to triangular-triangular contacts, orientational and directional locking are strongly correlated via the real- and reciprocal-space Moiré patterns of the contacting surfaces. Due to the different symmetries of the surfaces in contact, however, the relation between the locking orientation and the locking direction becomes more complicated compared to interfaces composed of identical lattice symmetries. We provide a generalized formalism which describes the relation between the locking orientation and locking direction with arbitrary lattice symmetries.
理解晶体簇在图案化衬底上的漂移运动和动态锁定对于纳米和微米尺度物体在表面上的扩散和操纵至关重要。在先前的工作中,我们研究了具有三角形结构的胶体二维簇在三角形衬底晶格上驱动时的取向和方向锁定。在此,我们通过实验和模拟表明,对于具有任意晶格结构的簇在任意规则衬底上滑动时,都会出现这种锁定特征。与三角形 - 三角形接触类似,取向和方向锁定通过接触表面的实空间和倒易空间莫尔条纹紧密相关。然而,由于接触表面的对称性不同,与由相同晶格对称性组成的界面相比,锁定取向和锁定方向之间的关系变得更加复杂。我们提供了一种广义形式体系,它描述了具有任意晶格对称性的锁定取向和锁定方向之间的关系。