论文标题
振荡驱动液晶细胞中物质的异国情调状态
Exotic states of matter in an oscillatory driven liquid crystal cell
论文作者
论文摘要
在不同的平衡条件下,压力和温度的物质表现出不同的状态,例如固体,液体,气体和血浆。在热力学平衡中观察到物质的异国情调状态,例如玻色爱因斯坦冷凝水,超流体,手性磁铁,超导性和液晶蓝相。它们的出现不是由于物质聚集而导致的,而是由于系统的拓扑状态的变化所致。在这里,我们研究了注射和耗散能量的系统中物质的拓扑状态。在低频振荡电场的影响下涉及液晶细胞的实验中,我们观察到从非涡流状态到涡流持续存在的状态的过渡。取决于强迫的时期和类型,涡流自组织形成方形晶格,玻璃状状态和无序涡流结构。基于随机振幅方程,我们将过渡的起源视为随机创造与涡旋的确定性an灭之间的平衡。我们的结果表明,通过参数的时间调节,该物质无法平衡,可以表现出外来状态。
Matter under different equilibrium conditions of pressure and temperature exhibits different states such as solid, liquid, gas, and plasma. Exotic states of matter, such as Bose- Einstein condensates, superfluidity, chiral magnets, superconductivity, and liquid crystalline blue phases are observed in thermodynamic equilibrium. Rather than being a result of an aggregation of matter, their emergence is due to a change of a topological state of the system. Here we investigate topological states of matter in a system with injection and dissipation of energy. In an experiment involving a liquid crystal cell under the influence of a low-frequency oscillatory electric field, we observe a transition from non-vortex state to a state in which vortices persist. Depending on the period and the type of the forcing, the vortices self-organise forming square lattices, glassy states, and disordered vortex structures. Based on a stochastic amplitude equation, we recognise the origin of the transition as the balance between stochastic creation and deterministic annihilation of vortices. Our results show that the matter maintained out of equilibrium by means of the temporal modulation of parameters can exhibit exotic states.