论文标题

硅在硅驱动的液态多态性过平衡中的液体多态性

Unraveling liquid polymorphism in silicon driven out-of-equilibrium

论文作者

Desgranges, Caroline, Delhommelle, Jerome

论文摘要

使用非平衡分子动力学(NEMD)模拟,我们研究了剪切下的Si在T = 1060K下的超冷液体在包含低密度液体(LDL)和高密度液体(HDL)形式的密度范围内的特性。这使我们能够生成LDL和HDL多晶型物的非平衡稳态,只要施加剪切,它们就可以在其液体形式下保持稳定。这与静止的LDL和HDL形式不同,在这些条件下,在静止状态下,在静止状态下,在静止状态下,迅速经历向晶体的过渡,即热力学稳定的平衡相。特别是,通过对剪切液体液体的结构和能量特征的详细分析,我们确定了引起两种形式的密度范围以及剪切速率的范围。我们还展示了剪切和四面体秩序之间的竞争如何影响SI稳态下的SI稳定状态的两体熵。这些结果为利用剪切力来稳定静止稳定并可以表现出独特特性的新方式打开了大门,因为例如,在SI上进行了实验,表明HDL是金属的,没有带隙,而LDL是半金属金属的,具有伪gap。

Using nonequilibrium molecular dynamics (NEMD) simulations, we study the properties of supercooled liquids of Si under shear at T=1060K over a range of densities encompassing the low-density liquid (LDL) and high-density liquid (HDL) forms. This enables us to generate nonequilibrium steady-states of the LDL and HDL polymorphs, that remain stabilized in their liquid forms for as long as the shear is applied. This is unlike the LDL and HDL forms at rest, which are metastable under those conditions and, when at rest, rapidly undergo a transition towards the crystal, i.e. the thermodynamically stable equilibrium phase. In particular, through a detailed analysis of the structural and energetic features of the liquids under shear, we identify the range of densities, as well as the range of shear rates, that give rise to the two forms. We also show how the competition between shear and tetrahedral order impacts the two-body entropy in steady-states of Si under shear. These results open the door to new ways of utilizing shear to stabilize forms that are metastable at rest and can exhibit unique properties, since, for instance, experiments on Si have shown that HDL is metallic, with no band gap, while LDL is semimetallic, with a pseudogap.

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