Chapman Jacob B J, Kimmel Anna V, Duffy Dorothy M
Department of Physics and Astronomy, University College London, Gower Street, London, WC1E 6BT, UK.
Phys Chem Chem Phys. 2017 Feb 8;19(6):4243-4250. doi: 10.1039/c6cp08157f.
Exotic domain morphologies in ferroic materials are an exciting avenue for the development of novel nanoelectronics. In this work we have used large scale molecular dynamics to construct a strain-temperature phase diagram of the domain morphology of PbTiO ultrathin films. Sampling a wide interval of strain values over a temperature range up to the Curie temperature T, we found that epitaxial strain induces the formation of a variety of closure- and in-plane domain morphologies. The local strain and ferroelectric-antiferrodistortive coupling at the film surface vary for the strain mediated transition sequence and this could offer a route for experimental observation of the morphologies. Remarkably, we identify a new nanobubble domain morphology that is stable in the high-temperature regime for compressively strained PbTiO. We demonstrate that the formation mechanism of the nanobubble domains morphology is related to the wandering of flux closure domain walls, which we characterise using the hypertoroidal moment. These results provide insight into the local behaviour and dynamics of ferroelectric domains in ultrathin films to open up potential applications for bubble domains in new technologies and pathways to control and exploit novel phenomena in dimensionally constrained materials.
铁电材料中的奇异畴形态是新型纳米电子学发展的一个令人兴奋的途径。在这项工作中,我们使用大规模分子动力学构建了PbTiO超薄膜畴形态的应变-温度相图。在高达居里温度T的温度范围内对宽应变值区间进行采样,我们发现外延应变诱导形成了各种闭合和面内畴形态。对于应变介导的转变序列,薄膜表面的局部应变和铁电-反铁电畸变耦合会发生变化,这可能为形态的实验观察提供一条途径。值得注意的是,我们确定了一种新的纳米气泡畴形态,它在高温区域对于压缩应变的PbTiO是稳定的。我们证明纳米气泡畴形态的形成机制与通量闭合畴壁的漂移有关,我们使用超环形矩对其进行了表征。这些结果深入了解了超薄膜中铁电畴的局部行为和动力学,为气泡畴在新技术中的潜在应用以及控制和利用尺寸受限材料中的新现象开辟了途径。