Paul Jaita, Nishimatsu Takeshi, Kawazoe Yoshiyuki, Waghmare Umesh V
TSU, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur PO Bangalore 560 064, India.
Phys Rev Lett. 2007 Aug 17;99(7):077601. doi: 10.1103/PhysRevLett.99.077601. Epub 2007 Aug 16.
We present molecular dynamics simulations of a realistic model of an ultrathin film of BaTiO3 sandwiched between short-circuited electrodes to determine and understand effects of film thickness, epitaxial strain, and the nature of electrodes on its ferroelectric phase transitions as a function of temperature. We determine a full epitaxial strain-temperature phase diagram in the presence of perfect electrodes. Even with the vanishing depolarization field, we find that ferroelectric phase transitions to states with in-plane and out-of-plane components of polarization exhibit dependence on thickness; it arises from the interactions of local dipoles with their electrostatic images in the presence of electrodes. Secondly, in the presence of relatively bad metal electrodes which only partly compensate the surface charges and depolarization field, a qualitatively different phase with stripelike domains is stabilized at low temperature.
我们展示了夹在短路电极之间的超薄钛酸钡薄膜真实模型的分子动力学模拟,以确定并理解薄膜厚度、外延应变和电极性质对其铁电相变随温度变化的影响。我们确定了在理想电极存在下的完整外延应变 - 温度相图。即使退极化场消失,我们发现铁电相变到具有面内和面外极化分量的状态仍表现出对厚度的依赖性;这是由于在电极存在的情况下局部偶极与其静电镜像之间的相互作用引起的。其次,在仅部分补偿表面电荷和退极化场的相对不良金属电极存在的情况下,一种具有条纹状畴的性质不同的相在低温下得以稳定。