Geneste Grégory, Bellaiche L, Kiat Jean-Michel
CEA, DAM, DIF, F-91297 Arpajon, France.
Physics Department and Institute for Nanoscience and Engineering, University of Arkansas, Fayetteville, Arkansas 72701, USA.
Phys Rev Lett. 2016 Jun 17;116(24):247601. doi: 10.1103/PhysRevLett.116.247601. Epub 2016 Jun 14.
The radio-frequency dielectric response of the lead-free Ba(Zr_{0.5}Ti_{0.5})O_{3} relaxor ferroelectric is simulated using a coarse-grained Hamiltonian. This concept, taken from real-space renormalization group theories, allows us to depict the collective behavior of correlated local modes gathered in blocks. Free-energy barriers for their thermally activated collective hopping are deduced from this ab initio-based approach, and used as input data for kinetic Monte Carlo simulations. The resulting numerical scheme allows us to simulate the dielectric response for external field frequencies ranging from kHz up to a few tens of MHz for the first time and to demonstrate, e.g., that local (electric or elastic) random fields lead to the dielectric relaxation in the radio-frequency range that has been observed in relaxors.
使用粗粒哈密顿量对无铅Ba(Zr_{0.5}Ti_{0.5})O_{3}弛豫铁电体的射频介电响应进行了模拟。这个概念源自实空间重整化群理论,使我们能够描绘聚集在块中的相关局域模式的集体行为。基于这种从头算方法推导出了它们热激活集体跳跃的自由能垒,并将其用作动力学蒙特卡罗模拟的输入数据。由此产生的数值方案使我们首次能够模拟从kHz到几十MHz的外部场频率下的介电响应,并证明例如局域(电或弹性)随机场导致了在弛豫铁电体中观察到的射频范围内的介电弛豫。