Pal Subhajit, Swain Atal Bihari, Biswas Pranab Parimal, Murugavel Pattukkannu
Department of Physics, Indian Institute of Technology Madras, Chennai 600036, India.
J Phys Condens Matter. 2020 Sep 4;32(48). doi: 10.1088/1361-648X/abac23.
Ferroelectric systems with multi-phase co-existence are found to exhibit anomalous photovoltaic response. In this work, detailed photovoltaic studies are carried out under 405 nm light illumination on Ba(BiLi)TiOferroelectric oxides having the co-existence of tetragonal and orthorhombic phases. The linear and sinusoidal photocurrent-dependence as a function of light intensity and polarization-direction, respectively elucidate the experimental evidence for linear bulk-photovoltaic effect. Importantly, the temperature-dependent photovoltaic studies display 2-fold enhancement in photovoltage near the ferroelectric transition temperature (). The observed features in photovoltage follow inverse temperature-dependence of the photoconductivity. The linear relationship between the calculated bulk-photovoltaic tensor component and the photocurrent established from the proposed phenomenological model is verified through their composition-dependent studies. These studies provide the desired design parameters to engineer the ferroelectric system for better photovoltaic characteristics suitable for device applications.
人们发现具有多相共存的铁电系统表现出异常的光伏响应。在这项工作中,在405nm光照下对具有四方相和正交相共存的Ba(BiLi)TiO铁电氧化物进行了详细的光伏研究。线性光电流和正弦光电流分别作为光强和偏振方向的函数,阐明了线性体光伏效应的实验证据。重要的是,与温度相关的光伏研究表明,在铁电转变温度()附近光电压提高了2倍。观察到的光电压特征遵循光电导率的逆温度依赖性。通过成分依赖性研究验证了从所提出的唯象模型建立的计算体光伏张量分量与光电流之间的线性关系。这些研究提供了所需的设计参数,以设计具有更好光伏特性的铁电系统,适用于器件应用。