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首页> 外文期刊>Journal of Applied Physics >Electronic and optical properties of BaTiO_3 across tetragonal to cubic phase transition: An experimental and theoretical investigation
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Electronic and optical properties of BaTiO_3 across tetragonal to cubic phase transition: An experimental and theoretical investigation

机译:BaTiO_3在四方相到立方相变中的电子和光学性质:实验和理论研究

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Temperature dependent diffuse reflectance spectroscopy measurements were carried out on polycrystalline samples of BaTiO_3 across the tetragonal to cubic structural phase transition temperature (T_P). The values of various optical parameters such as band gap (E_g), Urbach energy (E_u), and Urbach focus (E_0) were estimated in the temperature range of 300 K to 480 K. It was observed that with increasing temperature, E_g decreases and shows a sharp anomaly at T_P. First principle studies were employed in order to understand the observed change in E_g due to the structural phase transition. Near T_P, there exist two values of E_0, suggesting the presence of electronic heterogeneity. Further, near T_P, E_u shows metastability, i.e., the value of E_u at temperature T is not constant but is a function of time (t). Interestingly, it is observed that the ratio of E_(u (t=0))/E_(u (t = tm)), almost remains constant at 300 K (pure tetragonal phase) and at 450 K (pure cubic phase), whereas this ratio decreases close to the transition temperature, which confirms the presence of electronic metastability in the pure BaTiO_3. The time dependence of E_u, which also shows an influence of the observed metastability can be fitted with the stretched exponential function, suggesting the presence of a dynamic heterogeneous electronic disorder in the sample across T_P. First principle studies suggest that the observed phase coexistence may be due to a very small difference between the total cohesive energy of the tetragonal and the cubic structure of BaTiO_3. The present work implies that the optical studies may be a sensitive probe of disorder/heterogeneity in the sample.
机译:对BaTiO_3的多晶样品在四方到立方结构相变温度(T_P)上进行了与温度相关的漫反射光谱测量。在300 K至480 K的温度范围内,估算了各种光学参数的值,例如带隙(E_g),Urbach能量(E_u)和Urbach聚焦(E_0)。观察到,随着温度的升高,E_g降低,显示T_P处的异常异常。为了了解由于结构相变引起的E_g的变化,采用了第一原理研究。在T_P附近,存在两个E_0值,表明存在电子异质性。此外,在T_P附近,E_u表现出亚稳定性,即,在温度T下的E_u的值不是恒定的,而是时间(t)的函数。有趣的是,观察到E_(u(t = 0))/ E_(u(t = tm))之比在300 K(纯四方相)和450 K(纯立方相)几乎保持恒定,而该比率在转变温度附近降低,这证实了纯BaTiO_3中存在电子亚稳性。 E_u的时间依赖性,也显示了观察到的亚稳性的影响,可以与扩展的指数函数拟合,这表明跨T_P的样品中存在动态异质电子紊乱。最初的原理研究表明,观察到的相共存可能是由于BaTiO_3的四方结构和立方结构的总内聚能之间存在很小的差异。目前的工作表明,光学研究可能是样品中异常/异质性的敏感探针。

著录项

  • 来源
    《Journal of Applied Physics 》 |2017年第6期| 065105.1-065105.10| 共10页
  • 作者单位

    Material Research Laboratory, Discipline of Physics, MEMS, Indian Institute of Technology, Indore, India;

    Indus Synchrotron Utilization Division, Raja Ramanna Center for Advanced Technology, Indore, India,Homi Bhabha National Institute, Training School Complex, Anushakti Nagar, Mumbai, India;

    Computational Material Science Laboratory, S. V. National Institute of Technology, Surat, India;

    Material Research Laboratory, Discipline of Physics, MEMS, Indian Institute of Technology, Indore, India;

    Material Research Laboratory, Discipline of Physics, MEMS, Indian Institute of Technology, Indore, India;

    Material Research Laboratory, Discipline of Physics, MEMS, Indian Institute of Technology, Indore, India;

    Computational Material Science Laboratory, S. V. National Institute of Technology, Surat, India;

    Computational Analysis Division, Bhabha Atomic Research Centre, Autonagar, Visakhapatnam, India;

    Material Research Laboratory, Discipline of Physics, MEMS, Indian Institute of Technology, Indore, India;

    Material Research Laboratory, Discipline of Physics, MEMS, Indian Institute of Technology, Indore, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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