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Magneto-Optical Study of Defect Induced Sharp Photoluminescence in LaAlO3 and SrTiO3

机译:LaAlO3和SrTiO3中缺陷诱导的锋利光致发光的磁光研究

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摘要

Strongly correlated electronic systems such as Transition Metal Oxides often possess various mid-gap states originating from intrinsic defects in these materials. In this paper, we investigate an extremely sharp Photoluminescence (PL) transition originating from such defect states in two widely used perovskites, LaAlO3 and SrTiO3. A detailed study of the PL as a function of temperature and magnetic field has been conducted to understand the behavior and origin of the transition involved. The temperature dependence of the PL peak position for SrTiO3 is observed to be opposite to that in LaAlO3. Our results reveal the presence of a spin/orbital character in these transitions which is evident from the splitting of these defect energy levels under a high magnetic field. These PL transitions have the potential for enabling non-contact thermal and field sensors.
机译:高度相关的电子系统(例如过渡金属氧化物)通常具有源自这些材料固有缺陷的各种中间能隙状态。在本文中,我们研究了在两种广泛使用的钙钛矿(LaAlO3和SrTiO3)中源自这种缺陷状态的极其尖锐的光致发光(PL)跃迁。已经对PL作为温度和磁场的函数进行了详细研究,以了解所涉及的跃迁的行为和起源。观察到SrTiO3的PL峰位置的温度依赖性与LaAlO3中的温度依赖性相反。我们的结果揭示了在这些跃迁中存在自旋/轨道特征,这在高磁场下从这些缺陷能级的分裂中可以明显看出。这些PL转换具有启用非接触式热和场传感器的潜力。

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