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Bulk photovoltaic effect ofLiNbO3:Fe and its small-polaron-based microscopic interpretation

机译:LiNbO3:Fe的体光伏效应及其基于小极化子的微观解释

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摘要

Based on recent experimental evidence on the electronic and optical properties of Fe_(Li)~(2+) and Nb_(Nb)~(4+) in LiNbO_3:Fe, both strongly determined by their small polaron character, a microscopic model is presented accounting for the main features of the bulk photovoltaic effect (BPVE) in this material. The relative sizes of the components of the photovoltaic tensor are explained on an atomic basis. Optical small polaron transfer from Fe_(Li)~(2+) to Nb_(Nb)~(5+) conduction band states and the subsequent coherent bandlike electron transport, terminated by the formation of Nb_(Nb)~(4+) free small polarons within about 10~(13) s, characterize the first steps of the BPVE. These free polarons, transported by thermally activated incoherent hopping, are then trapped by deeper defects such as Nb_(Li)~(5+) and Fe_(Li)~(3+) impurities. The model allows us to explain the strong increase of the ionization probability of Fe_(Li)~(2+) and the coherent transport length with photon energy. The low mobility of the Nb_(Nb)~(4+) conduction polarons appears to be the reason for the high open-circuit photovoltaic fields attainable in LiNbO_3.
机译:基于最近关于LiNbO_3:Fe中Fe_(Li)〜(2+)和Nb_(Nb)〜(4+)的电子和光学性质的实验证据,两者均由其小的极化子特性强烈决定,提出了一个微观模型解释了这种材料中大体积光伏效应(BPVE)的主要特征。光电张量的组件的相对大小在原子基础上进行了解释。从Fe_(Li)〜(2+)到Nb_(Nb)〜(5+)导带态的光学小极化子转移以及随后的相干带状电子传输,被自由形成Nb_(Nb)〜(4+)终止约10〜(13)s内的小极化子是BPVE的第一步。通过热活化非相干跳跃传输的这些自由极化子,然后被更深的缺陷(例如Nb_(Li)〜(5+)和Fe_(Li)〜(3+)杂质)捕获。该模型使我们能够解释Fe_(Li)〜(2+)的电离概率以及光子能量的相干传输长度的强烈增加。 Nb_(Nb)〜(4+)传导极化子的低迁移率似乎是LiNbO_3中可获得高开路光伏电场的原因。

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  • 来源
    《Physical review》 |2011年第16期|p.165106.1-165106.13|共13页
  • 作者单位

    Universitat Osnabriick, Fachbereich Physik, Osnabruck, Germany;

    Universitat Osnabriick, Fachbereich Physik, Osnabruck, Germany;

    Helmholtz-Zentrum Berlin fur Materialien und Energie GmbH, Berlin, Germany;

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  • 正文语种 eng
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  • 关键词

    self-trapped or small polarons; bipolarons;

    机译:自陷或小极化子;双极化子;

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