论文标题

电子和孔的自旋动力学与Mapbi中的核相互作用$ _3 $ PEROVSKITE单晶

Spin dynamics of electrons and holes interacting with nuclei in MAPbI$_3$ perovskite single crystals

论文作者

Kirstein, E., Yakovlev, D. R., Zhukov, E. A., Höcker, J., Dyakonov, V., Bayer, M.

论文摘要

甲基铵铅三碘(Mapbi $ _3 $)是混合有机无机铅卤化物钙钛矿的材料,由于其光伏效率和明亮的光电特性,目前引起了人们的关注。在这里,在Mapbi $ _3 $单晶中研究了电荷载体和与核自旋相互作用引起的旋转现象的一致性自旋动力学,使用时间分辨的Kerr在低温温度下的磁场上使用时间分辨的KERR旋转。最多3 t的磁场中的磁场中,旋转时间多达几个nanoseconds和长期旋转的时间量表。在Kerr旋转信号中鉴定出居民电子和孔的Larmor自旋进动。牙本质晶体阶段的兰德因子($ g $ - 因素)表现出强烈的各向异性,孔的范围从$ -0.28 $到$ -0.71 $,并且电子从$+2.46 $到$++2.98美元,而$ g $ - $ g $ - $ g $ - factor-factor-g $ factactor of-factor-g $ fictactor of-factor of abter-factors exerseransion of yough Biess biles小。 $+2.3 $的激子$ g $ - 因素是通过磁反射性测量的。通过自旋极化电子和孔的动态核极化在倾斜的磁场中实现,从而可以进入载体 - 核核交换相互作用,而核自旋松弛时间超过16分钟。

Methylammonium lead triiodine (MAPbI$_3$) is a material representative of the hybrid organic-inorganic lead halide perovskites which attract currently great attention due to their photovoltaic efficiency and bright optoelectronic properties. Here, the coherent spin dynamics of charge carriers and spin dependent phenomena induced by the carrier interaction with nuclear spins are studied in MAPbI$_3$ single crystals, using time-resolved Kerr rotation at cryogenic temperatures in magnetic fields up to 3 T. Spin dephasing times up to a few nanoseconds and a longitudinal spin relaxation time of 37 ns are measured. The Larmor spin precession of both resident electrons and holes is identified in the Kerr rotation signals. The Landé factors ($g$-factors) in the orthorhombic crystal phase show a strong anisotropy, ranging for the holes from $-0.28$ to $-0.71$ and for the electrons from $+2.46$ to $+2.98$, while the $g$-factor dispersion of about 1% is rather small. An exciton $g$-factor of $+2.3$ is measured by magneto-reflectivity. A dynamic nuclear polarization by means of spin polarized electrons and holes is achieved in tilted magnetic fields giving access to the carrier-nuclei exchange interaction and the nuclei spin relaxation time exceeding 16 minutes.

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