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首页> 外文期刊>Nature Communications >Circular photogalvanic spectroscopy of Rashba splitting in 2D hybrid organic–inorganic perovskite multiple quantum wells
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Circular photogalvanic spectroscopy of Rashba splitting in 2D hybrid organic–inorganic perovskite multiple quantum wells

机译:2D杂交有机无机钙钛矿多量子孔中的Rashba分裂圆形光缩瓣光谱

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The two-dimensional (2D) Ruddlesden?Popper organic-inorganic halide perovskites such as (2D)-phenethylammonium lead iodide (2D-PEPI) have layered structure that resembles multiple quantum wells (MQW). The heavy atoms in 2D-PEPI contribute a large spin-orbit coupling that influences the electronic band structure. Upon breaking the inversion symmetry, a spin splitting (‘Rashba splitting’) occurs in the electronic bands. We have studied the spin splitting in 2D-PEPI single crystals using the circular photogalvanic effect (CPGE). We confirm the existence of Rashba splitting at the electronic band extrema of 35±10?meV, and identify the main inversion symmetry breaking direction perpendicular to the MQW planes. The CPGE action spectrum above the bandgap reveals spin-polarized photocurrent generated by ultrafast relaxation of excited photocarriers separated in momentum space. Whereas the helicity dependent photocurrent with below-gap excitation is due to spin-galvanic effect of the ionized spin-polarized excitons, where spin polarization occurs in the spin-split bands due to asymmetric spin-flip.
机译:二维(2D)Ruddlesden?popper有机 - 无机卤化物钙酸盐,例如(2D) - 苯基铅碘化物(2d-Pp)具有层状结构,类似于多量子孔(MQW)。 2D-Pepi中的重原子有助于影响电子频带结构的大型旋转轨道耦合。在断开反转对称时,在电子频带中发生旋转分裂('Rashba Splitting')。我们已经使用圆形光敏效应(CPGE)研究了2D-PpI的单晶中的旋转分裂。我们确认在35±10?MEV的电子频带极值处的Rashba分裂的存在,并识别垂直于MQW平面的主要反转对称断裂方向。带隙上方的CPGE动作谱显示通过在动量空间中分离的激发光载体的超快弛豫产生的旋转偏振光。虽然具有低于间隙激发的螺旋依赖性光电流是由于电离的旋转激子的旋转电流效应,其中由于不对称的旋转翻转而在自旋分离带中发生自旋极化。

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