论文标题

在APBBR3(A = CS,CH3NH3)的动态间接间隙中,表面重建和光子回收的静态RASHBA效应

Static Rashba Effect by Surface Reconstruction and Photon Recycling in the Dynamic Indirect Gap of APbBr3 (A = Cs, CH3NH3) Single Crystals

论文作者

Ryu, Hongsun, Park, Dae Young, McCall, K., Byun, Hye Ryung, Lee, Yongjun, Kim, Tae Jung, Jeong, Mun Seok, Kim, Jeongyong, Kanatzidis, Mercouri G., Jang, Joon I.

论文摘要

最近,由于Rashba效应,卤化物钙钛矿从有效的旋转术的角度引起了极大的关注。这种效应是由于在非中心对称环境下强烈的自旋轨道耦合而发生的,这可能是动态和/或静态的。然而,由于卤化物钙钛矿通常结晶成中心对称结构,因此存在激烈的争论。为了澄清这个问题,我们通过采用温度依赖性的光致发光兴奋谱来检查全无机CSPBBR3和有机无机CH3NH3PBBR3(MAPBBR3)钙钛矿单晶的动态和静态效应。钙钛矿单晶通过间接RASHBA间隙中的光子回收来表达动态效应,从而导致光致发光中的双峰。但是,在低温下(<50 K),CSPBBR3的效果消失,伴随着晶体的引人注目的颜色变化,大概是由于与球形CS cation的热运动相关的反转对称性破坏的较低自由度,而MapBBr3中的极性CS cation则产生。我们还表明,静态RASHBA效应仅发生在90 K以下的MAPBBR3中,这是由于通过Ma-cation排序进行的表面重建而导致的,这很可能从晶体表面到内部延伸到几层。我们进一步证明,在用甲基丙烯酸甲酯(PMMA)涂层的表面处理后,可以完全抑制这种静态RASHBA效应。我们认为,我们的结果为Halide Perovskites的Rashba效应提供了基本原理。

Recently, halide perovskites have gained significant attention from the perspective of efficient spintronics owing to Rashba effect. This effect occurs as a consequence of strong spin-orbit coupling under noncentrosymmetric environment, which can be dynamic and/or static. However, there exist intense debates on the origin of broken inversion symmetry since the halide perovskites typically crystallize into a centrosymmetric structure. In order to clarify the issue, we examine both dynamic and static effects in the all-inorganic CsPbBr3 and organic-inorganic CH3NH3PbBr3 (MAPbBr3) perovskite single crystals by employing temperature- and polarization-dependent photoluminescence excitation spectroscopy. The perovskite single crystals manifest the dynamic effect by photon recycling in the indirect Rashba gap, causing dual peaks in the photoluminescence. But the effect vanishes in CsPbBr3 at low temperatures (< 50 K), accompanied by a striking color change of the crystal, arising presumably from lower degrees of freedom for inversion symmetry breaking associated with the thermal motion of the spherical Cs cation, compared with the polar MA cation in MAPbBr3. We also show that static Rashba effect occurs only in MAPbBr3 below 90 K due to surface reconstruction via MA-cation ordering, which likely extends across a few layers from the crystal surface to the interior. We further demonstrate that this static Rashba effect can be completely suppressed upon surface treatment with poly methyl methacrylate (PMMA) coating. We believe that our results provide a rationale for the Rashba effects in halide perovskites.

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