Hwangbo Kyle, Zhang Qi, Jiang Qianni, Wang Yong, Fonseca Jordan, Wang Chong, Diederich Geoffrey M, Gamelin Daniel R, Xiao Di, Chu Jiun-Haw, Yao Wang, Xu Xiaodong
Department of Physics, University of Washington, Seattle, WA, USA.
School of Physics, Nankai University, Tianjin, China.
Nat Nanotechnol. 2021 Jun;16(6):655-660. doi: 10.1038/s41565-021-00873-9. Epub 2021 Mar 11.
Two-dimensional (2D) semiconductors enable the investigation of light-matter interactions in low dimensions. Yet, the study of elementary photoexcitations in 2D semiconductors with intrinsic magnetic order remains a challenge due to the lack of suitable materials. Here, we report the observation of excitons coupled to zigzag antiferromagnetic order in the layered antiferromagnetic insulator NiPS. The exciton exhibits a narrow photoluminescence linewidth of roughly 350 μeV with near-unity linear polarization. When we reduce the sample thickness from five to two layers, the photoluminescence is suppressed and eventually vanishes for the monolayer. This suppression is consistent with the calculated bandgap of NiPS, which is highly indirect for both the bilayer and the monolayer. Furthermore, we observe strong linear dichroism (LD) over a broad spectral range. The optical anisotropy axes of LD and of photoluminescence are locked to the zigzag direction. Furthermore, their temperature dependence is reminiscent of the in-plane magnetic susceptibility anisotropy. Hence, our results indicate that LD and photoluminescence could probe the symmetry breaking magnetic order parameter of 2D magnetic materials. In addition, we observe over ten exciton-A-phonon bound states on the high-energy side of the exciton resonance, which we interpret as signs of a strong modulation of the ligand-to-metal charge-transfer energy by electron-lattice interactions. Our work establishes NiPS as a 2D platform for exploring magneto-exciton physics with strong correlations.
二维(2D)半导体能够在低维度下研究光与物质的相互作用。然而,由于缺乏合适的材料,对具有本征磁序的二维半导体中的基本光激发进行研究仍然是一项挑战。在此,我们报告了在层状反铁磁绝缘体NiPS中观察到与锯齿形反铁磁序耦合的激子。该激子表现出约350 μeV的窄光致发光线宽以及接近单位的线性极化。当我们将样品厚度从五层减小到两层时,光致发光受到抑制,对于单层样品最终消失。这种抑制与NiPS的计算带隙一致,对于双层和单层样品,该带隙都是高度间接的。此外,我们在宽光谱范围内观察到强线性二向色性(LD)。LD和光致发光的光学各向异性轴都锁定在锯齿形方向。此外,它们的温度依赖性让人联想到面内磁化率各向异性。因此,我们的结果表明LD和光致发光可以探测二维磁性材料的对称性破缺磁序参数。此外,我们在激子共振的高能侧观察到超过十个激子 - A - 声子束缚态,我们将其解释为电子 - 晶格相互作用对配体到金属电荷转移能量进行强调制的迹象。我们的工作将NiPS确立为一个用于探索具有强关联的磁激子物理的二维平台。