论文标题

在离子掺杂的单一微晶中揭示的光学极化与晶格对称性之间的确定性关系

Deterministic relation between optical polarization and lattice symmetry revealed in ion-doped single microcrystals

论文作者

Li, Peng, Guo, Yaxin, Liu, Ao, Yue, Xin, Yuan, Taoli, Zhu, Jingping, Zhang, Yanpeng, Li, Feng

论文摘要

稀土离子掺杂的晶体对于微敏感和量子信息具有重要意义,而晶体中的离子则以自发性部分极化发出光,尽管据信这是晶体晶格结构,但仍缺乏可以用定量准确性测试的确定性解释的晶体晶格结构。我们报告的实验证据表明,掺杂离子发出的光的极化程度与晶格对称性之间的物理关系是通过前所未有的精确度证明晶格恒定比/a直接量化电气和磁性磁极的宏观有效极角,从本质上决定了固定偏光程度。基于这一发现,我们进一步提出了一种纯粹的光学技术,以使用极化分辨的微光谱镜检查杆形单一微晶的三维方向。我们的结果揭示了离子掺杂晶体中光的物理起源,并通过晶体学开辟了朝着按需极化控制的道路,并为动态系统中的基于极化的微观微观传感提供了多功能平台。

Rare-earth ions doped crystals are of great significance for micro-sensing and quantum information, whilst the ions in the crystals emit light with spontaneous partial polarization, which is, though believed to be originated from the crystal lattice structure, still lacking a deterministic explanation that can be tested with quantitative accuracy. We report the experimental evidence showing the profound physical relation between the polarization degree of light emitted by the doped ion and the lattice symmetry, by demonstrating, with unprecedented precision, that the lattice constant ratio c/a directly quantifies the macroscopic effective polar angle of the electric and magnetic dipoles, which essentially determines the linear polarization degree of the emission. Based on this discovery, we further propose a pure optical technology to identify the three-dimensional orientation of a rod-shaped single microcrystal using the polarization-resolved micro-spectroscopy. Our results, revealing the physical origin of light polarization in ion-doped crystals, open the way towards on-demand polarization control with crystallography, and provide a versatile platform for polarization-based microscale sensing in dynamical systems.

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