▲ 作者:SHENYANG HUANG, BOYANG YU, YIXUAN MA, CHENGHAO PAN, JUNWEI MA, YUXUAN ZHOU, YAOZHENGHANG MA, KE YANG, HUA WU, AND HUGEN YAN
▲ 链接:
https://www.science.org/doi/10.1126/science.adq2977
▲ 摘要:
明亮的偶极激子含有电偶极子,具有较高的振子强度,是研究量子现象的理想平台。它们通常依靠两个量子阱或两层之间的载流子隧道与非偶极激子杂化以获得振子强度。研究者发现了一种新型的明亮红外偶极激子,通过堆叠90°扭曲的黑磷结构。
这些激子固有的重建带结构表现出高振子强度。最重要的是,它们继承了黑磷线性极化,这使得光偏振可以用来选择偶极子方向。此外,偶极矩和共振能量可以通过黑磷的厚度进行广泛的调谐。研究结果为探索可调谐相关偶极激子提供了一个有用的平台。
▲ Abstract:
Bright dipolar excitons, which contain electrical dipoles and have high oscillator strength, are an ideal platform for studying correlated quantum phenomena. They usually rely on carrier tunneling between two quantum wells or two layers to hybridize with nondipolar excitons to gain oscillator strength. In this work, we uncovered a new type of bright infrared dipolar exciton by stacking 90°-twisted black phosphorus (BP) structures. These excitons, inherent to the reconstructed band structure, exhibit high oscillator strength. Most importantly, they inherit the linear polarization from BP, which allows light polarization to be used to select the dipole direction. Moreover, the dipole moment and resonance energy can be widely tuned by the thickness of the BP. Our results demonstrate a useful platform for exploring tunable correlated dipolar excitons.