论文标题

从单模的单模单模式从单片微腔中的胶体量子孔的单模单层激光

Single-mode lasing from a single 7 nm thick monolayer of colloidal quantum wells in a monolithic microcavity

论文作者

Foroutan-Barenji, Sina, Erdem, Onur, Delikanli, Savas, Yagci, Huseyin Bilge, Gheshlaghi, Negar, Altintas, Yemliha, Demir, Hilmi Volkan

论文摘要

In this work, we report the first account of monolithically-fabricated vertical cavity surface emitting lasers (VCSELs) of densely-packed, orientation-controlled, atomically flat colloidal quantum wells (CQWs) using a self-assembly method and demonstrate single-mode lasing from a record thin colloidal gain medium with a film thickness of 7 nm under femtosecond optical excitation.我们使用专门设计的CQWS来证明这些混合动力CQW-VCSEL仅由单个CQWS单层组成,并通过彻底建模和实现由分布式Bragg反射器组成的垂直腔,从而实现了这些稀薄增益介质的激光,并通过额外的介电量层进行模式调节。在完整的电磁计算的帮助下,确保了腔模式与CQW膜的准确光谱和空间比对。在克服较厚胶体膜中有限的电导率有限的长时间的问题时,这种超薄胶体增益培养基可以帮助实现完全电动的胶体激光器。

In this work, we report the first account of monolithically-fabricated vertical cavity surface emitting lasers (VCSELs) of densely-packed, orientation-controlled, atomically flat colloidal quantum wells (CQWs) using a self-assembly method and demonstrate single-mode lasing from a record thin colloidal gain medium with a film thickness of 7 nm under femtosecond optical excitation. We used specially engineered CQWs to demonstrate these hybrid CQW-VCSELs consisting of only a few layers to a single monolayer of CQWs and achieved the lasing from these thin gain media by thoroughly modeling and implementing a vertical cavity consisting of distributed Bragg reflectors with an additional dielectric layer for mode tuning. Accurate spectral and spatial alignment of the cavity mode with the CQW films was secured with the help of full electromagnetic computations. While overcoming the long-pending problem of limited electrical conductivity in thicker colloidal films, such ultra-thin colloidal gain media can help enabling fully electrically-driven colloidal lasers.

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