激光阈值
掺杂剂
材料科学
人口倒转
兴奋剂
光电子学
激光器
铜
自发辐射
纳米材料
超辐射
人口
纳米技术
光学
波长
物理
冶金
人口学
社会学
作者
Junhong Yu,Manoj Sharma,Mingjie Li,Savas Delikanli,Ashma Sharma,Muhammad Taimoor,Yemliha Altıntas,James R. McBride,Thomas Kusserow,Tze‐Chien Sum,Hilmi Volkan Demir,Cuong Dang
标识
DOI:10.1002/lpor.202100034
摘要
Abstract Transition metal doped colloidal nanomaterials (TMDCNMs) have recently attracted attention as promising nano‐emitters due to dopant‐induced properties. However, despite ample investigations on the steady‐state and dynamic spectroscopy of TMDCNMs, experimental understandings of their performance in stimulated emission regimes are still elusive. Here, the optical gain properties of copper‐doped CdSe colloidal quantum wells (CQWs) are systemically studied with a wide range of dopant concentration for the first time. This work demonstrates that the amplified spontaneous emission (ASE) threshold in copper‐doped CQWs is a competing result between the biexciton formation, which is preferred to achieve population inversion, and the hole trapping which stymies the population inversion. An optimum amount of copper dopants enables the lowest ASE threshold of ≈7 µJ cm −2 , about 8‐fold reduction from that in undoped CQWs (≈58 µJ cm −2 ) under sub‐nanosecond pulse excitation. Finally, a copper‐doped CQW film embedded in a vertical cavity surface‐emitting laser (VCSEL) structure yields an ultralow lasing threshold of 4.1 µJ cm −2 . Exploiting optical gain from TMDCNMs may help to further boost the performance of colloidal‐based lasers.
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