钙钛矿(结构)
超短脉冲
材料科学
绿光激光器
订单(交换)
激光器
电荷(物理)
涡流
光学
光电子学
凝聚态物理
物理
量子力学
结晶学
热力学
化学
财务
经济
作者
Zehua Liu,Jingzhen Li,Ling Zhang,Yu Zhang,Song Yang,Zhenxu Bai,Yulei Wang,Zhiwei Lü,Dapeng Yan,Yaoyao Qi,Xingwang Zhang
标识
DOI:10.1002/adom.202401165
摘要
Abstract Ultrafast vortex beams have significant scientific and practical value because of their unique phase properties in both the longitudinal and transverse modes, enabling multi‐dimensional quantum control of light fields. Directly generating watt‐level ultrafast vortex beams with large angular momentum has remained a major challenge due to the limitations of mode‐locked materials and existing spatiotemporal mode‐locking generation methods. In this study, quasi‐2D PEA 2 (CsPbBr 3 ) n‐1 PbBr 4 perovskite films are prepared by an anti‐solvent method and employed for the first time in a mode‐locked resonator operating in free space. Utilizing the angle‐based non‐collinear pumping and frequency doubling techniques, the second‐order ultrafast green vortex beams with a power of up to 1.05 W and a duration of 373 ps are generated. Experimental findings demonstrate the strong nonlinear saturable absorption properties of quasi‐2D PEA 2 (CsPbBr 3 ) n‐1 PbBr 4 perovskite films at high power levels, highlighting their considerable potential in ultrafast laser technology and nonlinear optics.
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