折射率
石墨烯
材料科学
光学
失真(音乐)
衍射
激光器
相(物质)
自相位调制
雷
调制(音乐)
相位畸变
自聚焦
相位调制
光电子学
非线性光学
激光束
纳米技术
化学
物理
有机化学
放大器
相位噪声
CMOS芯片
声学
作者
Gaozhong Wang,Saifeng Zhang,Fadhil A. Umran,Xin Cheng,Ningning Dong,Darragh Coghlan,Ya Cheng,Long Zhang,Werner J. Blau,Jun Wang
摘要
Spatial self-phase modulation (SSPM) was observed directly when a focused He-Ne laser beam at 633 nm went through liquid-phase-exfoliated graphene dispersions. The diffraction pattern of SSPM was found to be distorted rapidly right after the incident beam horizontally passing through the dispersions, while no distortion for the vertically incident geometry. We show that the distortion is originated mainly from the non-axis-symmetrical thermal convections of the graphene nanosheets induced by laser heating, and the relative change of nonlinear refractive index can be determined by the ratio of the distortion angle to the half-cone angle. Therefore, the effective nonlinear refractive index of graphene dispersions can be tuned by changing the incident intensity and the temperature of the dispersions.
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