Institute for Lasers, Photonics and Biophotonics, State University of New York at Buffalo, Buffalo, New York 14260-3000, USA.
Opt Lett. 2011 Nov 15;36(22):4431-3. doi: 10.1364/OL.36.004431.
A chemically modified poly(fluorene-alt-benzothiadiazole) (PFBT) polymer film is reported to exhibit high two-photon absorbing capability and chemical/physical stability upon the action of high-power laser pulses of ~780 nm wavelength and ~160 fs duration. A nonlinear transmission measurement is conducted by varying the input intensity from ~20 to ~600 GW/cm2, the corresponding nonlinear transmission of a ~70 μm thick film is reduced from ~0.8 to 0.18, indicating a superior optical limiting behavior. In the meantime, intensity fluctuation of laser pulses can be significantly reduced after passing through the same film sample. Based on the intensity-dependent nonlinear attenuation mechanism, a straightforward optical reshaping effect on spatio-temporal profiles of the laser pulses has also been demonstrated.
据报道,一种化学修饰的聚(芴-alt-苯并噻二唑)(PFBT)聚合物薄膜在 ~780nm 波长和 ~160fs 持续时间的高功率激光脉冲作用下表现出高双光子吸收能力和化学/物理稳定性。通过从 ~20 到 ~600GW/cm2 改变输入强度来进行非线性透射测量,对应于 ~70μm 厚的薄膜的非线性透射从 ~0.8 降低到 0.18,表明具有优异的光限制行为。同时,激光脉冲的强度波动在经过相同的薄膜样品后可以显著降低。基于强度相关的非线性衰减机制,还证明了对激光脉冲的时空分布的直接光整形效果。