Yang Pei, Liu Liying, Xu Lei
The State Key Lab for Advanced Photonic Materials and Devices, Department of Optical Science and Engineering, School of Information Science and Engineering, Fudan University, Shanghai 200433, People's Republic of China.
J Chem Phys. 2008 Feb 28;128(8):084710. doi: 10.1063/1.2834200.
Transient evolution of light-induced molecular reorientation both in 1-amino-anthraquinone (1AAQ) dye and azobenzene doped isotropic liquid crystals (LCs) were studied by time-resolved optically heterodyned optical Kerr effect method. The results give clear direct experimental proof that under short pulse (30 ps) excitation, LC molecules orientate toward the excitation light polarization direction in the 1AAQ/LC system. However, LC molecular orientation becomes orthogonal to the light polarization in azobenzene/LC system. Time-resolved excited-state absorption of 1AAQ and wavelength dependent excited-state absorption of azobenzene were also observed and their contributions to the early dynamics of the third order optical responses of the two systems were confirmed. A simplified two-level mean-field theory was derived to reveal the intensity dependence of orientation enhancement factor in azobenzene/LC system considering the photoisomerization process.
采用时间分辨光学外差光学克尔效应方法研究了1-氨基蒽醌(1AAQ)染料和偶氮苯掺杂各向同性液晶(LCs)中光致分子重取向的瞬态演化。结果给出了明确的直接实验证据,即在短脉冲(30 ps)激发下,1AAQ/LC体系中的液晶分子沿激发光偏振方向取向。然而,在偶氮苯/LC体系中,液晶分子取向与光偏振方向正交。还观察到了1AAQ的时间分辨激发态吸收和偶氮苯的波长依赖激发态吸收,并证实了它们对两个体系三阶光学响应早期动力学的贡献。考虑到光异构化过程,推导了一个简化的二能级平均场理论来揭示偶氮苯/LC体系中取向增强因子的强度依赖性。