Institute for Colloidal Organization, Hatoyama, Uji, Kyoto, Japan.
Adv Colloid Interface Sci. 2011 Feb 17;162(1-2):80-6. doi: 10.1016/j.cis.2010.12.006. Epub 2011 Jan 12.
Many kinds of electro-optic effects of colloidal crystals are observed and discussed on the basis of the fundamental properties of colloidal crystals themselves. Several electro-optic effects of colloidal crystals have been found by the authors mainly by use of light-scattering, reflection- and transmitted-light intensity measurements in an electric field, (a) waveform deformation, (b) phase-shift effects, (c) second-order harmonics generation, (d) self-resonance frequency generation (characteristic frequency and harmonic oscillation), (e) peak wavelength-shift effects and (f) waveform transformation. These electro-optic responses are explained successfully by the resonance-, visco-elastic- and structural relaxation-parameters of colloidal crystals.
基于胶体晶体本身的基本性质,观察和讨论了胶体晶体的多种电光效应。作者主要通过在电场中测量光散射、反射和透射光强度,发现了胶体晶体的几种电光效应:(a) 波形变形,(b) 相移效应,(c) 二次谐波产生,(d) 自共振频率产生(特征频率和谐波振荡),(e) 峰值波长移动效应和(f) 波形变换。这些电光响应可以通过胶体晶体的共振、粘弹性和结构弛豫参数来成功解释。