标题: | 没水式超音波对于向列型液晶声光效应的影响 Influence of Immersion Ultrasound on Acousto-optic Response of Nematic Liquid Crystals |
作者: | 严承侯 Cheng-Hou Yen 尹庆中 Ching-Chung Yin 机械工程学系 |
关键字: | 向列型液晶;分子重排;声导波;反射系数;声场能量分布;nematic liquid crystals;realignment of molecules;acoustic guided waves;reflection coefficient;acoustic energy distribution |
公开日期: | 2007 |
摘要: | 向列型液晶为单光轴晶体,具有双折射效应的光学性质,除了电场、磁场之外,还可以藉声场改变液晶分子排列的平衡状态。本研究将液晶盒没入水槽内,探讨向列型液晶受到斜束超音波照射产生的声光效应。夹于两片玻璃之间的液晶层假设为具有单一黏滞系数的牛顿流体,并以等向性固体近似。数值分析系以全域矩阵法推导液晶盒的反射系数与声场能量分布,解释声导波操控不同尺寸液晶盒内向列型液晶分子排列的能力。没水式超音波以不同入射角照射液晶盒,在特定频率下于试片中产生特定模态的声导波,实验结果显示液晶盒受到多重模态声导波的影响,液晶分子会发生重排。数值模拟显示液晶盒中央的液晶层声场能量主要源于对称声导波,对称声导波扮演重排液晶分子的重要推手角色。低频声导波对于较薄液晶盒之液晶分子重排的影响比试片较厚者大。在目前的没水式超音波实验架构下,不易观察出高频声导波改变液晶分子排列的效果。 Nematic liquid crystals (NLC) are optically uniaxial, birefringent materials. Besides electric and magnetic fields, the orientations could be altered from the equilibrium states by acoustic fields. This thesis investigates the acousto-optic effect of liquid crystal cells (LLC) which are immersed in water tank and insonified by obliquely incident acoustic beam. The liquid crystal material sandwiched between two glass plates is regarded as a Newtonian fluid and modeled to be an isotropic hypothetical solid with a single viscosity. Numerical analysis based on the global matrix formulation is performed to determine the reflection coefficients and acoustic energy distribution in the LLC. Experimental results show that the realignment of NLC molecules is due to multi-modal guided acoustic waves excited in LLC by changing the angle of incidence and driving frequency. Numerical simulations indicate that most acoustic energy in the middle liquid layer is contributed by the symmetric guided modes. The symmetric modes play significant role on the acoustic realignment of NLC. In addition, low frequency acoustic guided waves have stronger influence on reorientation of the NLC molecules in a thin cell than that in a thick one. Unfortunately, it is not distinguishable the effect of high frequency guided waves on acoustic realignment of the NLC molecules under the present experimental setup of immersion ultrasound. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009514586 http://hdl.handle.net/11536/38578 |
显示于类别: | Thesis |
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