根据洛伦兹电子论、朗伯定律和比尔定律,提出了一种用来描述溶液的浓度与其折射率线性关系的理论模型.实验测定了蔗糖和N aC l溶液,基于最小二乘法原理,根据实验数据得到各自的浓度与其折射率关系的实验模型,实验结果表明模型的计算结...根据洛伦兹电子论、朗伯定律和比尔定律,提出了一种用来描述溶液的浓度与其折射率线性关系的理论模型.实验测定了蔗糖和N aC l溶液,基于最小二乘法原理,根据实验数据得到各自的浓度与其折射率关系的实验模型,实验结果表明模型的计算结果与实际测量结果的误差小于2%.这种研究结果对利用光激发表面等离子共振技术和介质增强古斯-汉欣位移方法测量溶液的浓度具有参考意义.展开更多
The three-layer structure model of the fiber Bragg grating is proposed in this paper. And through experimental study and reasoning calculation to verify the three layer structure of the optical waveguide model, so the...The three-layer structure model of the fiber Bragg grating is proposed in this paper. And through experimental study and reasoning calculation to verify the three layer structure of the optical waveguide model, so the sensitivity characteristic of the Bragg wavelength to the refractive index of chemical solution is obtained. And the relationships between the concentration and the shift of Bragg wavelength of sucrose, ethanol, and Nacl solution are achieved. Finally the shifts of the Bragg wavelength with the external concentration are obtained by experiments. A kind of simple structure, small size, good stability, high sensitivity chemical concentration sensor is obtained.展开更多
文摘根据洛伦兹电子论、朗伯定律和比尔定律,提出了一种用来描述溶液的浓度与其折射率线性关系的理论模型.实验测定了蔗糖和N aC l溶液,基于最小二乘法原理,根据实验数据得到各自的浓度与其折射率关系的实验模型,实验结果表明模型的计算结果与实际测量结果的误差小于2%.这种研究结果对利用光激发表面等离子共振技术和介质增强古斯-汉欣位移方法测量溶液的浓度具有参考意义.
文摘The three-layer structure model of the fiber Bragg grating is proposed in this paper. And through experimental study and reasoning calculation to verify the three layer structure of the optical waveguide model, so the sensitivity characteristic of the Bragg wavelength to the refractive index of chemical solution is obtained. And the relationships between the concentration and the shift of Bragg wavelength of sucrose, ethanol, and Nacl solution are achieved. Finally the shifts of the Bragg wavelength with the external concentration are obtained by experiments. A kind of simple structure, small size, good stability, high sensitivity chemical concentration sensor is obtained.