Liu Qiang, Gross S, Dekker P, Withford M J, Steel M J
Opt Express. 2014 Nov 17;22(23):28037-51. doi: 10.1364/OE.22.028037.
We consider the process of Faraday rotation in femtosecond laser direct-write waveguides. The birefringence commonly associated with such waveguides may be expected to impact the observable Faraday rotation. Here, we theoretically calculate and experimentally verify the competition between Faraday rotation and birefringence in two waveguides created by laser writing in a commercial magneto-optic glass. The magnetic field applied to induce Faraday rotation is nonuniform, and as a result, we find that the two effects can be clearly separated and used to accurately determine even weak birefringence. The birefringence in the waveguides was determined to be on the scale of Δn = 10(-6) to 10(-5). The reduction in Faraday rotation caused by birefringence of order Δn = 10(-6) was moderate and we obtained approximately 9° rotation in an 11 mm waveguide. In contrast, for birefringence of order 10(-5), a significant reduction in the polarization azimuth change was found and only 6° rotation was observed.
我们研究了飞秒激光直写波导中的法拉第旋转过程。通常与此类波导相关的双折射可能会影响可观测到的法拉第旋转。在此,我们通过理论计算并实验验证了在商用磁光玻璃中通过激光写入创建的两个波导中法拉第旋转与双折射之间的竞争关系。用于诱导法拉第旋转的磁场是不均匀的,因此,我们发现这两种效应可以清晰地分离,并用于精确测定甚至是微弱的双折射。确定波导中的双折射在Δn = 10^(-6) 到10^(-5) 的量级。由量级为Δn = 10^(-6) 的双折射引起的法拉第旋转减小较为适度,在一个11毫米长的波导中我们获得了约9° 的旋转。相比之下,对于量级为10^(-5) 的双折射,发现偏振方位角变化显著减小,仅观测到6° 的旋转。