Cotteverte J C, Bretenaker F, Floch A L
Appl Opt. 1991 Jan 20;30(3):305-11. doi: 10.1364/AO.30.000305.
The Jones matrix of a tilted plate is theoretically and experimentally described, taking into account the contribution of the successive internal reflections of the incident fundamental TEM(00) Gaussian beam. This induces variations of up to 10% of the transmission coefficients of the Jones matrix with angle of incidence. The consequence of the influences on the walkoff and the internal interference effects of the characteristics ofthe plate and of the incident beam, especially its mode size and its radius of curvature, leads to important different variations of the Jones matrix. of such a plate however, we show that for a given Gaussian beam the Jones matrix of the plate does not depend on its position along the beam propagation axis, in spite of the variations of mode size and radius of curvature whose effects compensate mutually. The Jones matrix of such a plate used in a laser cavity containing a diffracting aperture is also investigated. In every case, good agreement is observed between theory and experiment.
考虑到入射基模TEM(00)高斯光束连续内部反射的贡献,从理论和实验两方面描述了倾斜平板的琼斯矩阵。这会导致琼斯矩阵的透射系数随入射角变化高达10%。平板特性和入射光束特性(尤其是其模尺寸和曲率半径)对离散和内部干涉效应的影响,会导致这种平板的琼斯矩阵出现重要的不同变化。然而,我们表明,对于给定的高斯光束,尽管模尺寸和曲率半径会变化,但其影响相互抵消,平板的琼斯矩阵并不取决于其沿光束传播轴的位置。还研究了在包含衍射孔径的激光腔中使用的这种平板的琼斯矩阵。在每种情况下,理论和实验都观察到了良好的一致性。