Soh Daniel Beom Soo, Nilsson Johan, Baek Seungin, Codemard Christophe, Jeong Yoonchan, Philippov Valery
Optoelectronics Research Centre, University of Southampton, Southampton, SO17 1BJ, UK.
J Opt Soc Am A Opt Image Sci Vis. 2004 Jul;21(7):1241-50. doi: 10.1364/josaa.21.001241.
We calculate the modal power distribution of a randomly and linearly polarized (LP) multimode beam inside a cylindrical fiber core from knowledge of spatial-intensity profiles of a beam emitted from the fiber. We provide an exact analysis with rigorous proofs that forms the basis for our calculations. The beam from the fiber end is collimated by a spherical lens with a specific focal length. The original LP-mode basis is transformed by the spherical lens and forms another orthogonal basis that describes the free-space beam. By using this basis, we calculate the modal power distribution from the mutual-intensity profile. This is acquired by adopting a well-known mutual-intensity-profile-retrieving technique based on measurements of the intensity patterns several times after two orthogonal cylindrical lenses with varying separation. The feasibility of our decomposition algorithm is demonstrated with simulations.
我们根据光纤出射光束的空间强度分布信息,计算圆柱形光纤纤芯内随机线性偏振(LP)多模光束的模式功率分布。我们提供了精确的分析并给出了严格的证明,这些构成了我们计算的基础。光纤末端的光束由具有特定焦距的球面透镜准直。原始的LP模式基由球面透镜变换,形成另一个描述自由空间光束的正交基。通过使用这个基,我们从互强度分布计算模式功率分布。互强度分布是通过采用一种著名的互强度分布恢复技术获得的,该技术基于在两个具有不同间距的正交柱面透镜之后多次测量强度图案。我们通过模拟证明了分解算法的可行性。