Hurand Simon, Chauny Lucam-A, El-Rabii Hazem, Joshi Sachin, Yalin Azer P
Department of Mechanical Engineering, Colorado State University, Fort Collins, Colorado, 80523 USA.
Appl Opt. 2011 Feb 1;50(4):492-9. doi: 10.1364/AO.50.000492.
Propagation and mode coupling within relatively short (∼1-10 m) large core, nominally multimode, fibers are of interest in a number of applications. In this research, we have studied the output beam quality and mode coupling in various fibers with core diameters of 100-400 μm and lengths of 2 m. Output beam quality (M2) and mode-coupling coefficients (D) have been studied for different clad dimensions, numerical apertures, and wavelengths. The mode-coupling coefficients have been determined based on modal power diffusion considerations. The results show that D scales approximately as the inverse square of the clad dimension and inverse square root of the wavelength. Output from a 2 m length fiber of 100 μm core and 660 μm clad fiber is close to single mode (M2=1.6), while output from a 200 μm core and 745 μm clad fiber also has high beam quality.
在许多应用中,相对较短(约1 - 10米)的大芯径、标称多模光纤中的传播和模式耦合备受关注。在本研究中,我们研究了芯径为100 - 400μm、长度为2米的各种光纤的输出光束质量和模式耦合。针对不同的包层尺寸、数值孔径和波长,研究了输出光束质量(M²)和模式耦合系数(D)。基于模式功率扩散的考虑确定了模式耦合系数。结果表明,D大致与包层尺寸的平方成反比,与波长的平方根成反比。100μm芯径和660μm包层的2米长光纤的输出接近单模(M² = 1.6),而200μm芯径和745μm包层光纤的输出也具有高光束质量。