Ishaaya Amiel, Davidson Nir, Friesem Asher
Opt Express. 2005 Jun 27;13(13):4952-62. doi: 10.1364/opex.13.004952.
An intra-cavity phase element, combined with a passive Q-switch saturable absorber and a suitable intra-cavity aperture, can provide extremely high mode discrimination, so as to obtain laser operation with single, pure, very high order Laguerre-Gaussian mode. With a Nd:YAG laser setup, well controlled and extremely stable Q-switched operation in the degenerate Laguerre-Gaussian TEM04, TEM14, TEM24, TEM34, and TEM44 modes was obtained. The measured output energy per pulse for each of these modes was 5.2mJ, 7.5mJ, 10mJ, 12.5mJ, and 13.7mJ respectively, compared to 2.5mJ for the Gaussian mode without the phase element (more than a five fold increase in output energy). Correcting the phase for these modes, so that all transverse lobes have uniform phase, results in a very bright and narrow central lobe in the far field intensity distribution that can theoretically contain more than 90% of the output energy.
腔内相位元件与被动调Q饱和吸收体及合适的腔内光阑相结合,可实现极高的模式鉴别能力,从而获得单、纯、高阶拉盖尔 - 高斯模式的激光运转。利用Nd:YAG激光装置,在简并拉盖尔 - 高斯TEM04、TEM14、TEM24、TEM34和TEM44模式下实现了良好控制且极其稳定的调Q运转。这些模式下每个模式的测量单脉冲输出能量分别为5.2mJ、7.5mJ、10mJ、12.5mJ和13.7mJ,相比之下,无相位元件的高斯模式单脉冲输出能量为2.5mJ(输出能量增加了五倍多)。对这些模式的相位进行校正,使所有横向瓣具有均匀相位,会在远场强度分布中产生非常明亮且狭窄的中心瓣,理论上该中心瓣可包含超过90%的输出能量。