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用于选择径向或方位角偏振激光模式的双折射诱导双聚焦。

Birefringence-induced bifocusing for selection of radially or azimuthally polarized laser modes.

作者信息

Machavariani Galina, Lumer Yaakov, Moshe Inon, Meir Avi, Jackel Steven, Davidson Nir

机构信息

Soreq Nuclear Research Center, Electro-Optics Division, Yavne 81800, Israel.

出版信息

Appl Opt. 2007 Jun 1;46(16):3304-10. doi: 10.1364/ao.46.003304.

Abstract

We develop a round-trip matrix diagonalization method for quantitative description of selection of radially or azimuthally polarized beams by birefringence-induced bifocusing in a simple laser resonator. We employ different focusing between radially and tangentially polarized light in thermally stressed laser rods to obtain low-loss stable oscillation in a radially polarized Laguerre-Gaussian, LG(0,1), mode. We derive a free-space propagator for the radially and azimuthally polarized LG(0,1) modes and explain basic principles of mode selection by use of a round-trip matrix diagonalization method. Within this method we calculate round-trip diffraction losses and intensity distributions for the lowest-loss transverse modes. We show that, for the considered laser configuration, the round-trip loss obtained for the radially polarized LG(0,1)* mode is significantly smaller than that of the azimuthally polarized mode. Our experimental results, obtained with a diode side-pumped Nd:YAG rod in a flat-convex resonator, confirm the theoretical predictions. We achieved a pure radially polarized LG(0,1)* beam with M(2)=2.5 and tens of watts of output power.

摘要

我们开发了一种往返矩阵对角化方法,用于定量描述在简单激光谐振器中通过双折射诱导双聚焦对径向或方位角偏振光束的选择。我们利用热应力激光棒中径向和切向偏振光之间的不同聚焦,以在径向偏振的拉盖尔 - 高斯(LG(0,1)*)模式下获得低损耗稳定振荡。我们推导了径向和方位角偏振LG(0,1)*模式的自由空间传播子,并通过往返矩阵对角化方法解释了模式选择的基本原理。在该方法中,我们计算了最低损耗横向模式的往返衍射损耗和强度分布。我们表明,对于所考虑的激光配置,径向偏振LG(0,1)*模式获得的往返损耗明显小于方位角偏振模式。我们在平凸谐振器中使用二极管侧面泵浦的Nd:YAG棒获得的实验结果证实了理论预测。我们实现了具有M(2)=2.5和数十瓦输出功率的纯径向偏振LG(0,1)*光束。

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