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Lasers with Intra-Cavity Phase Elements

机译:具有腔内相位元素的激光器

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Conventional laser resonators yield multimodal output, especially at high powers and short cavity lengths. Since high-order modes exhibit large divergence, it is desirable to suppress them to improve laser quality. Traditionally, such modal discriminations can be achieved by simple apertures that provide absorptive loss for large diameter modes, while allowing the lower orders, such as the fundamental Gaussian, to pass through. However, modal discrimination may not be sufficient for short-cavity lasers, resulting in multimodal operation as well as power loss and overheating in the absorptive part of the aperture. In research to improve laser mode control with minimal energy loss, systematic experiments have been executed using phase-only elements. These were composed of an intra-cavity step function and a diffractive out-coupler made of a computer-generated hologram. The platform was a 15-cm long solid-state laser that employs a neodymium-doped yttrium orthovanadate crystal rod, producing 1064 nm multimodal laser output. The intra-cavity phase elements (PEs) were shown to be highly effective in obtaining beams with reduced M-squared values and increased output powers, yielding improved values of radiance. The utilization of more sophisticated diffractive elements is promising for more difficult laser systems.
机译:传统的激光谐振器产生多峰输出,尤其是在高功率和短腔长。由于高阶模式表现出大的发散,因此希望抑制它们以提高激光质量。传统上,这种模态鉴别可以通过为大直径模式提供吸收损失的简单孔来实现,同时允许较低的订单,例如基本高斯的较低的通过。然而,模态辨别可能不足以足够的短腔激光器,导致多式联运操作以及孔的吸收部分中的功率损耗和过热。在改进激光模式控制的研究中,使用相位元素执行系统实验。这些由腔内的跨度阶跃函数和由计算机产生全息图制成的衍射外耦合器组成。该平台是一种15厘米长的固态激光器,采用钕掺杂的钇脱钒酸盐晶棒,产生1064nm多峰激光输出。腔内相位元件(PE)被示出在获得具有降低的M方值和增加的输出功率的光束方面非常有效,从而提高了辐射值。利用更复杂的衍射元件是对更困难的激光系统有望。

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