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Spatial control of extreme ultraviolet light with opto-optical phase modulation

机译:具有光学相位调制的极端紫外光的空间控制

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Extreme ultraviolet (XUV) light is notoriously difficult to control due to its strong interaction cross section with media. We demonstrate a method to overcome this problem by using opto-optical modulation guided by a geometrical model to shape XUV light. A bell-shaped infrared light pulse is shown to imprint a trace of its intensity profile onto the XUV light in the far-field, such that a change in the intensity profile of the infrared pulse leads to a change in the shape of the far-field XUV light. The geometrical model assists the user in predicting the effect of a specific intensity profile of the infrared pulse, thus enabling a deterministic process. (C) 2021 Optical Society of America
机译:众所周知,极紫外(XUV)光由于其与介质的强相互作用截面而难以控制。我们展示了一种克服这一问题的方法,即使用几何模型引导的光学调制来塑造XUV光。钟形红外光脉冲显示出在远场中的XUV光上压印其强度分布的痕迹,使得红外光脉冲的强度分布的变化导致远场XUV光的形状的变化。几何模型帮助用户预测红外脉冲的特定强度分布的影响,从而实现确定性过程。(2021)美国光学学会

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