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Tunable orbital angular momentum in high-harmonic generation

机译:高谐波产生中的可调谐轨道角动量

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摘要

Optical vortices are currently one of the most intensively studied topics in optics. These light beams, which carry orbital angular momentum (OAM), have been successfully utilized in the visible and infrared in a wide variety of applications. Moving to shorter wavelengths may open up completely new research directions in the areas of optical physics and material characterization. Here, we report on the generation of extreme-ultraviolet optical vortices with femtosecond duration carrying a controllable amount of OAM. From a basic physics viewpoint, our results help to resolve key questions such as the conservation of angular momentum in highly nonlinear light–matter interactions, and the disentanglement and independent control of the intrinsic and extrinsic components of the photon's angular momentum at short-wavelengths. The methods developed here will allow testing some of the recently proposed concepts such as OAM-induced dichroism, magnetic switching in organic molecules and violation of dipolar selection rules in atoms.
机译:光学涡旋目前是光学领域中研究最深入的主题之一。这些带有轨道角动量(OAM)的光束已在各种应用中成功地用于可见光和红外光。转向更短的波长可能会在光学物理学和材料表征领域开辟全新的研究方向。在这里,我们报告飞秒持续时间带有可控OAM量的极紫外光学涡流的产生。从基本的物理学观点来看,我们的结果有助于解决关键问题,例如在高度非线性的光-质相互作用中保持角动量,以及在短波长处对光子角动量的本征和非本征分量进行解缠和独立控制。此处开发的方法将允许测试一些最近提出的概念,例如OAM诱导的二色性,有机分子中的磁性转换以及原子中违反偶极选择规则。

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