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在所有维度上局域化的时空波包。

Space-time wave packets localized in all dimensions.

作者信息

Yessenov Murat, Free Justin, Chen Zhaozhong, Johnson Eric G, Lavery Martin P J, Alonso Miguel A, Abouraddy Ayman F

机构信息

CREOL, The College of Optics & Photonics, University of Central Florida, Orlando, FL, 32816, USA.

Micro-Photonics Laboratory, the Holcombe Department of Electrical and Computer Engineering, Clemson University, Clemson, SC, 29634, USA.

出版信息

Nat Commun. 2022 Aug 5;13(1):4573. doi: 10.1038/s41467-022-32240-0.

Abstract

Optical wave packets that are localized in space and time, but nevertheless overcome diffraction and travel rigidly in free space, are a long sought-after field structure with applications ranging from microscopy and remote sensing, to nonlinear and quantum optics. However, synthesizing such wave packets requires introducing non-differentiable angular dispersion with high spectral precision in two transverse dimensions, a capability that has eluded optics to date. Here, we describe an experimental strategy capable of sculpting the spatio-temporal spectrum of a generic pulsed beam by introducing arbitrary radial chirp via two-dimensional conformal coordinate transformations of the spectrally resolved field. This procedure yields propagation-invariant 'space-time' wave packets localized in all dimensions, with tunable group velocity in the range from 0.7c to 1.8c in free space, and endowed with prescribed orbital angular momentum. By providing unprecedented flexibility in sculpting the three-dimensional structure of pulsed optical fields, our experimental strategy promises to be a versatile platform for the emerging enterprise of space-time optics.

摘要

在空间和时间上局域化、但能克服衍射并在自由空间中刚性传播的光波包,是一种长期以来备受追捧的场结构,其应用范围涵盖从显微镜学和遥感到非线性光学和量子光学等领域。然而,合成这样的波包需要在两个横向维度上以高光谱精度引入不可微的角色散,而这一能力至今仍是光学领域所欠缺的。在此,我们描述了一种实验策略,该策略能够通过对光谱分辨场进行二维共形坐标变换来引入任意径向啁啾,从而塑造一般脉冲光束的时空光谱。这一过程产生了在所有维度上都局域化的传播不变“时空”波包,其在自由空间中的群速度可调范围为0.7c至1.8c,并具有规定的轨道角动量。通过在塑造脉冲光场的三维结构方面提供前所未有的灵活性,我们的实验策略有望成为时空光学这一新兴领域的通用平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c08b/9356057/28e81c98bda5/41467_2022_32240_Fig1_HTML.jpg

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