Synthesis of near-diffraction-free orbital-angular-momentum space-time wave packets having a controllable group velocity using a frequency comb

Author:

Pang Kai1ORCID,Zou Kaiheng1,Song Hao1ORCID,Karpov Maxim2ORCID,Yessenov Murat3ORCID,Zhao Zhe1ORCID,Minoofar Amir1ORCID,Zhang Runzhou1ORCID,Song Haoqian1ORCID,Zhou Huibin1,Su Xinzhou1ORCID,Hu Nanzhe1,Kippenberg Tobias J.2,Abouraddy Ayman F.3ORCID,Tur Moshe4,Willner Alan E.1

Affiliation:

1. University of Southern California

2. École Polytechnique Fédérale de Lausanne (EPFL)

3. University of Central Florida

4. Tel Aviv University

Abstract

Novel forms of light beams carrying orbital angular momentum (OAM) have recently gained interest, especially due to some of their intriguing propagation features. Here, we experimentally demonstrate the generation of near-diffraction-free two-dimensional (2D) space-time (ST) OAM wave packets ( = +1, +2, or +3) with variable group velocities in free space by coherently combining multiple frequency comb lines, each carrying a unique Bessel mode. Introducing a controllable specific correlation between temporal frequencies and spatial frequencies of these Bessel modes, we experimentally generate and detect near-diffraction-free OAM wave packets with high mode purities (>86%). Moreover, the group velocity can be controlled from 0.9933c to 1.0069c (c is the speed of light in vacuum). These ST OAM wave packets might find applications in imaging, nonlinear optics, and optical communications. In addition, our approach might also provide some insights for generating other interesting ST beams.

Funder

Defense University Research Instrumentation Program

Qualcomm Innovation Fellowship

Vannevar Bush Faculty Fellowship sponsored by the Basic Research Office of the Assistant Secretary of Defense (ASD) for Research and Engineering (R&E) and funded by the Office of Naval Research

Office of Naval Research

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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