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Prof. Shlomi Arnon

Off-axis aperture-based detection of Orbital Angular Momentum (OAM) modes

Ayush Mehra, Shlomi Arnon

Beams carrying Orbital Angular Momentum (OAM) gives structured light a degree of freedom, allowing for high-dimensional encoding in quantum information processing, optical communication and sensing. Laguerre-Gaussian (LG) modes are widely used to represent OAM states but their detection typically requires full-beam access and complex interferometric or holographic techniques. In this work, we present a compact and non-interferometric method for determining the OAM mode using an off-axis triangular aperture. Partial sampling of the beam generates distinct diffraction patterns whose intensity peak structure directly reveals the topological charge. The proposed approach enables reliable OAM identification using only a small spatial portion of the beam spot, making it robust against beam truncation and misalignment. This technique is well suited for compact optical receivers and diagnostics in free-space and integrated platforms, with potential applications spanning high-capacity classical links, quantum technologies, and optical sensing systems.

Publication language English
Publication status Published - 05.03.2026

Keywords

Orbital angular momentum
diffraction
structured light
topological charge
triangular aperture

ASJC Scopus subject areas

Electronic, Optical and Magnetic Materials
Instrumentation
Condensed Matter Physics
Computer Science Applications
Applied Mathematics
Electrical and Electronic Engineering
Access to Document
10.1117/12.3081790
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Link to publication in Scopus