Generation of Propagation-Dependent OAM Self-Torque with Chirped Spiral Gratings

Author:

Grunwald Ruediger1ORCID,Jurke Mathias1,Liebmann Max2,Treffer Alexander3,Bock Martin1

Affiliation:

1. Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy, Max-Born-Strasse 2a, 12489 Berlin, Germany

2. HOLOEYE Photonics AG, Volmerstrasse 1, 12489 Berlin, Germany

3. SENTECH Instruments GmbH, Schwarzschildstraße 2, 12489 Berlin, Germany

Abstract

The application of non-uniform spiral gratings to control the structure, topological parameters and propagation of orbital angular momentum (OAM) beams was studied experimentally with coherent near-infrared light. Adapted digital spiral grating structures were programmed into the phase map of a high-resolution liquid-crystal-on-silicon spatial light modulator (LCoS-SLM). It is shown that characteristic spatio-spectral anomalies related to Gouy phase shift can be used as pointers to quantify rotational beam properties. Depending on the sign and gradient of spatially variable periods of chirped spiral gratings (CSGs), variations in rotation angle and angular velocity were measured as a function of the propagation distance. Propagation-dependent self-torque is introduced in analogy to known local self-torque phenomena of OAM beams as obtained by the superposition of temporally chirped or phase-modulated wavepackets. Applications in metrology, nonlinear optics or particle trapping are conceivable.

Funder

Deutsche Forschungsgemeinschaft

Publisher

MDPI AG

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