Realization of free‐space long‐distance self‐healing Bessel beams

GND
1147873976
ORCID
0000-0001-9921-3855
Affiliation
Friedrich‐Schiller‐Universität Jena
Vetter, Christian;
Affiliation
Fraunhofer Institute for Applied Optics and Precision Engineering IOF
Steinkopf, Ralf;
GND
1179289374
Affiliation
Friedrich‐Schiller‐Universität Jena
Bergner, Klaus;
GND
1151135682
ORCID
0000-0002-3814-7871
Affiliation
Friedrich‐Schiller‐Universität Jena
Ornigotti, Marco;
GND
121566366
ORCID
0000-0002-2919-2662
Affiliation
Friedrich‐Schiller‐Universität Jena
Nolte, Stefan;
GND
134121201
Affiliation
Friedrich‐Schiller‐Universität Jena
Gross, Herbert;
GND
135713714
ORCID
0000-0003-0071-6941
Affiliation
Friedrich‐Schiller‐Universität Jena
Szameit, Alexander

A new approach for generating long‐distance self‐healing Bessel beams, which is based on a ring‐shaped (annular) lens and a spherical lens in 4 f ‐configuration, is reported. With this, diffraction‐free light evolution of a zeroth order Bessel beam over several meters is shown and available scaling opportunities that surpass current technologies by far are discussed. Furthermore, it is demonstrated how this setup can be adapted to create Bessel beam superpositions, realizing the longest ever reported optical conveyor beam and helicon beam, respectively. Last, the self‐healing capabilities of the beams are tested against strong opaque and non‐opaque scatterers, which again emphasizes the great potential of this new method.

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License Holder: © 2019 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim

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