helical beam
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2021 ◽  
Vol 11 (1) ◽  
Author(s):  
F. Mangini ◽  
M. Ferraro ◽  
M. Zitelli ◽  
V. Kalashnikov ◽  
A. Niang ◽  
...  

AbstractWe demonstrate a new practical approach for generating multicolour spiral-shaped beams. It makes use of a standard silica optical fibre, combined with a tilted input laser beam. The resulting breaking of the fibre axial symmetry leads to the propagation of a helical beam. The associated output far-field has a spiral shape, independently of the input laser power value. Whereas, with a high-power near-infrared femtosecond laser, a visible supercontinuum spiral emission is generated. With appropriate control of the input laser coupling conditions, the colours of the spiral spatially self-organize in a rainbow distribution. Our method is independent of the laser source wavelength and polarization. Therefore, standard optical fibres may be used for generating spiral beams in many applications, ranging from communications to optical tweezers and quantum optics.


Photonics ◽  
2020 ◽  
Vol 7 (4) ◽  
pp. 102
Author(s):  
Ewa Frączek ◽  
Agnieszka Popiołek-Masajada ◽  
Sławomir Szczepaniak

In this paper, we characterize the helical beam structure through an analysis of the spiral character of the phase distribution inside a light beam. In particular, we show that a line connected with the 2π phase jump in the Laguerre–Gauss beam can be described by a Fermat’s spiral. We propose a numerical fitting method to determine the parameters of a spiral equation for the phase distribution of the helical beam. Next, we extend the procedure to a vortex beam created by the spiral phase plate and apply it to experimental phase maps, which allows us to recover the phase shift introduced into the object beam in the optical vortex scanning microscope.


2019 ◽  
Vol 67 (12) ◽  
pp. 7348-7355 ◽  
Author(s):  
Gary Junkin ◽  
Josep Parron ◽  
Alan Tennant
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2017 ◽  
Vol 15 (3) ◽  
pp. 030011-30015 ◽  
Author(s):  
Yuanhui Wen Yuanhui Wen ◽  
Yujie Chen Yujie Chen ◽  
Yanfeng Zhang Yanfeng Zhang ◽  
and Siyuan Yu and Siyuan Yu

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