Optical vortices 30 years on: OAM manipulation from topological charge to multiple singularities
TL;DR: The authors survey the steady refinement of techniques used to create optical vortices, and explore their applications, which include sophisticated optical computing processes, novel microscopy and imaging techniques, the creation of ‘optical tweezers’ to trap particles of matter, and optical machining using light to pattern structures on the nanoscale.
read more
Abstract: Thirty years ago, Coullet et al. proposed that a special optical field exists in laser cavities bearing some analogy with the superfluid vortex. Since then, optical vortices have been widely studied, inspired by the hydrodynamics sharing similar mathematics. Akin to a fluid vortex with a central flow singularity, an optical vortex beam has a phase singularity with a certain topological charge, giving rise to a hollow intensity distribution. Such a beam with helical phase fronts and orbital angular momentum reveals a subtle connection between macroscopic physical optics and microscopic quantum optics. These amazing properties provide a new understanding of a wide range of optical and physical phenomena, including twisting photons, spin-orbital interactions, Bose-Einstein condensates, etc., while the associated technologies for manipulating optical vortices have become increasingly tunable and flexible. Hitherto, owing to these salient properties and optical manipulation technologies, tunable vortex beams have engendered tremendous advanced applications such as optical tweezers, high-order quantum entanglement, and nonlinear optics. This article reviews the recent progress in tunable vortex technologies along with their advanced applications.
read more
Chat with Paper
AI Agents for this Paper
Find similar papers on Google Scholar, PubMed and Arxiv
Write a critical review of this paper
Analyze citations of this paper to find unaddressed research gaps
Citations
Methods and Applications
Ajit Varki,Richard D Cummings,Jeffrey D. Esko,Hudson Freeze,Pamela Stanley,Carolyn R. Bertozzi,Gerald W. Hart,Marilynn E. Etzler +7 more
- 01 Jan 2009
TL;DR: The aim of the research presented in this thesis is to create new methods for design for manufacturing, by using several approaches of KE, and find the beneficial and less beneficial aspects of these methods in comparison to each other and earlier research.
749
Optical trapping with structured light: a review
Yuanjie Yang,Yu-Xuan Ren,Mingzhou Chen,Yoshihiko Arita,Yoshihiko Arita,Carmelo Rosales-Guzmán,Carmelo Rosales-Guzmán +6 more
- 03 Jun 2021
TL;DR: In this paper, the authors summarize the recent advances in the field of optical tweezers using structured light beams with customized phase, amplitude, and polarization in 3D optical trapping.
Photonic Quantum Metrology
Emanuele Polino,Mauro Valeri,Nicolò Spagnolo,Fabio Sciarrino +3 more
- 29 Jun 2020
TL;DR: This work discusses the current experimental and theoretical challenges, and the open questions towards implementation of photonic quantum sensors with quantum-enhanced performances in the presence of noise, in the research area of multiparameter quantum metrology, where multiple parameters have to be estimated at the same time.
403
Maxwell Meets Marangoni—A Review of Theories on Laser-Induced Periodic Surface Structures
Jörn Bonse,Stephan Gräf +1 more
TL;DR: In this paper, a review of the available literature on laser-induced periodic surface structures (LIPSS, ripples) along with their numerical implementations and a comparison and critical assessment of these approaches is provided.
References
Complete wavefront and polarization control for ultrashort-pulse laser microprocessing
Olivier Allegre,Yang Jin,Walter Perrie,J Ouyang,Eamonn Fearon,Stuart Edwardson,Geoff Dearden +6 more
TL;DR: This work uses two Spatial Light Modulators in combination to structure the optical fields of a picosecond-pulse laser beam, producing vortex wavefronts and radial or azimuthal polarization states.
Picosecond optical vortex converted from multigigahertz self-mode-locked high-order Hermite-Gaussian Nd:GdVO4 lasers
TL;DR: A gigahertz self-mode-locked high-order Hermite-Gaussian (HG) Nd:GdVO(4) laser is reported on, which is converted to generate picosecond optical vortex pulses.
Q-switched Nd:YAG optical vortex lasers.
TL;DR: Q-switched operation of a high-quality Nd:YAG optical vortex laser with the first order Laguerre-Gaussian mode and well-determined helical wavefronts using a fiber-based pump beam conditioning scheme is reported.
Direct laser printing of chiral plasmonic nanojets by vortex beams.
S. Syubaev,A. Zhizhchenko,Aleksandr A. Kuchmizhak,Alexey P. Porfirev,E. V. Pustovalov,O. B. Vitrik,Yu. N. Kulchin,Svetlana N. Khonina,Sergey I. Kudryashov +8 more
TL;DR: The results suggest optical interference of the incident and reflected laser beams as a source of complex surface intensity distributions in metal films, possessing spiral components and driving both center-symmetric and spiral thermocapillary melt flows to yield in frozen nanoneedles with their pre-determined spiral nanocarving.
Visualization of the birth of an optical vortex using diffraction from a triangular aperture.
TL;DR: The far field diffraction pattern for incident fields incident upon a triangular aperture possessing non-integer values of the azimuthal index ℓ is explored and the birth of a vortex is inferred and its evolution is explored by observations of the diffraction patterns.