152
Views
76
CrossRef citations to date
0
Altmetric
Papers

Wave dislocation reactions in non-paraxial gaussian beams

Pages 1845-1858 | Received 21 Oct 1997, Published online: 03 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Articles from other publishers (75)

Anton S. Desyatnikov. (2023) Vortex rings in paraxial laser beams. Optics Express 31:20, pages 31955.
Crossref
P.A. Martin. (2022) On acoustic scattering of beams. Wave Motion 115, pages 103075.
Crossref
A. Volyar, E. Abramochkin, Ya. Akimova, M. Bretsko & Yu. Egorov. (2022) Fast oscillations of orbital angular momentum and Shannon entropy caused by radial numbers of structured vortex beams. Applied Optics 61:21, pages 6398.
Crossref
A.V. Volyar, E.G. Abramochkin, Y.E. Akimova & M.V. Bretsko. (2022) Reconstruction of stable states of spiral vortex beams. Computer Optics 46:1, pages 5-15.
Crossref
A. Volyar, E. Abramochkin, Ya. Akimova & M. Bretsko. (2021) Destroying and recovering spiral vortex beams due to figured perturbations. Journal of the Optical Society of America A 38:12, pages 1793.
Crossref
S S Stafeev & V V Kotlyar. (2021) Energy flows in tight focus of optical vortices. Journal of Physics: Conference Series 2103:1, pages 012162.
Crossref
V.V. Kotlyar & S.S. Stafeev. (2021) Orbital and spin energy flows in tight focus. Optik 245, pages 167703.
Crossref
Jiao Li, Ning Ding, Qingyu Ma, Yuzhi Li, Gepu Guo, Juan Tu & Dong Zhang. (2021) Recursive algorithm for solving the axial acoustic radiation force exerted on rigid spheres at the focus of acoustic vortex beams. Journal of Applied Physics 130:6.
Crossref
S.S. Stafeev. (2021) An orbital energy flow and a spin flow at the tight focus. Computer Optics 45:4, pages 520-524.
Crossref
Oleg V. Minin, Igor V. Minin & Yinghui Cao. (2020) Optical magnet for nanoparticles manipulations based on optical vacuum cleaner concept. Optical magnet for nanoparticles manipulations based on optical vacuum cleaner concept.
Prosenjit Singha DeoP. Singha Deo. 2021. Mesoscopic Route to Time Travel. Mesoscopic Route to Time Travel 75 100 .
Prosenjit Singha DeoP. Singha Deo. 2021. Mesoscopic Route to Time Travel. Mesoscopic Route to Time Travel 35 48 .
V.V. Kotlyar, S.S. Stafeev, A.G. Nalimov, A.A. Kovalev & A.P. Porfirev. (2020) Experimental investigation of the energy backflow in the tight focal spot. Computer Optics 44:6, pages 863-870.
Crossref
Alexey A. Kovalev, Victor V. Kotlyar & Alexey P. Porfirev. (2020) Orbital angular momentum and topological charge of a multi-vortex Gaussian beam. Journal of the Optical Society of America A 37:11, pages 1740.
Crossref
S.S. Stafeev & V.V. Kotlyar. (2020) Toroidal polarization vortices in tightly focused beams with singularity. Computer Optics 44:5, pages 685-690.
Crossref
C. N. Alexeyev, E. V. Barshak, B. P. Lapin & M. A. Yavorsky. (2020) Topological resonances, superefficient orbital-angular-momentum control, and spin-orbit-interaction enhancement in fiber-loop resonators. Physical Review A 101:6.
Crossref
John Lekner. (2020) Theory of Electromagnetic Beams. Synthesis Lectures on Engineering, Science, and Technology 2:3, pages 1-183.
Crossref
John Lekner. (2020) Focal extent of scalar beams. Journal of Optics 22:4, pages 045607.
Crossref
V. V. Kotlyar, S. S. Stafeev, A. G. Nalimov, A. A. Kovalev & A. P. Porfirev. (2020) Mechanism of formation of an inverse energy flow in a sharp focus. Physical Review A 101:3.
Crossref
John Lekner. (2020) Comparison of electromagnetic beams. Optics Communications 458, pages 124844.
Crossref
V.V. Kotlyar, S.S. Stafeev & A.G. Nalimov. (2020) Vortex energy flow in the tight focus of a non-vortex field with circular polarization. Computer Optics 44:1, pages 5-11.
Crossref
John LeknerJohn Lekner. 2020. Theory of Electromagnetic Beams. Theory of Electromagnetic Beams 147 164 .
John LeknerJohn Lekner. 2020. Theory of Electromagnetic Beams. Theory of Electromagnetic Beams 111 125 .
John LeknerJohn Lekner. 2020. Theory of Electromagnetic Beams. Theory of Electromagnetic Beams 63 94 .
John LeknerJohn Lekner. 2020. Theory of Electromagnetic Beams. Theory of Electromagnetic Beams 11 37 .
John LeknerJohn Lekner. 2020. Theory of Electromagnetic Beams. Theory of Electromagnetic Beams 1 10 .
V V Kotlyar, A A Kovalev & D S Kalinkina. (2019) Impact of the evanescent waves on the backflow of power in the near field. Journal of Physics: Conference Series 1368:2, pages 022065.
Crossref
V.V. Kotlyar, S.S. Stafeev, A.G. Nalimov & A.A. Kovalev. (2019) Formation of the reverse flow of energy in a sharp focus. Computer Optics 43:5, pages 714-722.
Crossref
V. V. Kotlyar, A. G. Nalimov & S. S. Stafeev. (2019) Exploiting the circular polarization of light to obtain a spiral energy flow at the subwavelength focus. Journal of the Optical Society of America B 36:10, pages 2850.
Crossref
Victor V. Kotlyar, Sergey S. Stafeev & Alexey A. Kovalev. (2019) Reverse and toroidal flux of light fields with both phase and polarization higher-order singularities in the sharp focus area. Optics Express 27:12, pages 16689.
Crossref
Victor V Kotlyar & Alexey A Kovalev. (2019) Near-field backflow of energy. Journal of Optics 21:4, pages 045603.
Crossref
John Lekner. (2019) Chirality of self-dual electromagnetic beams. Journal of Optics 21:3, pages 035402.
Crossref
P. Singha Deo & Urbashi Satpathi. (2019) Transmitting a signal in negative time. Results in Physics 12, pages 1506-1512.
Crossref
Danica Sugic & Mark R. Dennis. (2018) Singular knot bundle in light. Journal of the Optical Society of America A 35:12, pages 1987.
Crossref
T G Philbin. (2018) Some exact solutions for light beams. Journal of Optics 20:10, pages 105603.
Crossref
John Lekner. (2018) Electromagnetic pulses, localized and causal. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 474:2209, pages 20170655.
Crossref
John Lekner. (2017) Energy, momentum, and angular momentum of sound pulses. The Journal of the Acoustical Society of America 142:6, pages 3428-3435.
Crossref
Petar Andrejic & John Lekner. (2017) Topology of phase and polarisation singularities in focal regions. Journal of Optics 19:10, pages 105609.
Crossref
Urbashi Satpathi & P. Singha Deo. (2016) Negative partial density of states in mesoscopic systems. Annals of Physics 375, pages 491-514.
Crossref
Dinesh N. Naik, T. Pradeep Chakravarthy & Nirmal K. Viswanathan. (2016) Generation of optical vortex dipole from superposition of two transversely scaled Gaussian beams. Applied Optics 55:12, pages B91.
Crossref
Igor Izmailov, Boris Poizner, Ilia Romanov & Sergey SmolskiyIgor Izmailov, Boris Poizner, Ilia Romanov & Sergey Smolskiy. 2016. Cryptology Transmitted Message Protection. Cryptology Transmitted Message Protection 1 70 .
Fred DickeyCarlos López-Mariscal & Julio Gutiérrez-Vega. 2014. Laser Beam Shaping. Laser Beam Shaping 127 150 .
J F Nye. (2011) Singlet?triplet reactions of optical vortices in Gaussian beams. Journal of Optics 13:12, pages 125702.
Crossref
Xiaoyan Pang, Taco D. Visser & Emil Wolf. (2011) Phase anomaly and phase singularities of the field in the focal region of high-numerical aperture systems. Optics Communications 284:24, pages 5517-5522.
Crossref
Mark R. Dennis, J?rg B. G?tte, Robert P. King, Michael A. Morgan & Miguel A. Alonso. (2011) Paraxial and nonparaxial polynomial beams and the analytic approach to propagation. Optics Letters 36:22, pages 4452.
Crossref
J F Nye. (2011) Phase saddles in light beams. Journal of Optics 13:7, pages 075709.
Crossref
Vasilij Vasil’ev & Marat Soskin. (2008) Topological and morphological transformations of developing singular paraxial vector light fields. Optics Communications 281:22, pages 5527-5540.
Crossref
J F Nye. (2008) Unfolding higher-order wave dislocation clusters and catastrophe theory. Journal of Optics A: Pure and Applied Optics 10:7, pages 075010.
Crossref
M.V Berry. (2007) Wave dislocation lines threading interferometers. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 463:2083, pages 1697-1711.
Crossref
Kevin J. Webb & Ming-Chuan Yang. (2006) Generation and control of optical vortices using left-handed materials. Physical Review E 74:1.
Crossref
Damon W. Diehl & Taco D. Visser. (2004) Phase singularities of the longitudinal field components in the focal region of a high-aperture optical system. Journal of the Optical Society of America A 21:11, pages 2103.
Crossref
A. V. Volyar & T. A. Fadeeva. (2014) Focusing of singular beams. Optics and Spectroscopy 96:1, pages 96-105.
Crossref
J F Nye. (2003) From Airy rings to the elliptic umbilic diffraction catastrophe. Journal of Optics A: Pure and Applied Optics 5:5, pages 503-510.
Crossref
Iwo Bialynicki-Birula & Zofia Bialynicka-Birula. (2003) Vortex lines of the electromagnetic field. Physical Review A 67:6.
Crossref
A. V. Volyar & T. A. Fadeeva. (2003) Generation of singular beams in uniaxial crystals. Optics and Spectroscopy 94:2, pages 235-244.
Crossref
A. V. Volyar, T. A. Fadeeva & V. G. Shvedov. (2002) Optical vortex generation and Jones vector formalism. Optics and Spectroscopy 93:2, pages 267-272.
Crossref
J. N. Walford, K. A. Nugent, A. Roberts & R. E. Scholten. (2002) High-resolution phase imaging of phase singularities in the focal region of a lens. Optics Letters 27:5, pages 345.
Crossref
A. V. Volyar & T. A. Fadeeva. (2002) Dynamics of topological multipoles: II. Creation, annihilation, and evolution of nonparaxial optical vortices. Optics and Spectroscopy 92:2, pages 253-262.
Crossref
A. V. Volyar & T. A. Fadeeva. (2002) Dynamics of topological multipoles: I. High-order nonparaxial singular beams. Optics and Spectroscopy 92:2, pages 243-252.
Crossref
A. V. Volyar, T. A. Fadeeva & S. N. Lapaeva. (2001) The birth, annihilation, and evolution of nonparaxial optical vortices: 2. Topological dipole. Technical Physics Letters 27:11, pages 945-948.
Crossref
Isaac Freund. (2001) Polarization flowers. Optics Communications 199:1-4, pages 47-63.
Crossref
M. V. Berry & M. R. Dennis. (2001) Knotted and linked phase singularities in monochromatic waves. Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences 457:2013, pages 2251-2263.
Crossref
A. V. Volyar, V. G. Shvedov & T. A. Fadeeva. (2001) Structural stability of a nonparaxial singular mode beam. Technical Physics 46:8, pages 1063-1067.
Crossref
L. M. Barkovskiĭ & A. N. Furs. (2001) Factorization of integro-differential equations of optics of dispersive anisotropic media and tensor integral operators of wave packet velocities. Optics and Spectroscopy 90:4, pages 561-567.
Crossref
S. J. van Enk & H. J. Kimble. (2001) Strongly focused light beams interacting with single atoms in free space. Physical Review A 63:2.
Crossref
M.S. Soskin & M.V. Vasnetsov. 2001. 219 276 .
Isaac Freund & David A. Kessler. (2001) Critical point trajectory bundles in singular wave fields. Optics Communications 187:1-3, pages 71-90.
Crossref
A. V. Volyar. (2000) Nonparaxial gaussian beams: 1. Vector fields. Technical Physics Letters 26:7, pages 573-575.
Crossref
Isaac Freund. (2000) Optical vortex trajectories. Optics Communications 181:1-3, pages 19-33.
Crossref
Isaac Freund & Ari Belenkiy. (2000) Higher-order extrema in two-dimensional wave fields. Journal of the Optical Society of America A 17:3, pages 434.
Crossref
A. V. Volyar, V. Z. Zhilaitis & T. A. Fadeeva. (2000) Optical vortices in low-mode fibers: III. Dislocation reactions, phase transitions, and topological birefringence. Optics and Spectroscopy 88:3, pages 397-405.
Crossref
M. V. Vasnetsov, V. N. Gorshkov, I. G. Marienko & M. S. Soskin. (2000) Wavefront motion in the vicinity of a phase dislocation: “optical vortex”. Optics and Spectroscopy 88:2, pages 260-265.
Crossref
A. V. Volyar, T. A. Fadeeva & V. G. Shvedov. (1999) Topological phase in a nonparaxial Gaussian beam. Technical Physics Letters 25:11, pages 891-893.
Crossref
C.F.R. Caron & R.M. Potvliege. (1999) Bessel-modulated Gaussian beams with quadratic radial dependence. Optics Communications 164:1-3, pages 83-93.
Crossref
Cullen E. Lee. (1999) Singularities in the transverse electromagnetic field of a compact source. Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences 455:1983, pages 943-960.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.