Results 311 to 320 of about 19,671 (330)
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SPIE Proceedings, 2009
Airy beams are of great interest as a result of their unusual characteristics, they are non-diffracting and also propagate along a parabolic path due to the presence of a transversal acceleration component. In this paper the generation of a white light Airy beam is presented, an investigation is also carried out to determine how the properties of an
Jill E. Morris +4 more
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Airy beams are of great interest as a result of their unusual characteristics, they are non-diffracting and also propagate along a parabolic path due to the presence of a transversal acceleration component. In this paper the generation of a white light Airy beam is presented, an investigation is also carried out to determine how the properties of an
Jill E. Morris +4 more
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Beam propagation factor of an Airy beam
Journal of Optics, 2011We investigate the beam quality features of an Airy beam during propagation in free space. The beam propagation factor of an Airy beam is derived based on the moments method. The results show that the beam propagation factor of an Airy beam can achieve the minimum M2 = 1.17 when the modulation parameter a = 0.756 by compromising the effects of lateral ...
Rui-Pin Chen, Chao-Fu Ying
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Nature Photonics, 2009
The demonstration of Airy beam generation and all-optical control by quasi-phase matched nonlinear crystals looks set to help these unique beams realize their exciting potential in applications.
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The demonstration of Airy beam generation and all-optical control by quasi-phase matched nonlinear crystals looks set to help these unique beams realize their exciting potential in applications.
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Journal of Optics, 2014
The ?paraxiality? of some Airy-function-related beams is discussed specifically on the basis of two paraxiality criteria, the paraxiality estimator and the degree of paraxiality, that have been recently introduced in the literature with the intent of assessing the limits of the paraxial approach to light field propagation analysis and of quantifying ...
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The ?paraxiality? of some Airy-function-related beams is discussed specifically on the basis of two paraxiality criteria, the paraxiality estimator and the degree of paraxiality, that have been recently introduced in the literature with the intent of assessing the limits of the paraxial approach to light field propagation analysis and of quantifying ...
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Optics Letters, 2011
The primary interest in the finite-energy Airy beam derives from the special properties possessed by the maximum intensity at its central lobe. However, the defining spatial dependence, the Airy function, is an oscillatory function that consists of decaying side lobes. For some applications these side lobes may create deleterious effects.
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The primary interest in the finite-energy Airy beam derives from the special properties possessed by the maximum intensity at its central lobe. However, the defining spatial dependence, the Airy function, is an oscillatory function that consists of decaying side lobes. For some applications these side lobes may create deleterious effects.
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Optical trapping with non-diffracting Airy beams array using a holographic optical tweezers
Optics and Laser Technology, 2021Neves, Antonio Ar, Marcos R R Gesualdi
exaly
Compact Generation of Airy Beams with C‐Aperture Metasurface
Advanced Optical Materials, 2017Gun-Yeal Lee +2 more
exaly
Trapping and guiding microparticles with morphing autofocusing Airy beams
Optics Letters, 2011Jai Prakash +2 more
exaly

