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Attosecond twisted beams from high-order harmonicgeneration driven by optical vortices 被引量:2
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作者 Carlos Hernandez-Garcia Laura Rego +2 位作者 Julio San Roman Antonio Picon Luis Plaja 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2017年第1期12-19,共8页
Optical vortices are structures of the electromagnetic field with a spiral phase ramp about a point-phase singularity,carrying orbital angular momentum(OAM). Recently, OAM has been imprinted to short-wavelength radiat... Optical vortices are structures of the electromagnetic field with a spiral phase ramp about a point-phase singularity,carrying orbital angular momentum(OAM). Recently, OAM has been imprinted to short-wavelength radiation through high-order harmonic generation(HHG), leading to the emission of attosecond twisted beams in the extreme-ultraviolet(XUV) regime. We explore the details of the mapping of the driving vortex to its harmonic spectrum. In particular, we show that the geometry of the harmonic vortices is convoluted, arising from the superposition of the contribution from the short and long quantum paths responsible of HHG. Finally, we show how to take advantage of transverse phase-matching to select twisted attosecond beams with different spatiotemporal properties. 展开更多
关键词 ATTOSECOND science EXTREME-ULTRAVIOLET vortices high harmonic GENERATION orbital angular momentum TWISTED BEAMS vortexbeams
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Specially shaped Bessel-like self-accelerating beams along predesigned trajectories 被引量:4
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作者 Juanying Zhao I.D.Chremmos +5 位作者 Ze Zhang Yi Hu Daohong Song Peng Zhang N.K.Efremidis Zhigang Chen 《Science Bulletin》 SCIE EI CAS CSCD 2015年第13期1157-1169,共13页
Over the past several years, spatially shaped self-accelerating beams along different trajectories have been studied extensively. Due to their useful properties such as resistance to diffraction, self-healing, and sel... Over the past several years, spatially shaped self-accelerating beams along different trajectories have been studied extensively. Due to their useful properties such as resistance to diffraction, self-healing, and selfbending even in free space, these beams have attracted great attention with many proposed applications. Interestingly, some of these beams could be designed with controllable spatial profiles and thus propagate along various desired trajectories such as parabolic, snake-like, hyperbolic, hyperbolic secant, three-dimensional spiraling, and even self-propelling trajectories. Experimentally, suchbeams are realized typically by using a spatial light modulator so as to imprint a desired phase distribution on a Gaussian-like input wave front propagating under paraxial or nonparaxial conditions. In this paper, we provide a brief overview of our recent work on specially shaped self-accelerating beams, including Bessel-like, breathing Bessellike, and vortex Bessel-like beams. In addition, we propose and demonstrate a new type of dynamical Bessel-like beams that can exhibit not only self-accelerating but also self-propelling during propagation. Both theoretical and experimental results are presented along with a brief discussion of potential applications. 展开更多
关键词 Airy beams . Bessel beams . vortexbeams - Nondiffracting beams . Self-acceleratingSelf-healing
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