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Localized superluminal solutions to the wave equation in (vacuum or) dispersive media, for arbitrary frequencies and with adjustable bandwidth
(Elsevier Science BvAmsterdamHolanda, 2003)
Producing Acoustic Frozen Waves: Simulated Experiments
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2013)
Subluminal wave bullets: Exact localized subluminal solutions to the wave equations
(Amer Physical SocCollege PkEUA, 2008)
Superluminal localized solutions to Maxwell equations propagating along a normal-sized waveguide
(Amer Physical SocCollege PkEUA, 2001)
On the existence of undistorted progressive waves (UPWs) of arbitrary speeds 0<=nu<infinity in nature
(Plenum Publ CorpNew York, 1997)
Periodic and quasi-periodic non-diffracting wave fields generated by superposition of multiple Bessel beams
(Optical Society of America, 2007)
Periodic and quasi-periodic non-diffracting wave fields generated by superposition of multiple Bessel beams
(Optical Society of America, 2007)
Superluminal, Luminal, And Subluminal Nondiffracting Pulses Applied To Free-space Optical Systems: Theoretical Description
(OPTICAL SOC AMERWASHINGTON, 2016)
Theory of "frozen waves": modeling the shape of stationary wave fields
(Optical Soc AmerWashingtonEUA, 2005)