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The Effect of Orbital Angular Momentum on Nondiffracting Ultrashort Optical Pulses
We introduce a new class of nondiffracting optical pulses possessing orbital
angular momentum. By generalizing the X-waves solution of the Maxwell equation,
we discover the coupling between angular momentum and the temporal degrees of
freedom of ultra-short pulses. The spatial twist of propagation invariant light
pulse turns out to be directly related to the number of optical cycles. Our
results may trigger the development on novel multi-level classical and quantum
transmission channels free of dispersion and diffraction, may also find
application in the manipulation of nano-structured objects by ultra-short
pulses, and for novel approaches to the spatio-temporal measurements in
ultrafast photonics
The Drinfel'd Double versus the Heisenberg Double for Hom-Hopf Algebras
Let be a finite-dimensional Hom-Hopf algebra. In this paper we
mainly construct the Drinfel'd double in the setting of Hom-Hopf
algebras by two ways, one of which generalizes Majid's bicrossproduct for Hopf
algebras (see \cite{M2}) and another one is to introduce the notion of dual
pairs of of Hom-Hopf algebras. Then we study the relation between the Drinfel'd
double and Heisenberg double , generalizing the main
result in \cite{Lu}. Especially, the examples given in the paper are not
obtained from the usual Hopf algebras
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