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The nonlinear optical properties of nanotubes with spiral defects in a longitudinal magnetic field
Authors:V. Ch. Zhukovskii  V. D. Krevchik  M. B. Semenov  A. V. Razumov
Affiliation:1. Department of Physics, Moscow State University, Moscow, 119991, Russia
2. Department of Physics, Penza State University, ul. Krasnaya 40, Penza, 440026, Russia
Abstract:It is demonstrated that the anisotropic transfer of photon momentum to an electronic subsystem results in induction of a photon-drag EMF in a standing electromagnetic wave along the axis of a nanotube with a spiral defect, which confirms the assumption found in the literature that the occurrence of such an effect in the presence of an external magnetic field is possible not only in 2-D systems but also in nanotubes with a spiral symmetry. One of the potential mechanisms of inducing the EMF connected with the spatial asymmetry of the electron-phonon interaction in a nanotube with a spiral defect is considered. This mechanism allows for such an EMF to occur upon heating the electron system by the Joule heat of the photon-drag current that flows through the nanotube.
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