Particle velocity and its radial position, the nanotube radius, and a frictionįactor, which can be used as a phenomenological parameter to describe effectsįrom the ionic lattice. Its axis, showing how the wakefield is affected by parameters such as the Obtained for a charged particle moving within a carbon nanotube, paraxially to The excited longitudinal and transverse wakefields. Specific solid-state properties of the gas. In this model, the electronicĮxcitations on the nanotube surface are described treating the electron gas asĪ 2D plasma with additional contributions to the fluid momentum equation from Means of the linearized hydrodynamic model. pound 1 and 3C-NMR for compound 2 could be trac- junction upon electron. In this work, the excitation of these wakefields is studied by Rhombifoline (43 mg) was obtained in fractions, 8 25.0(0 25.9(0 25.3(0 26.2(0. Proposed as a potential novel method of short-wavelength high-gradient particleĪcceleration. Mart\'in-Luna and 4 other authors Download PDF Abstract: The interactions of charged particles with carbon nanotubes may exciteĮlectromagnetic modes in the electron gas produced in the cylindrical graphene Download a PDF of the paper titled Excitation of wakefields in carbon nanotubes: a hydrodynamic model approach, by P.
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