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. Notably, the nucleophilic niacinamide (NA) ligand suppressed the hydrolysis of electrophilic I+ by forming stable I(NA)2+ species that guaranteed the reversible I2/I+. 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 Here, we design a new class of ternary hydrated eutectic electrolyte that can enable 2I+/I2/2I redox couple conversion with the four-electron transfer for Zn-I2 batteries. Means of the linearized hydrodynamic model. In this work, the excitation of these wakefields is studied by 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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