PROJECT TITLE :

Sheet Electron Beam Transport in a Metamaterial-Loaded Waveguide Under the Uniform Magnetic Focusing

ABSTRACT:

We tend to have theoretically investigated the transport of a sheet electron beam targeted by a homogenous axial magnetic field in a very metamaterial-loaded waveguide. A theoretical model has been proposed to research the sheet electron beam transport. During this model, we have used CST simulations to obtain the mean potential on the metamaterial because the boundary condition. Per the boundary condition, the house-charge electric field and therefore the beam curling are theoretically analyzed. It's found that the beam curling can be greatly reduced by decreasing the spacing between the metamaterial and also the sheet electron beam. This model is verified using the CST simulations. This paper can pave the means for developing complete new metamaterial-based vacuum electron devices with a sheet electron beam.


Did you like this research project?

To get this research project Guidelines, Training and Code... Click Here


PROJECT TITLE :Modified Sheet Inductance of Wire Mesh Using Effective Wire SpacingABSTRACT:This paper focuses on a replacement definition for an effective wire spacing parameter of a conductive mesh and therefore the analysis
PROJECT TITLE :RF Design, Thermal Analysis, and Cold Test of a Ku-Band Continuous Wave Sheet Beam Traveling Wave TubeABSTRACT:RF circuit design, thermal analysis, fabrication, and measurement of a continual wave (CW) high-power
PROJECT TITLE : Network Resource Allocation for Users With Multiple Connections Fairness and Stability - 2014 ABSTRACT: This paper studies network resource allocation between users that manage multiple connections, possibly
PROJECT TITLE : Distributed Mobile Sink Routing for Wireless Sensor Networks A Survey - 2014 ABSTRACT: The concentration of data traffic towards the sink in a wireless sensor network causes the nearby nodes to deplete their
ABSTRACT:We applied partial conversion (PC) with a low metal-consumption ratio (MCR) as the initial silicidation, fabricating uniform and low-resistive Ni-Pt silicide regardless of the device patterns across a wafer. The key to

Ready to Complete Your Academic MTech Project Work In Affordable Price ?

Project Enquiry