Study of rectangular-guide-like structures for millimeter wave transmission
Rectangular fence guides for millimeter wave transmission
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Rectangular fence guides for millimeter wave transmission
Rectangular waveguide structures and artificial dielectrics studied for millimeter wave transmission characteristics
Design and performance of rectangular waveguides for millimeter wave transmission
Electromagnetic field measurements on rectangular waveguides for millimeter wave propagation
Artificial dielectric H-guides, and comparison of attenuation coefficients of H-guides with standard waveguides
Treatment of conductor surfaces and effects of surface roughness and surface structure on attenuation of waveguides in millimeter waves
Effects of surface roughness on conduction losses at millimeter wavelengths determined by optical techniques and resonator quality factors
Fence guide for millimeter waves, measurements on matched fence guide terminations, and experimental study of non-confocal cylindrical resonator
Microwave transmission through thin film screens with apertures placed in transverse plane of X band rectangular guides
An important and frequently used parameter in the design of a feed for a reflector antenna is the spillover loss. A set of spillover curves is presented for several common feeds, namely circular waveguides with TE11 or TE21 excitations, rectangular guides for the monopulse application, etc. The difference between two common methods of normalizing the feed input power is also discussed.
The focus of the presented work is on the creation of a system of grazing incidence, supermirror waveguides for the capture and reuse of fission sourced neutrons. Within research reactors, neutron guides are a well known tool for directing neutrons from the confined and hazardous central core to a more accessible testing or measurement location. Typical neutron guides have rectangular, hollow cross sections, which are crafted as thin, mirrored waveguides plated with metal (commonly nickel). Under glancing angles with incoming neutrons, these waveguides can achieve nearly lossless transport of neutrons to distant instruments. Furthermore, recent developments have created supermirror surfaces which can accommodate neutron grazing angles up to four times as steep as nickel. A completed system will form an enclosing ring or spherical resonator system to a coupled neutron source for the purpose of capturing and reusing free neutrons to sustain and/or accelerate fission. While grazing incidence mirrors are a known method of directing and safely using neutrons, no method has been disclosed for capture and reuse of neutrons or sustainment of fission using a circular waveguide structure. The presented work is in the process of fabricating a functional, highly curved, neutron supermirror using known methods of Ni-Ti layering capable of achieving incident reflection angles up to four times steeper than nickel alone. Parallel work is analytically investigating future geometries, mirror compositions, and sources for enabling sustained fission with applicability to the propulsion and energy goals of NASA and other agencies. Should research into this concept prove feasible, it would lead to development of a high energy density, low mass power source potentially capable of sustaining fission with a fraction of the standard critical mass for a given material and a broadening of feasible materials due to reduced rates of release, absorption, and non-fission for neutrons. This advance could be applied to direct propulsion through guided fission products or as a secondary energy source for high impulse electric propulsion. It would help meet national needs for highly efficient energy sources with limited dependence on fossil fuels or conflict materials, and it would improve the use of low grade fissile materials which would help reduce national stockpiles and waste.
Plasma diffusion, dyadic diffusion coefficients, and plasma property measurements using rectangular waveguide
Solution of ferrite boundary value problem in rectangular waveguide and resolution of Lewin paradox
Method of compensating for effects of slot in rectangular waveguide
Controlled nonreciprocal microwave device using Faraday rotation in solid state plasma
Rectangular to cylindrical waveguide transducer which couples dominant rectangular and cylindrical transverse electromagnetic modes
Dielectric cover effect on resonant frequency of slots in rectangular waveguide, using Stevenson free space theory and plane-wave reflection coefficient
Surface wave pole contribution to admittance of rectangular waveguide-fed slot into dielectric slab