Barnetron microwave amplifiers and oscillators
First Claim
1. An amplifying maser device utilizing a spatially nonlinear electrostatic field to induce stimulated cyclotron emission of radiation by electrons which comprises;
- a fast-wave propagating electromagnetic waveguide to support the wave, an input and output coupling means, a means of producing a magnetic field in the said waveguide, a means of injecting electrons with components of velocity parallel and perpendicular to the said magnetic field wherein the spatial distribution of the electrons produces the spatially nonlinear electrostatic field where the said spatially nonlinear electrostatic field is defined to be an electric field which is described as;
the magnitude of the said electric field having a nonlinear variation as a function of position in one or more directions and serves to cause an electron moving in cyclotron orbits, in said magnetic field and said electric field, to have its cyclotron orbit to be modified and the cyclotron resonance frequency to be modified where the said resonance frequency is a function of the magnitude of the said orbit.
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Abstract
A cyclotron maser microwave amplifier and oscillator which utilizes non-relativistic electrons in cyclotron motion and a spatially nonlinear electrostatic field which is produced by the space charge of the electrons. The term "spatially nonlinear electrostatic field" encompasses static electric fields whose magnitude can be described mathematically as varying in a nonlinear manner as a function of position in one or more directions. As taught by U.S. Pat. No. 4,253,068 of Feb. 24, 1981, "Cyclotron Maser Using a Spatially Nonlinear Electrostatic Field", completely non-relativistic electrons may be used in principle for which phase bunching will occur due to the nonlinear motions induced by the electrostatic field, resulting in stimulated emission of cyclotron radiation for use in a microwave amplifier or oscillator. U.S. Pat. No. 4,253,068 teaches that appropriate nonlinear electrostatic fields can be established by suitably shaped electrodes and a low charge density electron beam. The present application teaches that appropriate nonlinear electrostatic fields can be produced by the self fields of the space charge of the electron beam. Resulting amplifiers and oscillators are here named barnetron amplifiers and oscillators.
An electron gun which produces an annular electron beam with components of velocity perpendicular and parallel to an axial magnetic field.
11 Citations
6 Claims
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1. An amplifying maser device utilizing a spatially nonlinear electrostatic field to induce stimulated cyclotron emission of radiation by electrons which comprises;
- a fast-wave propagating electromagnetic waveguide to support the wave, an input and output coupling means, a means of producing a magnetic field in the said waveguide, a means of injecting electrons with components of velocity parallel and perpendicular to the said magnetic field wherein the spatial distribution of the electrons produces the spatially nonlinear electrostatic field where the said spatially nonlinear electrostatic field is defined to be an electric field which is described as;
the magnitude of the said electric field having a nonlinear variation as a function of position in one or more directions and serves to cause an electron moving in cyclotron orbits, in said magnetic field and said electric field, to have its cyclotron orbit to be modified and the cyclotron resonance frequency to be modified where the said resonance frequency is a function of the magnitude of the said orbit. - View Dependent Claims (2, 3, 4, 5, 6)
- a fast-wave propagating electromagnetic waveguide to support the wave, an input and output coupling means, a means of producing a magnetic field in the said waveguide, a means of injecting electrons with components of velocity parallel and perpendicular to the said magnetic field wherein the spatial distribution of the electrons produces the spatially nonlinear electrostatic field where the said spatially nonlinear electrostatic field is defined to be an electric field which is described as;
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