Claims
- 1. In a crossed-field amplifier having
- an elongated interaction space with signal input and output terminals and an entrance for an electron beam and
- a source of electrons adjacent said entrance for establishing an electron beam and an anode for directing said beam into said interaction space and a grid between the source and the anode for modulating the flow of electrons from the source, the improvement comprising:
- an auxiliary electrode adjacent the entrance of said interaction space for modifying the electron beam entering the interaction space.
- 2. The crossed-field amplifier of claim 1 in which said auxiliary electrode contributes to an electric field which modifies the shape of the electron beam.
- 3. The crossed-field amplifier of claim 1 in which said auxiliary electrode contributes to a field which modifies the position of the electron beam with respect to the longitudinal axis of the interaction space.
- 4. The crossed-field amplifier of claim 1 in which said auxiliary electrode contributes to a field which modifies the potential of the electron beam with respect to the means defining the interaction space.
- 5. The crossed-field amplifier of claim 1 in which said auxiliary electrode contributes to an electric field which modifies the velocity of the electron beam.
- 6. The crossed-field amplifier of claim 1 in which said source includes a cathode located at one side of the entrance of the interaction space and said auxiliary electrode is located on the other side of the entrance of the interaction space.
- 7. The crossed-field amplifier of claim 6 including a second auxiliary electrode located between the cathode and the means defining the interaction space, said entrance being between the auxiliary electrodes.
- 8. In a crossed-field amplifier having
- an elongated interaction space defined by a delay line with signal input and output connections and a sole plate, said interaction space having an entrance at one end thereof,
- means providing a magnetic field extending across the interaction space,
- means providing an electric field between said delay line and sole plate, and
- an electron source for establishing an electron beam and injecting the beam into the entrance of the interaction space, said source including
- a cathode adjacent said sole plate,
- a grid for modulating the flow of electrons from the cathode and
- a beam accelerating electrode adjacent said delay line,
- the improvement comprising:
- an auxiliary electrode in the form of a plate, the plate being adjacent the entrance of said interaction space and having an edge presented to the electron source and located on the opposite side of the interaction space entrance from the electron source for modifying the electron beam entering the interaction space wherein said plate is mounted on and insulated from the surface of the beam-accelerating electrode remote from said source and said edge being extended into the space between the accelerating electrode and the delay line.
- 9. The crossed-field amplifier of claim 8 in which said grid has a planar surface with a plurality of alternate elongated teeth and slots extending generally parallel with the axis of the interaction space, and said auxiliary electrode is generally rectangular and has its major dimension extending transversely to the interaction space axis and parallel with said planar grid surface.
- 10. The crossed-field amplifier of claim 9 in which said auxiliary electrode is the edge of a sheet of metal having a thickness of the order of 0.005 and the width of the order of the width of the anode and delay line.
Government Interests
The invention herein described was made in the course of or under a contract or subcontract thereunder, (or grant) with the Department of the Air Force.
US Referenced Citations (9)