ELECTRON GUN, ELECTRON BEAM APPLICATOR, AND EMISSION METHOD OF ELECTRON BEAM

    公开(公告)号:US20240212967A1

    公开(公告)日:2024-06-27

    申请号:US18556080

    申请日:2022-03-25

    Abstract: Provided is an electron gun that can have a setting to make it possible to irradiate a desired location on an irradiation target with an electron beam having a desired electron beam parameter by using only the component included in the electron gun. This object can be achieved by an electron gun including: a light source; a photocathode configured to generate releasable electrons in response to receiving light from the light source; an anode configured to generate an electric field between the photocathode and the anode, extract the releasable electrons by the generated electric field, and form an electron beam; and a control unit, and the control unit sets the number of emission times of the electron beam and sets an electron beam parameter for each emitting electron beam, or sets an emission duration of the electron beam and sets an electron beam parameter of an emitting electron beam in association with the emission duration.

    Electron gun, electron beam applicator, and method for controlling electron gun

    公开(公告)号:US12198889B2

    公开(公告)日:2025-01-14

    申请号:US17044850

    申请日:2020-05-08

    Abstract: The present disclosure addresses the problem of providing an electron gun that can directly monitor an intensity of an electron beam emitted from a photocathode using only the configuration provided to the electron gun, an electron beam applicator equipped with an electron gun, and a method for controlling an electron gun.
    The aforementioned problem can be solved by an electron gun comprising a light source, a photocathode that emits an electron beam in response to receiving light from the light source, an anode, an electron-beam-shielding member with which it is possible to shield part of the electron beam, and a measurement unit that measures the intensity of the electron beam emitted from the photocathode using a measurement electron beam shielded by the electron-beam-shielding member.

    Photocathode kit, electron gun, and electron beam applicator

    公开(公告)号:US12033827B2

    公开(公告)日:2024-07-09

    申请号:US17604368

    申请日:2020-07-31

    CPC classification number: H01J1/34 H01J37/073

    Abstract: Provided is a photocathode kit that does not require adjustment of the distance between a photocathode film and a lens focusing on the photocathode film when the photocathode and the lens are installed inside an electron gun. The photocathode kit includes: a photocathode including a substrate in which a photocathode film is formed on a first surface; a lens; and a holder that holds the substrate and the lens, and the holder has a retaining member that retains the photocathode film and the lens to be spaced apart by a predetermined distance, and a first communication path that communicates between inside of the holder and outside of the holder.

    Electron Gun, Electron Beam Applying Device, and Irradiation Position Shifting Method

    公开(公告)号:US20240222062A1

    公开(公告)日:2024-07-04

    申请号:US18556076

    申请日:2022-03-25

    Abstract: Provided are an electron gun that can extend the lifetime of a photocathode, an electron beam applicator on which the electron gun is mounted, and an irradiation position moving method. This object can be achieved by an electron gun including: a light source; a photocathode that emits an electron beam in response to receiving light from the light source; an anode; a motion device that moves excitation light irradiating the photocathode; and a control unit, the control unit controls the motion device to move an irradiation position of the excitation light from a position Rn (n is a natural number) on the photocathode to a position Rn+1 outside an excitation light irradiation-caused deteriorated range associated with the position Rn, the excitation light irradiation-caused deteriorated range is a range where the photocathode is deteriorated due to irradiation with the excitation light, and the distance between the center of a spot of the excitation light at the position Rn and the center of a spot of the excitation light at the position Rn+1 is at least three or more times a spot diameter of the excitation light on the photocathode.

    Electron Gun, Electron Beam Applicator, and Method for Controlling Electron Gun

    公开(公告)号:US20230131413A1

    公开(公告)日:2023-04-27

    申请号:US17044850

    申请日:2020-05-08

    Abstract: The present disclosure addresses the problem of providing an electron gun that can directly monitor an intensity of an electron beam emitted from a photocathode using only the configuration provided to the electron gun, an electron beam applicator equipped with an electron gun, and a method for controlling an electron gun.
    The aforementioned problem can be solved by an electron gun comprising a light source, a photocathode that emits an electron beam in response to receiving light from the light source, an anode, an electron-beam-shielding member with which it is possible to shield part of the electron beam, and a measurement unit that measures the intensity of the electron beam emitted from the photocathode using a measurement electron beam shielded by the electron-beam-shielding member.

    Electron gun, electron gun component, electron beam applicator, and alignment method

    公开(公告)号:US11842879B2

    公开(公告)日:2023-12-12

    申请号:US17996213

    申请日:2021-08-20

    Abstract: Provided are an electron gun, an electron gun component, an electron beam applicator, and an alignment method that can align the emission axis of an electron beam with the optical axis of the electron optical system of the counterpart device even when misalignment of a mounted position of the electron gun being mounted to the counterpart device is larger. The electron gun includes: a light source; a vacuum chamber; a photocathode that emits an electron beam in response to receiving light from the light source; an electrode kit; and an electrode kit drive device, the electrode kit includes a photocathode supporting part, and an anode arranged spaced apart from the photocathode supporting part, the photocathode is placed on the photocathode supporting part, and the electrode kit drive device moves the electrode kit in an X-Y plane, where one direction is defined as an X direction, a direction orthogonal to the X direction is defined as a Y direction, and a plane including the X direction and the Y direction is defined as the X-Y plane.

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