Patents Assigned to TibaRay, Inc.
  • Publication number: 20260118534
    Abstract: Beam monitors, methods of use and fabrication are provided herein. Beam monitors can include a rounded beam cavity with one or more waveguide connected thereto, from which a signal can be used to determine one or more beam characteristics. Such monitors can include a beam intensity monitor that includes a cylindrical beam cavity with a rectangular waveguide extending from a periphery, from which beam intensity can be determined. An advanced beam monitor can include a multi-moded beam cavity having multiple waveguides connected at distinct locations, each corresponding to a differing excitation mode. Such monitor can include an elliptical beam cavity and five waveguides connected thereto, signals from which can be used to determine beam charge, beam position and beam size in both the x-direction and y-directions. Beam monitors can be stand-alone devices or integrated within linear accelerators. Accelerators can include off-axis beam monitor coupling ports and on-axis tuning features.
    Type: Application
    Filed: October 29, 2025
    Publication date: April 30, 2026
    Applicant: TibaRay, Inc.
    Inventors: Sami Tantawi, Luyao Xu, Filippos Toufexis
  • Patent number: 12481076
    Abstract: Beam monitors, methods of use and fabrication are provided herein. Beam monitors can include a rounded beam cavity with one or more waveguide connected thereto, from which a signal can be used to determine one or more beam characteristics. Such monitors can include a beam intensity monitor that includes a cylindrical beam cavity with a rectangular waveguide extending from a periphery, from which beam intensity can be determined. An advanced beam monitor can include a multi-moded beam cavity having multiple waveguides connected at distinct locations, each corresponding to a differing excitation mode. Such monitor can include an elliptical beam cavity and five waveguides connected thereto, signals from which can be used to determine beam charge, beam position and beam size in both the x-direction and y-directions. Beam monitors can be stand-alone devices or integrated within linear accelerators. Accelerators can include off-axis beam monitor coupling ports and on-axis tuning features.
    Type: Grant
    Filed: May 25, 2023
    Date of Patent: November 25, 2025
    Assignee: TibaRay, Inc.
    Inventors: Sami Tantawi, Luyao Xu, Filippos Toufexis
  • Publication number: 20240027638
    Abstract: Beam monitors, methods of use and fabrication are provided herein. Beam monitors can include a rounded beam cavity with one or more waveguide connected thereto, from which a signal can be used to determine one or more beam characteristics. Such monitors can include a beam intensity monitor that includes a cylindrical beam cavity with a rectangular waveguide extending from a periphery, from which beam intensity can be determined. An advanced beam monitor can include a multi-moded beam cavity having multiple waveguides connected at distinct locations, each corresponding to a differing excitation mode. Such monitor can include an elliptical beam cavity and five waveguides connected thereto, signals from which can be used to determine beam charge, beam position and beam size in both the x-direction and y-directions. Beam monitors can be stand-alone devices or integrated within linear accelerators. Accelerators can include off-axis beam monitor coupling ports and on-axis tuning features.
    Type: Application
    Filed: May 25, 2023
    Publication date: January 25, 2024
    Applicant: TibaRay, Inc.
    Inventors: Sami Tantawi, Luyao Xu, Filippos Toufexis
  • Publication number: 20230380047
    Abstract: A linear accelerator having multiple cavities along a beamline that is powered by a pair of distribution waveguide manifolds with a sequence of feed arms connecting the manifolds to the cell sections and a single RF feed is described herein. The distribution waveguide manifolds are connected to the cell sections so that alternating pairs of cell sections are connected to opposite distribution waveguide manifolds. The individual cavities are individually optimized according to the electron speed along the beamline. The geometry of the cell junctions and connecting channels between the manifolds and cavities can be individually optimized along the beamline as well and can include a serpentine configuration to provide a consistent RF channel length between the manifolds and differing cavities. Methods of designing the linear accelerator and fabricating the accelerator are also provided.
    Type: Application
    Filed: March 20, 2023
    Publication date: November 23, 2023
    Applicant: TibaRay, Inc.
    Inventor: Sami Tantawi
  • Patent number: 11562874
    Abstract: A photoinjector system containing modularly-structured waveguide-mode launcher, which is reversibly connected to the RF gun (containing a tubular construction formed with disattachably-affixed to one another structurally-complementary halves); and a solenoid magnet in operation enclosing such tubular structure in a central hollow. The resulting quality, power, and frequency rate of operation as well as cost of manufacturing and operation of the system are superior as compared with those of a related art system.
    Type: Grant
    Filed: May 28, 2021
    Date of Patent: January 24, 2023
    Assignees: Arizona Board of Regents on Behalf of Arizona State University, TibaRay, Inc.
    Inventors: William Graves, Vinod Bharadwaj, Valery Dolgashev, Philipp Borchard
  • Patent number: 11031206
    Abstract: A photoinjector system containing modularly-structured waveguide-mode launcher, which is reversibly connected to the RF gun (containing a tubular construction formed with disattachably-affixed to one another structurally-complementary halves); and a solenoid magnet in operation enclosing such tubular structure in a central hollow. The resulting quality, power, and frequency rate of operation as well as cost of manufacturing and operation of the system are superior as compared with those of a related art system.
    Type: Grant
    Filed: November 14, 2019
    Date of Patent: June 8, 2021
    Assignees: Arizona Board of Regents on behalf of Arizona State University, TibaRay, Inc.
    Inventors: William (Bill) Graves, Vinod Bharadwaj, Valery Dolgashev