Patents by Inventor Yohannes Abate

Yohannes Abate has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20230204986
    Abstract: A metasurface for propagating phonon polaritons includes correlated oxide on a substrate and a wiring pattern of predetermined geometric shape on the surface thereof. There is a flake of van der Waals phononic exfoliable material on top of the wiring pattern/region. The wiring pattern may be formed by c-AFM or any other appropriate methods.
    Type: Application
    Filed: November 30, 2022
    Publication date: June 29, 2023
    Inventors: Neda Alsadat Aghamiri, Yohannes Abate, Shriram Ramanathan
  • Patent number: 11409142
    Abstract: Metallic and dielectric domains in phase change materials (PCM) provide spatially localized changes in the local dielectric environment, enabling launching, reflection, and transmission of hyperbolic polaritons (HPs) at the PCM domain boundaries, and tuning the wavelength of HPs propagating in hyperbolic materials over these domains, providing a methodology for realizing planar, sub-diffractive refractive optics. This approach offers reconfigurable control of in-plane HP propagation to provide design optical functionality because the phase change material can be manipulated by changing the local structure, for example, to manipulate polaritons in the adjacent hyperbolic material, thus tuning the wave propagation properties of the polaritons in the hyperbolic material.
    Type: Grant
    Filed: March 7, 2019
    Date of Patent: August 9, 2022
    Assignees: Vanderbilt University, University of Georgia Research Foundation, Inc.
    Inventors: Joshua D. Caldwell, Thomas G. Folland, Richard F. Haglund, Yohannes Abate
  • Publication number: 20190278112
    Abstract: Metallic and dielectric domains in phase change materials (PCM) provide spatially localized changes in the local dielectric environment, enabling launching, reflection, and transmission of hyperbolic polaritons (HPs) at the PCM domain boundaries, and tuning the wavelength of HPs propagating in hyperbolic materials over these domains, providing a methodology for realizing planar, sub-diffractive refractive optics. This approach offers reconfigurable control of in-plane HP propagation to provide design optical functionality because the phase change material can be manipulated by changing the local structure, for example, to manipulate polaritons in the adjacent hyperbolic material, thus tuning the wave propagation properties of the polaritons in the hyperbolic material.
    Type: Application
    Filed: March 7, 2019
    Publication date: September 12, 2019
    Inventors: Joshua D. Caldwell, Thomas G. Folland, Richard F. Haglund, Yohannes Abate