Patents by Inventor Mykhailo Povolotskyi

Mykhailo Povolotskyi 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).

  • Patent number: 10311179
    Abstract: A method for modeling a material at least partially-defined by atomic information includes, for each of a plurality of configurations of the material, determining energy moments for a density of states of the respective configuration of the material, and generating a tight binding Hamiltonian matrix for the respective configuration of the material. The method further includes, for each of the plurality of configurations of the material, forming a tight binding model of the configuration of the material by resolving a linking of (i) the energy moments for the density of states of the material to (ii) the tight binding Hamiltonian matrix for the material. Still further the method includes, based on the tight binding models for each of the configurations of the material, forming an environmentally-adapted tight binding model.
    Type: Grant
    Filed: August 28, 2018
    Date of Patent: June 4, 2019
    Assignee: Purdue Research Foundation
    Inventors: Gerhard Klimeck, Mykhailo Povolotskyi, Tillmann C Kubis, Ganesh Hegde
  • Publication number: 20180373826
    Abstract: A method for modeling a material at least partially-defined by atomic information includes, for each of a plurality of configurations of the material, determining energy moments for a density of states of the respective configuration of the material, and generating a tight binding Hamiltonian matrix for the respective configuration of the material. The method further includes, for each of the plurality of configurations of the material, forming a tight binding model of the configuration of the material by resolving a linking of (i) the energy moments for the density of states of the material to (ii) the tight binding Hamiltonian matrix for the material.
    Type: Application
    Filed: August 28, 2018
    Publication date: December 27, 2018
    Applicant: Purdue Research Foundation
    Inventors: Gerhard Klimeck, Mykhailo Povolotskyi, Tillmann C Kubis, Ganesh Hegde
  • Patent number: 10061877
    Abstract: A method for modeling a material at least partially-defined by atomic information includes, for each of a plurality of configurations of the material, determining energy moments for a density of states of the respective configuration of the material, and generating a tight binding Hamiltonian matrix for the respective configuration of the material. The method further includes, for each of the plurality of configurations of the material, forming a tight binding model of the configuration of the material by resolving a linking of (i) the energy moments for the density of states of the material to (ii) the tight binding Hamiltonian matrix for the material. Still further the method includes, based on the tight binding models for each of the configurations of the material, forming an environmentally-adapted tight binding model.
    Type: Grant
    Filed: December 31, 2017
    Date of Patent: August 28, 2018
    Assignee: PURDUE RESEARCH FOUNDATION
    Inventors: Gerhard Klimeck, Mykhailo Povolotskyi, Tillmann C Kubis, Ganesh Hegde
  • Publication number: 20180121583
    Abstract: A method for modeling a material at least partially-defined by atomic information includes, for each of a plurality of configurations of the material, determining energy moments for a density of states of the respective configuration of the material, and generating a tight binding Hamiltonian matrix for the respective configuration of the material. The method further includes, for each of the plurality of configurations of the material, forming a tight binding model of the configuration of the material by resolving a linking of (i) the energy moments for the density of states of the material to (ii) the tight binding Hamiltonian matrix for the material.
    Type: Application
    Filed: December 31, 2017
    Publication date: May 3, 2018
    Applicant: Purdue Research Foundation
    Inventors: Gerhard Klimeck, Mykhailo Povolotskyi, Tillmann C. Kubis, Ganesh Hegde
  • Patent number: 9858365
    Abstract: A method for modeling a material at least partially-defined by atomic information includes, for each of a plurality of configurations of the material, determining energy moments for a density of states of the respective configuration of the material, and generating a tight binding Hamiltonian matrix for the respective configuration of the material. The method further includes, for each of the plurality of configurations of the material, forming a tight binding model of the configuration of the material by resolving a linking of (i) the energy moments for the density of states of the material to (ii) the tight binding Hamiltonian matrix for the material. Still further the method includes, based on the tight binding models for each of the configurations of the material, forming an environmentally-adapted tight binding model.
    Type: Grant
    Filed: October 24, 2014
    Date of Patent: January 2, 2018
    Assignee: PURDUE RESEARCH FOUNDATION
    Inventors: Gerhard Klimeck, Mykhailo Povolotskyi, Tillmann Christoph Kubis, Ganesh Hegde
  • Publication number: 20150120259
    Abstract: A method for modeling a material at least partially-defined by atomic information includes, for each of a plurality of configurations of the material, determining energy moments for a density of states of the respective configuration of the material, and generating a tight binding Hamiltonian matrix for the respective configuration of the material. The method further includes, for each of the plurality of configurations of the material, forming a tight binding model of the configuration of the material by resolving a linking of (i) the energy moments for the density of states of the material to (ii) the tight binding Hamiltonian matrix for the material. Still further the method includes, based on the tight binding models for each of the configurations of the material, forming an environmentally-adapted tight binding model.
    Type: Application
    Filed: October 24, 2014
    Publication date: April 30, 2015
    Inventors: Gerhard Klimeck, Mykhailo Povolotskyi, Tillmann Christoph Kubis, Ganesh Hegde