Patents by Inventor Larry R. Baylor

Larry R. Baylor 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: 20150362127
    Abstract: A cryogenic material transfer line has an inner tubular member and a coaxially disposed outer tubular member that together define an annular volume. Within the annular volume is a flow enhancing feature that increases the residence time and path length of a gas flowing within the annulus. The gas flowing inside the annulus thermally interacts with a fluid outside of the transfer line to provide a more consistent gas temperature and flow rate for use in scientific experiments.
    Type: Application
    Filed: April 24, 2015
    Publication date: December 17, 2015
    Inventors: Robert C. Duckworth, Larry R. Baylor, Stephen K. Combs, Steven J. Meitner
  • Patent number: 7608824
    Abstract: An infrared imaging device and method for making infrared detector(s) having at least one anode, at least one cathode with a substrate electrically connected to a plurality of doped carbon nanostructures; and bias circuitry for applying an electric field between the anode and the cathode such that when infrared photons are absorbed by the nanostructures the emitted field current is modulated. The detectors can be doped with cesium to lower the work function.
    Type: Grant
    Filed: September 20, 2007
    Date of Patent: October 27, 2009
    Assignee: UT-Battelle, LLC
    Inventors: Kofi Korsah, Larry R Baylor, John B Caughman, Roger A Kisner, Philip D Rack, Ilia N Ivanov
  • Publication number: 20090078872
    Abstract: An infrared imaging device and method for making infrared detector(s) having at least one anode, at least one cathode with a substrate electrically connected to a plurality of doped carbon nanostructures; and bias circuitry for applying an electric field between the anode and the cathode such that when infrared photons are absorbed by the nanostructures the emitted field current is modulated. The detectors can be doped with cesium to lower the work function.
    Type: Application
    Filed: September 20, 2007
    Publication date: March 26, 2009
    Applicants: UT-BATTELLE, LLC, UNIVERSITY OF TENNESSEE RESEARCH FOUNDATION
    Inventors: Kofi Korsah, Larry R. Baylor, John B. Caughman, Roger A. Kisner, Philip D. Rack, Ilia N. Ivanov
  • Patent number: 6917043
    Abstract: Systems and method are described for addressable field emission array (AFEA) chips. A plurality of individually addressable cathodes are integrated with an electrostatic focusing stack and/or a plurality of detectors on the addressable field emission array. The systems and methods provide advantages including the avoidance of space-charge blow-up.
    Type: Grant
    Filed: September 30, 2002
    Date of Patent: July 12, 2005
    Assignee: UT-Battelle LLC
    Inventors: Clarence E. Thomas, Larry R. Baylor, Edgar Voelkl, Michael L. Simpson, Michael J. Paulus, Douglas Lowndes, John Whealton, John C. Whitson, John B. Wilgen
  • Publication number: 20030038244
    Abstract: Systems and methods are described for addressable field emission array (AFEA) chips. A method of operating an addressable field-emission array, includes: generating a plurality of electron beams from a pluralitly of emitters that compose the addressable field-emission array; and focusing at least one of the plurality of electron beams with an on-chip electrostatic focusing stack. The systems and methods provide advantages including the avoidance of space-charge blow-up.
    Type: Application
    Filed: September 30, 2002
    Publication date: February 27, 2003
    Inventors: Clarence E. Thomas, Larry R. Baylor, Edgar Voelkl, Michael L. Simpson, Michael J. Paulus, Douglas Lowndes, John H. Whealton, John C. Whitson, John B. Wilgen
  • Patent number: 6498349
    Abstract: Systems and methods are described for addressable field emission array (AFEA) chips. A method of operating an addressable field-emission array, includes: generating a plurality of electron beams from a pluralitly of emitters that compose the addressable field-emission array; and focusing at least one of the plurality of electron beams with an on-chip electrostatic focusing stack. The systems and methods provide advantages including the avoidance of space-charge blow-up.
    Type: Grant
    Filed: August 5, 1999
    Date of Patent: December 24, 2002
    Assignee: UT-Battelle
    Inventors: Clarence E. Thomas, Larry R. Baylor, Edgar Voelkl, Michael L. Simpson, Michael J. Paulus, Douglas H. Lowndes, John H. Whealton, John C. Whitson, John B. Wilgen
  • Patent number: 6078392
    Abstract: Systems and methods for direct-to-digital holography are described. An apparatus includes a laser; a beamsplitter optically coupled to the laser; a reference beam mirror optically coupled to the beamsplitter; an object optically coupled to the beamsplitter, a focusing lens optically coupled to both the reference beam mirror and the object; and a digital recorder optically coupled to the focusing lens. A reference beam is incident upon the reference beam mirror at a non-normal angle, and the reference beam and an object beam are focused by the focusing lens at a focal plane of the digital recorder to form an image. The systems and methods provide advantages in that computer assisted holographic measurements can be made.
    Type: Grant
    Filed: June 11, 1997
    Date of Patent: June 20, 2000
    Assignee: Lockheed Martin Energy Research Corp.
    Inventors: Clarence E. Thomas, Larry R. Baylor, Gregory R. Hanson, David A. Rasmussen, Edgar Voelkl, James Castracane, Michelle Simkulet, Lawrence Clow
  • Patent number: 5892231
    Abstract: Systems and methods for direct-to-digital holography are described. An apparatus includes a laser; a beamsplitter optically coupled to the laser; a reference beam mirror optically coupled to the beamsplitter; an object optically coupled to the beamsplitter, a focusing lens optically coupled to both the reference beam mirror and the object; and a digital recorder optically coupled to the focusing lens. A reference beam is incident upon the reference beam mirror at a non-normal angle, and the reference beam and an object beam are focused by the focusing lens at a focal plane of the digital recorder to form an image. The systems and methods provide advantages in that computer assisted holographic measurements can be made.
    Type: Grant
    Filed: February 5, 1997
    Date of Patent: April 6, 1999
    Assignee: Lockheed Martin Energy Research Corporation
    Inventors: Larry R. Baylor, Clarence E. Thomas, Edgar Voelkl, James A. Moore, Michael L. Simpson, Michael J. Paulus