Patents by Inventor Benjamin L. Doughty

Benjamin L. Doughty 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: 11740182
    Abstract: A system for multimodal nonlinear optical imaging is provided. Each mode uses a high NA objective to cause total internal reflection excitation at a sample-substrate interface. The system has a femtosecond oscillator to generate pulses used for two beams. The objective receives at least one beam, redirects the received at least one beam through a dielectric substrate to cause the TIR and produces corresponding evanescent waves in a portion of the sample adjacent to the sample-substrate interface, and collects a backward-propagating beam of pulses of responsive light. The portion of the sample illuminated by the evanescent waves emits responsive light. Different modes or combinations of the distinct modalities may be selected to access complementary chemical and structural information for various chemical species near the sample-substrate interface. Each mode may have mode-specific control such as selective beam blocking, power ratios and filtering.
    Type: Grant
    Filed: April 22, 2022
    Date of Patent: August 29, 2023
    Assignee: UT-BATTELLE, LLC
    Inventors: Benjamin L. Doughty, Yingzhong Ma, Uvinduni Premadasa
  • Patent number: 11604144
    Abstract: A system is provided. The system has a femtosecond oscillator to generate pulses used for pump and probe beams. A photonic crystal fiber is disposed in a path of the probe beam and produces pulses for a chirped probe beam. A high NA objective receives the pump and the chirped probe beam, redirects the received beams through a dielectric substrate towards an interface between a sample and the dielectric substrate to cause total internal reflection (TIR) at the sample-substrate interface, and produces corresponding evanescent waves in a portion of the sample adjacent to the sample-substrate interface, and collects a backward-propagating beam of pulses of responsive light. The portion of the sample illuminated by the evanescent waves emits responsive light. The dielectric substrate is transparent to the responsive light, the pump and the chirped probe beam. An image is produced having a specific image size using the received backward-propagating beam.
    Type: Grant
    Filed: April 26, 2021
    Date of Patent: March 14, 2023
    Assignee: UT-BATTELLE, LLC
    Inventors: Benjamin L. Doughty, Yingzhong Ma
  • Publication number: 20220341849
    Abstract: A system for multimodal nonlinear optical imaging is provided. Each mode uses a high NA objective to cause total internal reflection excitation at a sample-substrate interface. The system has a femtosecond oscillator to generate pulses used for two beams. The objective receives at least one beam, redirects the received at least one beam through a dielectric substrate to cause the TIR and produces corresponding evanescent waves in a portion of the sample adjacent to the sample-substrate interface, and collects a backward-propagating beam of pulses of responsive light. The portion of the sample illuminated by the evanescent waves emits responsive light. Different modes or combinations of the distinct modalities may be selected to access complementary chemical and structural information for various chemical species near the sample-substrate interface. Each mode may have mode-specific control such as selective beam blocking, power ratios and filtering.
    Type: Application
    Filed: April 22, 2022
    Publication date: October 27, 2022
    Inventors: Benjamin L. Doughty, Yingzhong Ma, Uvinduni Premadasa
  • Publication number: 20210381986
    Abstract: A system is provided. The system has a femtosecond oscillator to generate pulses used for pump and probe beams. A photonic crystal fiber is disposed in a path of the probe beam and produces pulses for a chirped probe beam. A high NA objective receives the pump and the chirped probe beam, redirects the received beams through a dielectric substrate towards an interface between a sample and the dielectric substrate to cause total internal reflection (TIR) at the sample-substrate interface, and produces corresponding evanescent waves in a portion of the sample adjacent to the sample-substrate interface, and collects a backward-propagating beam of pulses of responsive light. The portion of the sample illuminated by the evanescent waves emits responsive light. The dielectric substrate is transparent to the responsive light, the pump and the chirped probe beam. An image is produced having a specific image size using the received backward-propagating beam.
    Type: Application
    Filed: April 26, 2021
    Publication date: December 9, 2021
    Inventors: Benjamin L. Doughty, Yingzhong Ma
  • Patent number: 10620050
    Abstract: A vibrational sum frequency generation spectroscopy system with pulse shaping is provided. The pulse shaping provides tunable NIR-Shaped light pulses based on user input parameters which may be specified to customize the system for different experimental and testing conditions or needs.
    Type: Grant
    Filed: March 5, 2019
    Date of Patent: April 14, 2020
    Assignee: UT-BATTELLE, LLC
    Inventors: Azhad U. Chowdhury, Benjamin L. Doughty, Daniel A. Lutterman, Yingzhong Ma, Tessa R. Calhoun, Brianna R. Watson
  • Publication number: 20190271595
    Abstract: A vibrational sum frequency generation spectroscopy system with pulse shaping is provided. The pulse shaping provides tunable NIR-Shaped light pulses based on user input parameters which may be specified to customize the system for different experimental and testing conditions or needs.
    Type: Application
    Filed: March 5, 2019
    Publication date: September 5, 2019
    Inventors: Azhad U. Chowdhury, Benjamin L. Doughty, Daniel A. Lutterman, Yingzhong Ma, Tessa R. Calhoun, Brianna R. Watson