Patents by Inventor Jacob Grun

Jacob Grun 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: 10018646
    Abstract: A fiber optic pressure and mass velocity sensor for measuring a shock wave pressure in a solid media includes an optical fiber having a means for measuring a change in an optical path length (OPL) of the fiber when positioned in the solid media caused by the shock wave altering the physical length of the fiber and the refractive index of the fiber. The means for measuring the change in the OPL is coupled at one end to a laser and at its second end to a means for detecting the change in OPL. The sensor has a high operating bandwidth (>>10 MHz), is sufficiently rigid to withstand the force of the shock wave, has a sensitivity that can also be tailored for the application, and is immune to electromagnetic interference. Measurement can be made on materials under extreme strain conditions, and the sensor can also provide characterization of protective materials such as bullet/blast proof materials.
    Type: Grant
    Filed: September 10, 2014
    Date of Patent: July 10, 2018
    Assignee: The United States of America, as represented by the Secretary of the Navy
    Inventors: Geoffrey A. Cranch, Jacob Grun
  • Publication number: 20150323558
    Abstract: A fiber optic pressure and mass velocity sensor for measuring a shock wave pressure in a solid media includes an optical fiber having a means for measuring a change in an optical path length (OPL) of the fiber when positioned in the solid media caused by the shock wave altering the physical length of the fiber and the refractive index of the fiber. The means for measuring the change in the OPL is coupled at one end to a laser and at its second end to a means for detecting the change in OPL. The sensor has a high operating bandwidth (>>10 MHz), is sufficiently rigid to withstand the force of the shock wave, has a sensitivity that can also be tailored for the application, and is immune to electromagnetic interference. Measurement can be made on materials under extreme strain conditions, and the sensor can also provide characterization of protective materials such as bullet/blast proof materials.
    Type: Application
    Filed: September 10, 2014
    Publication date: November 12, 2015
    Applicant: The Government of the United States of America as represented by the Secretary of the Navy
    Inventors: Geoffrey A. Cranch, Jacob Grun
  • Publication number: 20100309463
    Abstract: A scattered-light spectroscopy system for collecting light scattered from a sample, e.g. Raman-scattered light, to produce a spectrum of the sample, includes a cylindrical cell for holding the sample that is transparent and coated on either its inside surface or outside surface with a reflective coating, e.g. aluminum. The reflective coating has an opening for aligning with an aperture in a spectrometer for receiving the sample-scattered light. Light from a source such as a laser illuminates the sample to produce a scattered light having a first part received directly at the opening and a second part reflected by the reflective coating one or more times prior to arrival at the opening, thereby adding to the total scattered light entering the aperture of the spectrometer to improve its collection efficiency.
    Type: Application
    Filed: August 3, 2009
    Publication date: December 9, 2010
    Inventors: Robert Lucke, Jacob Grun, Charles K. Manka, Sergei Nikitin
  • Patent number: 7760354
    Abstract: A spectroscopic detector includes a tunable light source, such as a continuously tunable, optical parametric oscillator laser; means for measuring the emitted radiation at a plurality of emission wavelengths to obtain a plurality of spectral measurement data; and a processor for processing the spectral measurement data, where the processor includes a multispectral data processing algorithm or is configured for 1) combining the plurality of spectral measurement data into a composite spectrum, and 2) applying the algorithm to the composite spectrum. The spectra such as resonant and near-resonant Raman Spectra that are acquired are more complete and contain more information. A powerful multispectral analysis code such as IHPS, CHOMPS, or ENN analyzes the acquired data points, examining details of the spectra that could not be handled by traditional methods.
    Type: Grant
    Filed: October 9, 2008
    Date of Patent: July 20, 2010
    Assignee: The United States of America as represented by the Secretary of the Navy
    Inventors: Jacob Grun, Sergei Nikitin, Charles K Manka
  • Publication number: 20090086205
    Abstract: A spectroscopic detector includes a tunable light source, such as a continuously tunable, optical parametric oscillator laser; means for measuring the emitted radiation at a plurality of emission wavelengths to obtain a plurality of spectral measurement data; and a processor for processing the spectral measurement data, where the processor includes a multispectral data processing algorithm or is configured for 1) combining the plurality of spectral measurement data into a composite spectrum, and 2) applying the algorithm to the composite spectrum. The spectra such as resonant and near-resonant Raman Spectra that are acquired are more complete and contain more information. A powerful multispectral analysis code such as IHPS, CHOMPS, or ENN analyzes the acquired data points, examining details of the spectra that could not be handled by traditional methods.
    Type: Application
    Filed: October 9, 2008
    Publication date: April 2, 2009
    Inventors: Jacob Grun, Sergei Nikitin, Charles K. Manka
  • Patent number: 7436510
    Abstract: A spectroscopic detector for identifying the presence of a first substance in the presence of another substance includes a laser for illuminating the substances at a plurality of wavelengths to induce the emission of radiation characteristic of the substance; a spectrometer for measuring the emitted radiation to obtain a plurality of spectral measurement data; and a processor for processing the data. An algorithm combines the data into a composite spectrum and a parameter characteristic of the first substance is identified while information in the composite spectrum contributed by emission of radiation from the other substance is removed to identify the presence of the first substance and obtain a characteristic spectral signature of the first substance. The signature is compared to signatures in a spectral library database, wherein at least some of the library signatures have spectral characteristics differentiated from each other by identifiable spectral characteristics caused by environmental factors.
    Type: Grant
    Filed: November 28, 2007
    Date of Patent: October 14, 2008
    Assignees: The United States of America as represented by the Secretary of the Navy
    Inventors: Jacob Grun, Charles K Manka, Jeffrey H Bowles, Michael R Corson, Jay F Sperry
  • Publication number: 20080137082
    Abstract: A spectroscopic detector for identifying the presence of a substance includes a laser for illuminating the substance with electromagnetic radiation at a plurality of wavelengths to induce the emission of radiation characteristic of the substance; a spectrometer or photometer for measuring the emitted radiation at a plurality of emission wavelengths to obtain a plurality of spectral measurement data; and a processor for processing the spectral measurement data. The processor includes a processing algorithm configured for combining the plurality of spectral measurement data into a composite spectrum; and applying the algorithm to the composite spectrum whereby at least one parameter characteristic of the substance is identified while information in the composite spectrum contributed by an emission of radiation from any other substance is removed to thereby identify the presence of the substance, and thereby obtain a characteristic spectral signature of the substance.
    Type: Application
    Filed: November 28, 2007
    Publication date: June 12, 2008
    Inventors: Jacob Grun, Charles K. Manka, Jeffrey H. Bowles, Michael R. Corson, Jay F. Sperry
  • Publication number: 20070279629
    Abstract: A spectroscopic detector for identifying the presence of a first substance in the presence of another substance includes a laser for illuminating the substances at a plurality of wavelengths to induce the emission of radiation characteristic of the substance; a spectrometer for measuring the emitted radiation to obtain a plurality of spectral measurement data; and a processor for processing the data. An algorithm combines the data into a composite spectrum and a parameter characteristic of the first substance is identified while information in the composite spectrum contributed by emission of radiation from the other substance is removed to identify the presence of the first substance and obtain a characteristic spectral signature of the first substance. The signature is compared to signatures in a spectral library database, wherein at least some of the library signatures have spectral characteristics differentiated from each other by identifiable spectral characteristics caused by environmental factors.
    Type: Application
    Filed: January 7, 2005
    Publication date: December 6, 2007
    Inventors: Jacob Grun, Charles Manka, Jeffrey Bowles, Michael Corson
  • Patent number: 6001715
    Abstract: Bulk crystalline materials are annealed by introducing into them mechanical energy of sufficient intensity to create a large amplitude sound wave. The mechanical energy may be introduced into the material, for example, by laser ablation. Where the bulk crystalline material is a doped semiconductor, the process also electrically activates the material.
    Type: Grant
    Filed: June 26, 1996
    Date of Patent: December 14, 1999
    Assignee: The United States of America as represented by the Secretary of the Navy
    Inventors: Charles Keith Manka, Jacob Grun, Billy Charles Covington, David William Donnelly