Patents by Inventor Amy Foster

Amy Foster 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: 20250093580
    Abstract: A photonic element includes a substrate; a plurality of layers disposed in a stack configuration in a first direction on the substrate; and a first optical transmission component, a second optical transmission component, a third optical transmission component, and a fourth optical transmission component. The first optical transmission component includes two optical transmission structures that are disposed in a first layer, the second optical transmission component includes two optical transmission structures that are disposed in a second layer, the third optical transmission component includes two optical transmission structures that disposed in a third layer, and the fourth optical transmission component includes two optical transmission structures that are disposed in a fourth layer. The second layer and the third layer are each disposed between the first layer and the fourth layer in the stack configuration.
    Type: Application
    Filed: April 12, 2024
    Publication date: March 20, 2025
    Inventors: William D. HOUCK, Amy FOSTER, Mark FOSTER, Aaron SCHREYER-MILLER, Neil MACFARLANE
  • Patent number: 9323284
    Abstract: There is set forth in one embodiment an apparatus and method for imparting a phase shift to an input waveform for output of a converted waveform. In one embodiment, a phase shift can be provided by four wave mixing of an input waveform and a pump pulse. In one embodiment, there is set forth an apparatus and method for generating a high resolution time domain representation of an input waveform comprising: dispersing the input waveform to generate a dispersed input waveform; subjecting the dispersed input waveform to four wave mixing by combining the dispersed input waveform with a dispersed pump pulse to generate a converted waveform; and presenting the converted waveform to a detector unit. In one embodiment a detector unit can include a spectrometer (spectrum analyzer) for recording of the converted waveform and output of a record representing the input waveform.
    Type: Grant
    Filed: October 14, 2009
    Date of Patent: April 26, 2016
    Assignee: Cornell University
    Inventors: Mark Foster, Alexander Gaeta, David Geraghty, Michal Lipson, Reza Salem, Amy Foster
  • Patent number: 9291509
    Abstract: Systems and methods are provided for ultrafast optical waveform sampling based on temporal stretching of an input signal waveform. Temporal stretching is performed using a time lens based on four-wave mixing in a nonlinear medium. The signal is passed through an input dispersive element. The dispersed signal is sent into the time lens, which comprises a chirped pump pulse and a nonlinear medium. The chirped pump pulse is combined with the signal. The four-wave mixing process occurs in the nonlinear device or medium, which results in the generation of a signal at a new optical frequency (idler). The idler is spectrally separated from the signal and pump pulse using a bandpass filter and sent into an output dispersive element. The output dispersive element is longer than the input dispersive element and the temporal stretching factor is given by the ratio between the dispersions of these two elements.
    Type: Grant
    Filed: February 4, 2010
    Date of Patent: March 22, 2016
    Assignee: Cornell University
    Inventors: Michal Lipson, Alexander Gaeta, Reza Salem, Mark Foster, David Geraghty, Amy Foster
  • Patent number: 9182776
    Abstract: There is set forth in one embodiment an apparatus and method for imparting a phase shift to an input waveform for output of a converted waveform. In one embodiment, a phase shift can be provided by four wave mixing of an input waveform and a pump pulse. In one embodiment, there is set forth an apparatus and method for generating a high resolution time domain representation of an input waveform comprising: dispersing the input waveform to generate a dispersed input waveform; subjecting the dispersed input waveform to four wave mixing by combining the dispersed input waveform with a dispersed pump pulse to generate a converted waveform; and presenting the converted waveform to a detector unit. In one embodiment a detector unit can include a spectrometer (spectrum analyzer) for recording of the converted waveform and output of a record representing the input waveform.
    Type: Grant
    Filed: October 14, 2009
    Date of Patent: November 10, 2015
    Assignee: CORNELL UNIVERSITY
    Inventors: Mark Foster, Alexander Gaeta, David Geraghty, Michal Lipson, Reza Salem, Amy Foster
  • Publication number: 20140264096
    Abstract: The present application is directed to methods and apparatus for multi-axis optical measurements of a fluid stream flowing or contained in an optically transparent measurement chamber. Sonic energy is directed into the fluid in the measurement chamber to clean interior surfaces of the measurement chamber and promote homogenization of the fluid. Optical measurements may be taken of the fluid.
    Type: Application
    Filed: March 14, 2014
    Publication date: September 18, 2014
    Inventors: Dale Brost, Justin Caplinger, Amy Foster, Keith Moffatt, Wade Peterson
  • Publication number: 20140260561
    Abstract: The present application is directed to methods for measuring hydrocarbons in a water sample. The water sample may be diluted by a dilution factor to reduce the salinity level. An amount of surfactant determined by the dilution factor and the critical micelle concentration of the surfactant may be added to the water sample. The hydrocarbon concentration may be determined by fluorescence measurement.
    Type: Application
    Filed: March 14, 2014
    Publication date: September 18, 2014
    Inventors: Dale Brost, Amy Foster
  • Patent number: 8270783
    Abstract: The present invention is directed towards systems and methods for adjusting intensity, wavelength and higher and lower frequency components of an optical signal. Photonic apparatus receives a first and a second optical signal. A waveguide provides an anomalous group velocity dispersion the first optical signal or the second optical signal and adjusts intensity or wavelength of the first optical signal or the second optical signal, in response to the anomalous group velocity dispersion. In some embodiments photonic apparatus receives an optical signal comprising a lower frequency component received an amount of time prior to a higher frequency component of the optical signal. A waveguide provides an anomalous group velocity dispersion for the optical signal and adjusts the amount of time between the higher frequency component and the lower frequency component in response to the anomalous group velocity dispersion.
    Type: Grant
    Filed: June 23, 2011
    Date of Patent: September 18, 2012
    Assignee: Cornell University
    Inventors: Mark Foster, Alexander Gaeta, Michal Lipson, Jay Sharping, Amy Foster
  • Publication number: 20120095711
    Abstract: There is set forth in one embodiment an apparatus and method for imparting a phase shift to an input waveform for output of a converted waveform. In one embodiment, a phase shift can be provided by four wave mixing of an input waveform and a pump pulse. In one embodiment, there is set forth an apparatus and method for generating a high resolution time domain representation of an input waveform comprising: dispersing the input waveform to generate a dispersed input waveform; subjecting the dispersed input waveform to four wave mixing by combining the dispersed input waveform with a dispersed pump pulse to generate a converted waveform; and presenting the converted waveform to a detector unit. In one embodiment a detector unit can include a spectrometer (spectrum analyzer) for recording of the converted waveform and output of a record representing the input waveform.
    Type: Application
    Filed: October 14, 2009
    Publication date: April 19, 2012
    Applicant: Cornell University
    Inventors: Mark Foster, Alexander Gaeta, David Geraghty, Michal Lipson, Reza Salem, Amy Foster
  • Publication number: 20120093519
    Abstract: Systems and methods are provided for ultrafast optical waveform sampling based on temporal stretching of an input signal waveform. Temporal stretching is performed using a time lens based on four-wave mixing in a nonlinear medium. The signal is passed through an input dispersive element. The dispersed signal is sent into the time lens, which comprises a chirped pump pulse and a nonlinear medium. The chirped pump pulse is combined with the signal. The four-wave mixing process occurs in the nonlinear device or medium, which results in the generation of a signal at a new optical frequency (idler). The idler is spectrally separated from the signal and pump pulse using a bandpass filter and sent into an output dispersive element. The output dis persive element is longer than the input dispersive element and the temporal stretching factor is given by the ratio between the dispersions of these two elements.
    Type: Application
    Filed: February 4, 2010
    Publication date: April 19, 2012
    Inventors: Michal Lipson, Alexander Gaeta, Reza Salem, Mark Foster, David Geraghty, Amy Foster