Patents by Inventor Ben Vakoc

Ben Vakoc 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: 20160231507
    Abstract: Exemplary apparatus and method can be availed for providing at least one electromagnetic radiation. For example, it is possible to provide at least one first electromagnetic radiation having a frequency that changes over time with a first characteristic period. Further, with at least one hardware arrangement, it is possible to receive and modify the first electromagnetic radiation(s) into at least one second electromagnetic radiation having a frequency that changes over time with a second characteristic period. The second characteristic period can be smaller than the first characteristic period. The hardware arrangement(s) can include a resonant cavity having a round-trip propagation time for the first electromagnetic radiation(s) that can be approximately the same as the first characteristic period.
    Type: Application
    Filed: April 13, 2016
    Publication date: August 11, 2016
    Inventors: Eman Namati, Guillermo J. Tearney, Brett Eugene Bouma, Ben Vakoc
  • Patent number: 9341783
    Abstract: Exemplary apparatus and method can be availed for providing at least one electromagnetic radiation. For example, it is possible to provide at least one first electromagnetic radiation having a frequency that changes over time with a first characteristic period. Further, with at least one hardware arrangement, it is possible to receive and modify the first electromagnetic radiation(s) into at least one second electromagnetic radiation having a frequency that changes over time with a second characteristic period. The second characteristic period can be smaller than the first characteristic period. The hardware arrangement(s) can include a resonant cavity having a round-trip propagation time for the first electromagnetic radiation(s) that can be approximately the same as the first characteristic period.
    Type: Grant
    Filed: October 18, 2012
    Date of Patent: May 17, 2016
    Assignee: The General Hospital Corporation
    Inventors: Eman Namati, Guillermo J. Tearney, Brett E. Bouma, Ben Vakoc
  • Publication number: 20050259989
    Abstract: Various methods and apparatuses are described for a multiple wavelength light source. The multiple wavelength light source may be located in a central office to supply a first broad band of wavelengths for a one or more passive optical networks. The multiple wavelength light source generates a series of four or more pulses of light in the first broad band of wavelengths. Each pulse of light in that series has a different center wavelength. The series of pulses of light in the first broad band of wavelengths may be repeated at a channel data rate of an optical receiver at a subscriber's location.
    Type: Application
    Filed: May 18, 2004
    Publication date: November 24, 2005
    Inventors: Wayne Sorin, Ben Vakoc
  • Publication number: 20050135449
    Abstract: Various methods and apparatuses are described in which an array of optical gain mediums capable of lasing are contained in a single integral unit. The array may contain four or more optical gain mediums capable of lasing. Each optical gain medium capable of lasing supplies a separate optical signal containing a band of wavelengths different than the other optical gain mediums capable of lasing in the array to a first multiplexer/demultiplexer. A connection for an output fiber exists to route an optical signal to and from a passive optical network.
    Type: Application
    Filed: December 19, 2003
    Publication date: June 23, 2005
    Inventors: Wayne Sorin, Ben Vakoc
  • Patent number: 6904196
    Abstract: Various methods, systems, and apparatuses in which a chromatic dispersion compensation module includes an input fiber, an output fiber, a lens, and an etalon resonator. The input fiber has a first core with a center. The output fiber has a second core with a center. The input fiber is adjacent to the output fiber. The spacing between the center of the first core and the center of the second core is affixed to less than one hundred and twenty microns. The input fiber routes an optical signal to a lens. The lens routes the optical signal to the etalon resonator. The etalon resonator has reflectors with fixed reflectivity and a variable optical length to induce a wavelength-dependent delay into the optical signal. The etalon resonator routes the optical signal to the output fiber through the lens.
    Type: Grant
    Filed: April 22, 2004
    Date of Patent: June 7, 2005
    Assignee: Novera Optics, Inc.
    Inventors: Wayne V. Sorin, Byoung Yoon Kim, Ben Vakoc
  • Patent number: 6804057
    Abstract: Various methods, apparatuses, and systems in which a chromatic dispersion compensation module includes a beam spatial orientation device to separate an optical signal into a first polarized light signal and a second polarized light signal. The second polarized light signal has the posited polarization of the first polarized signal. A wavelength-dependant delay path couples to the beam spatial orientation device. A polarization rotator couples to the wavelength-dependant delay path such that the first polarized light signal reflects into the wavelength-dependant delay path in substantially the opposite direction of the second polarized light signal.
    Type: Grant
    Filed: February 6, 2002
    Date of Patent: October 12, 2004
    Assignee: Novera Optics, Inc.
    Inventor: Ben Vakoc
  • Patent number: 6788845
    Abstract: Various methods, systems and apparatuses in which a chromatic dispersion compensation module includes an input fiber, an output fiber, a lens, and an etalon resonator. The input fiber has a first core with a center. The output fiber has a second core with a center. The input fiber is adjacent to the output fiber. The spacing between the center of the first core and the center of the second core is affixed to less than one hundred and twenty microns. The input fiber routes an optical signal to lens. The lens routes the optical signal to the etalon resonator. The etalon resonator has reflectors with fixed reflectivity and a variable optical length to induce a wavelength-dependent delay into the optical signal. The a etalon resonator routes the optical signal to the output fiber through the lens.
    Type: Grant
    Filed: May 31, 2002
    Date of Patent: September 7, 2004
    Assignee: Novera Optics, Inc.
    Inventors: Wayne V. Sorin, Byoung Yoon Kim, Ben Vakoc