Patents by Inventor Kevin Knopp

Kevin Knopp 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: 20080024777
    Abstract: Disclosed herein are Raman probes that include: (a) a first optical fiber for receiving laser excitation light from a light source and transmitting the same; (b) a first filter for receiving light from the first optical fiber and adapted to pass the laser excitation light and to block spurious signals associated with the light; (c) a second filter for receiving light from the first filter and adapted to direct the light toward a specimen; and (d) focusing apparatus for receiving the light from the second filter, focusing the light on the specimen so as to generate the Raman signal, and returning the Raman signal to the second filter. The second filter is further configured so that when the second filter receives the Raman signal from the focusing apparatus, the second filter filters out unwanted laser excitation light before directing the Raman signal to a second optical fiber.
    Type: Application
    Filed: June 20, 2007
    Publication date: January 31, 2008
    Inventors: Peidong Wang, Daryoosh Vakhshoori, Yu Shen, Kevin Knopp, Masud Azimi
  • Publication number: 20070116069
    Abstract: A laser package comprising a semiconductor laser having an operating temperature range and a heater, wherein the heater is configured to heat the laser when the laser package is positioned in an environment having an ambient temperature which lies outside of the operating temperature range of the laser, so that the laser will remain within the operating temperature range.
    Type: Application
    Filed: November 7, 2006
    Publication date: May 24, 2007
    Inventors: Peidong Wang, Daryoosh Vakhshoori, Masud Azimi, Kevin Knopp
  • Publication number: 20070091412
    Abstract: An optical isolator for transmitting light in a first direction along an optical pathway and blocking light in a second direction along an optical pathway. The optical isolator includes an input polarizer having a pass axis at a first angle, an output polarizer having a pass axis at a second angle, a Faraday rotator material between the polarizers having a Verdet constant and an axis of maximum length therethrough, generation means for generating a magnetic field around and inside the rotator material, and at least one reflector configured to define an optical length through the rotator material which is longer than the axis therethrough. The optical pathway length through the rotator material, the magnetic field strength, and the Verdet constant are selected so as to rotate light through the Faraday rotator material from the first angle to the second angle.
    Type: Application
    Filed: June 2, 2006
    Publication date: April 26, 2007
    Inventors: Masud Azimi, Daryoosh Vakhshoori, Kevin Knopp, Gregory Rhodes, Peidong Wang
  • Publication number: 20070058243
    Abstract: An optical bandwidth source for generating amplified spontaneous emission (ASE) across a selected wavelength range, the optical bandwidth source including a waveguide having a first end and a second end, and comprising a plurality of separate wavelength gain subsections arranged in a serial configuration between the first end and the second end so as to collectively form an active waveguide between the first end and the second end; wherein each of the wavelength gain subsections is configured to produce ASE across a wavelength range which is less than, but contained within, the selected wavelength range, whereby the plurality of separate wavelength gain subsections collectively produce ASE across the selected wavelength range.
    Type: Application
    Filed: April 19, 2006
    Publication date: March 15, 2007
    Inventors: Daryoosh Vakhshoori, Kevin Knopp, Peidong Wang, Masud Azimi
  • Publication number: 20070024848
    Abstract: An optical probe assembly for conveying Raman pump light to a specimen and for conveying a Raman signature from the specimen to an optical spectrum analyzer, the optical probe assembly comprising a light guide, wherein the light guide comprises a core region and a surrounding cladding region, wherein the core region is constructed so as to minimize the creation of a relatively broadband spurious background noise signal when conveying the Raman pump light to the specimen, and the cladding region is constructed so as to satisfy the wave guiding reflection requirements of the Raman pump light and the Raman signature.
    Type: Application
    Filed: July 11, 2006
    Publication date: February 1, 2007
    Inventors: Kevin Knopp, Leyun Zhu, Daryoosh Vakhshoori
  • Publication number: 20070002319
    Abstract: A Raman probe assembly for analyzing a specimen, comprising: a light source for generating laser excitation light; a camera for capturing an image; a light analyzer for analyzing a Raman signature; and a light path for (i) delivering the laser excitation light from the light source to the specimen so as to produce the Raman signature for the specimen, (ii) capturing an image of the specimen and directing that image to the camera, and (iii) directing the Raman signature of the specimen to the light analyzer.
    Type: Application
    Filed: June 27, 2006
    Publication date: January 4, 2007
    Inventors: Kevin Knopp, Peidong Wang, Masud Azimi, Daryoosh Vakhshoori
  • Publication number: 20060170917
    Abstract: A compact, lightweight, portable optical assembly comprising: a platform; and a plurality of optical elements mounted to the platform; wherein the plurality of optical elements are optically connected to one another with free-space couplings so as to form an optical circuit; and further wherein the platform is sufficiently mechanically robust so as to maintain the free-space optical coupling between the various optical elements. A method for making a compact, lightweight, portable optical assembly, comprising: providing a platform; and mounting a plurality of optical elements to the platform; wherein the plurality of optical elements are mounted to the platform so that they are optically connected to one another with free-space couplings so as to form an optical circuit; and further wherein the platform is sufficiently mechanically robust so as to maintain the free-space optical coupling between the various optical elements.
    Type: Application
    Filed: August 30, 2005
    Publication date: August 3, 2006
    Inventors: Daryoosh Vakhshoori, Peili Chen, Masud Azimi, Peidong Wang, Yu Shen, Kevin Knopp, Leyun Zhu, Christopher Brown, Gregory Vander Rhodes
  • Publication number: 20050265647
    Abstract: The invention is in the field of distributed Raman amplification for digital and analog transmission applications and other applications, e.g., instrumentation and imaging applications, including HFC-CATV applications. In particular, the invention uses a high power broadband source of amplified spontaneous emission (ASE) as the Raman pump source for improved system performance. The invention also includes methods for constructing such a high-power broadband Raman pump.
    Type: Application
    Filed: August 1, 2003
    Publication date: December 1, 2005
    Inventors: Daryoosh Vakhshoori, Masud Azimi, Min Jiang, Kevin Knopp, Peidong Wang
  • Publication number: 20050248759
    Abstract: In another form of the present invention, there is provided a Raman probe comprising: a first optical fiber for receiving laser excitation light from a light source and transmitting the same; a first filter for receiving light from the first optical fiber and adapted to pass the laser excitation light and to block spurious signals associated with the light; a second filter for receiving light from the first filter and adapted to direct the light toward the specimen; focusing apparatus for receiving the light from the second filter, focusing the light on a specimen so as to generate the Raman signal, and returning the Raman signal to the second filter; wherein the second filter is further configured so that when the second filter receives the Raman signal from the focusing apparatus, the second filter filters out unwanted laser excitation light before directing the Raman signal to a second optical fiber; and a second optical fiber for receiving the Raman signal from the second filter and transmitting the same
    Type: Application
    Filed: April 29, 2005
    Publication date: November 10, 2005
    Inventors: Peidong Wang, Daryoosh Vakhshoori, Yu Shen, Kevin Knopp, Masud Azimi
  • Publication number: 20050225758
    Abstract: A method for tagging and identifying a composition using Raman spectroscopy is disclosed, the method comprising tagging the composition by disbursing additional individual tag molecules throughout a base material thereof so as to create a tagged material having a spectral profile with a specific Raman optical signature encoded therein, wherein the specific Raman optical signature of the tagged material is distinct from the native Raman optical signature of the base material; and identifying the composition by reading a spectral response of the tagged material with a Raman spectroscopic technique so as to identify the composition based on the specific Raman optical signature encoded in the tagged material rather than the native Raman optical signature encoded in the base material.
    Type: Application
    Filed: March 23, 2005
    Publication date: October 13, 2005
    Inventors: Kevin Knopp, Daryoosh Vakhshoori, Gregory Rhodes
  • Publication number: 20050201675
    Abstract: The invention is in the field of distributed Raman amplification for digital and analog transmission applications and other applications, e.g., instrumentation and imaging applications, including HFC-CATV applications. In particular, the invention uses a high power broadband source of amplified spontaneous emission (ASE) as the Raman pump source for improved system performance. The invention also includes methods for constructing such a high-power broadband Raman pump.
    Type: Application
    Filed: January 15, 2004
    Publication date: September 15, 2005
    Inventors: Kevin Knopp, Daryoosh Vakhshoori, Peidong Wang
  • Publication number: 20050036535
    Abstract: A laser source for generating amplified and filtered optical output, comprising a VCSEL, a power optical amplifier, and a filter. A laser source for generating amplified and filtered optical output, comprising a first mirror and a second mirror forming a cavity, an optical amplifier disposed in the cavity, and filter means for filtering ASE generated and amplified by the optical amplifier. A system for generating amplified and filtered optical output, comprising an optical platform having electrical connections and a fiber optic connection, a VCSEL configured to generate seed light, an optical amplifier configured to receive and amplify seed light to generate power boosted ASE and a filter configured to reduce background noise from the power boosted ASE. A method of generating optical output having high optical power with high spectral fidelity, comprising generating seed light, amplifying seed light, and filtering the amplified optical output to reduce background noise.
    Type: Application
    Filed: March 12, 2004
    Publication date: February 17, 2005
    Inventors: Kevin Knopp, Daryoosh Vakhshoori, Masud Azimi, Peidong Wang
  • Patent number: D534446
    Type: Grant
    Filed: May 6, 2005
    Date of Patent: January 2, 2007
    Assignee: Ahura Corporation
    Inventors: Kevin Knopp, Steve Mclaughlin, Daryoosh Vakshoori, Paul Maxted, Michael Jobin, Dan Ballou