Patents by Inventor Donald J. Harter

Donald J. Harter 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: 7626758
    Abstract: An electronic circuit for controlling a laser system consisting of a pulse source and high power fiber amplifier is disclosed. The circuit is used to control the gain of the high power fiber amplifier system so that the amplified output pulses have predetermined pulse energy as the pulse width and repetition rate of the oscillator are varied. This includes keeping the pulse energy constant when the pulse train is turned on. The circuitry is also used to control the temperature of the high power fiber amplifier pump diode such that the wavelength of the pump diode is held at the optimum absorption wavelength of the fiber amplifier as the diode current is varied. The circuitry also provides a means of protecting the high power fiber amplifier from damage due to a loss of signal from the pulse source or from a pulse-source signal of insufficient injection energy.
    Type: Grant
    Filed: July 29, 2008
    Date of Patent: December 1, 2009
    Assignee: IMRA America, Inc.
    Inventors: Salvatore F. Nati, Otho E. Ulrich, Jr., Gyu Choen Cho, Wayne A. Gillis, Donald J. Harter, Mark Bendett, Ingmar Hartl
  • Patent number: 7580432
    Abstract: The present invention is directed to methods and apparatuses for performing temporal scanning using ultra-short pulsewidth lasers in which only minimal (micro-scale) mechanical movement is required. The invention also relates to methods for obtaining high-accuracy timing calibration, on the order of femtoseconds. A dual laser system is disclosed in which the cavity of one or more of the lasers is dithered, by using a piezoelectric element. A Fabry-Perot etalon is used to generate a sequence of timing pulses used in conjunction with a laser beam produced by the laser having the dithered laser cavity. A correlator correlates a laser pulse from one of the lasers with the sequence of timing pulses to produce a calibrated time scale.
    Type: Grant
    Filed: January 18, 2002
    Date of Patent: August 25, 2009
    Assignee: IMRA America, Inc.
    Inventors: Gregg D. Sucha, Martin E. Fermann, Donald J. Harter
  • Patent number: 7576909
    Abstract: The invention describes techniques for the control of the spatial as well as spectral beam quality of multi-mode fiber amplification of high peak power pulses as well as using such a configuration to replace the present diode-pumped, Neodynium based sources. Perfect spatial beam-quality can be ensured by exciting the fundamental mode in the multi-mode fibers with appropriate mode-matching optics and techniques. The loss of spatial beam-quality in the multi-mode fibers along the fiber length can be minimized by using multi-mode fibers with large cladding diameters. Near diffraction-limited coherent multi-mode amplifiers can be conveniently cladding pumped, allowing for the generation of high average power. Moreover, the polarization state in the multi-mode fiber amplifiers can be preserved by implementing multi-mode fibers with stress producing regions or elliptical fiber cores. These lasers find application as a general replacement of Nd: based lasers, especially Nd:YAG lasers.
    Type: Grant
    Filed: June 1, 2005
    Date of Patent: August 18, 2009
    Assignee: IMRA America, Inc.
    Inventors: Donald J. Harter, Martin E. Fermann
  • Publication number: 20090122815
    Abstract: An intracavity resonant Fabry-Perot saturable absorber (R-FPSA) induces modelocking in a laser such as a fiber laser. An optical limiter such as a two photon absorber (TPA) can be used in conjunction with the R-FPSA, so that Q-switching is inhibited, resulting in laser output that is cw modelocked. By using both an R-FPSA and a TPA, the Q-switched modelocked behavior of a fiber laser is observed to evolve into cw modelocking.
    Type: Application
    Filed: November 4, 2008
    Publication date: May 14, 2009
    Applicant: IMRA America, Inc.
    Inventors: Min Jiang, Donald J. Harter, Gregg D. Sucha, Martin E. Fermann
  • Publication number: 20090110008
    Abstract: One or more single mode few-moded or multimode fibers are incorporated into a bundle to carry input to a fiber amplifier or output from a fiber amplifier or a fiber laser. The input is at the signal wavelength, which is the wavelength where amplification or lasing occurs. Each of the fibers in the bundle is cleaved individually or as a group and fiber ends are aligned in the same plane. The fiber amplifier or fiber laser may include a double clad fiber and the other fibers of the bundle couple light for cladding pumping. The device may also include a mode filter for controlling the output mode.
    Type: Application
    Filed: January 22, 2008
    Publication date: April 30, 2009
    Inventors: Liang Dong, Donald J. Harter
  • Publication number: 20090097520
    Abstract: System for converting relatively long pulses from rep-rate variable ultrafast optical sources to shorter, high-energy pulses suitable for sources in high-energy ultrafast lasers. Fibers with positive group velocity dispersion (GVD) and self phase modulation are advantageously employed with the optical sources. These systems take advantage of the need for higher pulse energies at lower repetition rates so that such sources can be cost effective.
    Type: Application
    Filed: December 19, 2008
    Publication date: April 16, 2009
    Applicant: IMRA AMERICA INC.
    Inventor: Donald J. HARTER
  • Publication number: 20090097515
    Abstract: The invention describes classes of robust fiber laser systems usable as pulse sources for Nd: or Yb: based regenerative amplifiers intended for industrial settings. The invention modifies adapts and incorporates several recent advances in FCPA systems to use as the input source for this new class of regenerative amplifier.
    Type: Application
    Filed: December 19, 2008
    Publication date: April 16, 2009
    Applicant: IMRA America, Inc
    Inventors: Donald J. HARTER, Gyu C. Cho, Zhenlin Liu, Martin E. Fermann, Xinhua Gu, Salvatore F. Nati, Lawrence Shah, Ingmar Hartl, Mark Bendett
  • Publication number: 20090097514
    Abstract: A femtosecond laser based laser processing system having a femtosecond laser, frequency conversion optics, beam manipulation optics, target motion control, processing chamber, diagnostic systems and system control modules. The femtosecond laser based laser processing system allows for the utilization of the unique heat control in micromachining, and the system has greater output beam stability, continuously variable repetition rate and unique temporal beam shaping capabilities.
    Type: Application
    Filed: December 19, 2008
    Publication date: April 16, 2009
    Applicant: IMRA America, Inc.
    Inventors: Lawrence SHAH, James M. Bovatsek, Alan Y. Arai, Tadashi Yamamoto, Rajesh S. Patel, Donald J. Harter
  • Patent number: 7518788
    Abstract: By writing non-linear chirp into fiber Bragg gratings, greater control over dispersion compensation in chirped pulse amplification (CPA) systems is obtained, such that, for example, the dispersion profile of the fiber Bragg grating and a bulk compressor may be matched. An iterative method of writing the fiber grating can reduce the group delay ripple to very low levels; and adaptive control of the fiber grating dispersion profile can further reduce these levels, while in addition offering greater acceptable yield in the manufacture of such gratings. Fiber Bragg gratings may be designed so as to provide customized pulse shapes optimized for various end uses, such as micromachining, for example, and may also be used to counteract gain-narrowing in a downstream amplifier.
    Type: Grant
    Filed: August 10, 2007
    Date of Patent: April 14, 2009
    Assignee: IMRA America, Inc.
    Inventors: Martin E. Fermann, Gennady Imeshev, Ingmar Hartl, Donald J. Harter
  • Patent number: 7508853
    Abstract: The invention describes classes of robust fiber laser systems usable as pulse sources for Nd: or Yb: based regenerative amplifiers intended for industrial settings. The invention modifies adapts and incorporates several recent advances in FCPA systems to use as the input source for this new class of regenerative amplifier.
    Type: Grant
    Filed: December 7, 2004
    Date of Patent: March 24, 2009
    Assignee: IMRA, America, Inc.
    Inventors: Donald J. Harter, Gyu C. Cho, Zhenlin Liu, Martin E. Fermann, Xinhua Gu, Salvatore F. Nati, Lawrence Shah, Ingmar Hartl, Mark Bendett
  • Patent number: 7505196
    Abstract: An electronic circuit for controlling a laser system consisting of a pulse source and high power fiber amplifier is disclosed. The circuit is used to control the gain of the high power fiber amplifier system so that the amplified output pulses have predetermined pulse energy as the pulse width and repetition rate of the oscillator are varied. This includes keeping the pulse energy constant when the pulse train is turned on. The circuitry is also used to control the temperature of the high power fiber amplifier pump diode such that the wavelength of the pump diode is held at the optimum absorption wavelength of the fiber amplifier as the diode current is varied. The circuitry also provides a means of protecting the high power fiber amplifier from damage due to a loss of signal from the pulse source or from a pulse-source signal of insufficient injection energy.
    Type: Grant
    Filed: March 31, 2004
    Date of Patent: March 17, 2009
    Assignee: IMRA America, Inc.
    Inventors: Salvatore F. Nati, Otho E. Ulrich, Jr., Gyu Choen Cho, Wayne A. Gillis, Donald J. Harter, Mark Bendett, Ingmar Hartl
  • Patent number: 7492508
    Abstract: A fiber amplifier includes at least one coreless end used for the input or extraction of optical energy. The coreless end has a transverse cross section which differs from the transverse cross section of the core at fiber locations remote from the end, so that the diameter of the input or extracted optical beam at the coreless end can be larger than the diameter of the fiber core, to increase an optical damage threshold of the fiber amplifier.
    Type: Grant
    Filed: December 22, 2006
    Date of Patent: February 17, 2009
    Assignee: Aisin Seiki Co., Ltd.
    Inventors: Almantas Galvanauskas, Donald J. Harter, Martin E. Fermann, Ferenc Raksi
  • Patent number: 7491909
    Abstract: A method for laser machining of material using a burst comprised of laser pulses. The method tailors the pulse width, pulse separation duration, wavelength and polarization of the multiple laser pulses included in a burst to maximize the positive effect of thermal and physical changes achieved by previous pulses that have impinged upon the machined material.
    Type: Grant
    Filed: March 31, 2004
    Date of Patent: February 17, 2009
    Assignee: IMRA America, Inc.
    Inventors: Tadashi Yamamoto, Donald J. Harter, Rajesh S. Patel, Alan Y. Arai
  • Patent number: 7486705
    Abstract: A femtosecond laser based laser processing system having a femtosecond laser, frequency conversion optics, beam manipulation optics, target motion control, processing chamber, diagnostic systems and system control modules. The femtosecond laser based laser processing system allows for the utilization of the unique heat control in micromachining, and the system has greater output beam stability, continuously variable repetition rate and unique temporal beam shaping capabilities.
    Type: Grant
    Filed: March 31, 2004
    Date of Patent: February 3, 2009
    Assignee: IMRA America, Inc.
    Inventors: Lawrence Shah, James M Bovatsek, Alan Y Arai, Tadashi Yamamoto, Rajesh S. Patel, Donald J. Harter
  • Patent number: 7483204
    Abstract: System for converting relatively long pulses from rep-rate variable ultrafast optical sources to shorter, high-energy pulses suitable for sources in high-energy ultrafast lasers. Fibers with positive group velocity dispersion (GVD) and self phase modulation are advantageously employed with the optical sources. These systems take advantage of the need for higher pulse energies at lower repetition rates so that such sources can be cost effective.
    Type: Grant
    Filed: December 20, 2007
    Date of Patent: January 27, 2009
    Assignee: IMRA America, Inc.
    Inventor: Donald J. Harter
  • Publication number: 20080285117
    Abstract: The invention describes techniques for the control of the spatial as well as spectral beam quality of multi-mode fiber amplification of high peak power pulses as well as using such a configuration to replace the present diode-pumped, Neodynium based sources. Perfect spatial beam-quality can be ensured by exciting the fundamental mode in the multi-mode fibers with appropriate mode-matching optics and techniques. The loss of spatial beam-quality in the multi-mode fibers along the fiber length can be minimized by using multi-mode fibers with large cladding diameters. Near diffraction-limited coherent multi-mode amplifiers can be conveniently cladding pumped, allowing for the generation of high average power. Moreover, the polarization state in the multi-mode fiber amplifiers can be preserved by implementing multi-mode fibers with stress producing regions or elliptical fiber cores These lasers find application as a general replacement of Nd: based lasers, especially Nd:YAG lasers.
    Type: Application
    Filed: July 1, 2008
    Publication date: November 20, 2008
    Inventors: Almantas GALVANAUSKAS, Donald J. HARTER, Martin E. FERMANN, Ferenc RAKSI
  • Publication number: 20080285118
    Abstract: An electronic circuit for controlling a laser system consisting of a pulse source and high power fiber amplifier is disclosed. The circuit is used to control the gain of the high power fiber amplifier system so that the amplified output pulses have predetermined pulse energy as the pulse width and repetition rate of the oscillator are varied. This includes keeping the pulse energy constant when the pulse train is turned on. The circuitry is also used to control the temperature of the high power fiber amplifier pump diode such that the wavelength of the pump diode is held at the optimum absorption wavelength of the fiber amplifier as the diode current is varied. The circuitry also provides a means of protecting the high power fiber amplifier from damage due to a loss of signal from the pulse source or from a pulse-source signal of insufficient injection energy.
    Type: Application
    Filed: July 29, 2008
    Publication date: November 20, 2008
    Inventors: Salvatore F. Nati, Otho E. Ulrich, JR., Gyu Choen Cho, Wayne A. Gillis, Donald J. Harter, Mark Bendett, Ingmar Hartl
  • Patent number: 7453913
    Abstract: An intracavity resonant Fabry-Perot saturable absorber (R-FPSA) induces modelocking in a laser such as a fiber laser. An optical limiter such as a two photon absorber (TPA) can be used in conjunction with the R-FPSA, so that Q-switching is inhibited, resulting in laser output that is cw modelocked. By using both an R-FPSA and a TPA, the Q-switched modelocked behavior of a fiber laser is observed to evolve into cw modelocking.
    Type: Grant
    Filed: August 5, 2005
    Date of Patent: November 18, 2008
    Assignee: IMRA America, Inc.
    Inventors: Min Jiang, Donald J. Harter, Gregg D. Sucha, Martin E. Fermann
  • Publication number: 20080273238
    Abstract: By compensating polarization mode-dispersion as well chromatic dispersion in photonic crystal fiber pulse compressors, high pulse energies can be obtained from all-fiber chirped pulse amplification systems. By inducing third-order dispersion in fiber amplifiers via self-phase modulation, the third-order chromatic dispersion from bulk grating pulse compressors can be compensated and the pulse quality of hybrid fiber/bulk chirped pulse amplification systems can be improved. Finally, by amplifying positively chirped pulses in negative dispersion fiber amplifiers, low noise wavelength tunable seed source via anti-Stokes frequency shifting can be obtained.
    Type: Application
    Filed: July 15, 2008
    Publication date: November 6, 2008
    Inventors: Martin E. Fermann, Gennady Imeshev, Gyu C. Cho, Zhenlin Liu, Donald J. Harter
  • Publication number: 20080232407
    Abstract: An optimized Yb: doped fiber mode-locked oscillator and fiber amplifier system for seeding Nd: or Yb: doped regenerative amplifiers. The pulses are generated in the Yb: or Nd: doped fiber mode-locked oscillator, and may undergo spectral narrowing or broadening, wavelength converting, temporal pulse compression or stretching, pulse attenuation and/or lowering the repetition rate of the pulse train. The conditioned pulses are subsequently coupled into an Yb: or Nd: fiber amplifier. The amplified pulses are stretched before amplification in the regenerative amplifier that is based on an Nd: or Yb: doped solid-state laser material, and then recompressed for output.
    Type: Application
    Filed: June 3, 2008
    Publication date: September 25, 2008
    Inventors: Donald J. HARTER, Gyu C. Cho, Martin E. Fermann, Ingmar Hartl