Patents Assigned to Imra America, Inc.
  • Patent number: 9234078
    Abstract: The present invention relates to methods, compositions, and kits for generating conjugated gold nanoparticles. In certain embodiments, the present invention provides methods of generating unsaturated conjugated gold nanoparticles by mixing naked gold nanoparticles with a first type of attachment molecules at a molar ratio such that the attachment molecules attach to the naked gold particles at a density level below the saturation level of the naked gold particles (e.g., at a saturation level of 1-99%). In some embodiments, a second type of attachment molecules (e.g., with the opposite charge as the first type of attachment molecules) are mixed with the unsaturated conjugated gold nanoparticles to generate double-conjugated gold nanoparticles (e.g., that are zwitterionic).
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: January 12, 2016
    Assignees: The Regents of the University of Michigan, IMRA of America, Inc.
    Inventors: Duxin Sun, Hongwei Chen, Wei Qian, Yong Che, Masayuki Ito, Hayley Paholak, Kanokwan Sansanaphongpricha
  • Publication number: 20160006208
    Abstract: A laser utilizes a cavity design which allows the stable generation of high peak power pulses from mode-locked multi-mode fiber lasers, greatly extending the peak power limits of conventional mode-locked single-mode fiber lasers. Mode-locking may be induced by insertion of a saturable absorber into the cavity and by inserting one or more mode-filters to ensure the oscillation of the fundamental mode in the multi-mode fiber. The probability of damage of the absorber may be minimized by the insertion of an additional semiconductor optical power limiter into the cavity.
    Type: Application
    Filed: September 14, 2015
    Publication date: January 7, 2016
    Applicant: IMRA AMERICA, INC.
    Inventor: Martin E. Fermann
  • Publication number: 20150380892
    Abstract: The invention relates to scanning pulsed laser systems for optical imaging. Coherent dual scanning laser systems (CDSL) are disclosed and some applications thereof. Various alternatives for implementation are illustrated. In at least one embodiment a coherent dual scanning laser system (CDSL) includes two passively modelocked fiber oscillators. In some embodiments an effective CDSL is constructed with only one laser. At least one embodiment includes a coherent scanning laser system (CSL) for generating pulse pairs with a time varying time delay. A CDSL, effective CDSL, or CSL may be arranged in an imaging system for one or more of optical imaging, microscopy, micro-spectroscopy and/or THz imaging.
    Type: Application
    Filed: September 8, 2015
    Publication date: December 31, 2015
    Applicant: IMRA AMERICA, INC.
    Inventors: Martin FERMANN, Ingmar HARTL, Axel RUEHL
  • Publication number: 20150372445
    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: August 27, 2015
    Publication date: December 24, 2015
    Applicant: IMRA AMERICA, INC.
    Inventor: Donald J. HARTER
  • Patent number: 9209592
    Abstract: Embodiments described herein include a system for producing ultrashort tunable pulses based on ultra broadband OPA or OPG in nonlinear materials. The system parameters such as the nonlinear material, pump wavelengths, quasi-phase matching periods, and temperatures can be selected to utilize the intrinsic dispersion relations for such material to produce bandwidth limited or nearly bandwidth limited pulse compression. Compact high average power sources of short optical pulses tunable in the wavelength range of 1800 to 2100 nm and after frequency doubling in the wavelength range of 900 to 1050 nm can be used as a pump for the ultra broadband OPA or OPG. In certain embodiments, these short pump pulses are obtained from an Er fiber oscillator at about 1550 nm, amplified in Er fiber, Raman-shifted to 1800 to 2100 nm, stretched in a fiber stretcher, and amplified in Tm-doped fiber.
    Type: Grant
    Filed: December 14, 2012
    Date of Patent: December 8, 2015
    Assignee: IMRA AMERICA, INC.
    Inventors: Gennady Imeshev, Martin E. Fermann
  • Patent number: 9184549
    Abstract: Compact laser systems are disclosed which include ultrafast laser sources in combination with nonlinear crystals or waveguides. In some implementations fiber based mid-IR sources producing very short pulses and/or mid-IR sources based on a mode locked fiber lasers are utilized. A difference frequency generator receives outputs from the ultrafast sources, and generates an output including a difference frequency. The output power from the difference frequency generator can further be enhanced via the implementation of large core dispersion shifted fibers. Exemplary applications of the compact, high brightness mid-IR light sources include medical applications, spectroscopy, ranging, sensing and metrology.
    Type: Grant
    Filed: October 7, 2014
    Date of Patent: November 10, 2015
    Assignee: IMRA AMERICA, INC.
    Inventors: Martin E. Fermann, Ingmar Hartl
  • Publication number: 20150311666
    Abstract: The present invention relates to compact, low noise, ultra-short pulse sources based on fiber amplifiers, and various applications thereof. At least one implementation includes an optical amplification system having a fiber laser seed source producing seed pulses at a repetition rate corresponding to the fiber laser cavity round trip time. A nonlinear pulse transformer, comprising a fiber length greater than about 10 m, receives a seed pulse at its input and produces a spectrally broadened output pulse at its output, the output pulse having a spectral bandwidth which is more than 1.5 times a spectral bandwidth of a seed pulse. A fiber power amplifier receives and amplifies spectrally broadened output pulses. A pulse compressor is configured to temporally compress spectrally broadened pulses amplified by said power amplifier. Applications include micro-machining, ophthalmology, molecular desorption or ionization, mass-spectroscopy, and/or laser-based, biological tissue processing.
    Type: Application
    Filed: October 16, 2013
    Publication date: October 29, 2015
    Applicant: IMRA AMERICA, INC.
    Inventor: Martin E. FERMANN
  • Patent number: 9166361
    Abstract: Frequency standards based on mode-locked fiber lasers, fiber amplifiers and fiber-based ultra-broad bandwidth light sources, and applications of the same.
    Type: Grant
    Filed: May 12, 2015
    Date of Patent: October 20, 2015
    Assignee: IMRA AMERICA, INC.
    Inventors: Ingmar Hartl, Martin Fermann
  • Patent number: 9151889
    Abstract: Various embodiments described herein include rare earth doped glass compositions that may be used in optical fiber and rods having large core sizes. Such optical fibers and rods may be employed in fiber lasers and amplifiers. The index of refraction of the glass may be substantially uniform and may be close to that of silica in some embodiments. Possible advantages to such features include reduction of formation of additional waveguides within the core, which becomes increasingly a problem with larger core sizes.
    Type: Grant
    Filed: September 11, 2013
    Date of Patent: October 6, 2015
    Assignee: IMRA America, Inc.
    Inventors: Liang Dong, Xiang Peng
  • Patent number: 9153928
    Abstract: The invention relates to scanning pulsed laser systems for optical imaging. Coherent dual scanning laser systems (CDSL) are disclosed and some applications thereof. Various alternatives for implementation are illustrated. In at least one embodiment a coherent dual scanning laser system (CDSL) includes two passively modelocked fiber oscillators. In some embodiments an effective CDSL is constructed with only one laser. At least one embodiment includes a coherent scanning laser system (CSL) for generating pulse pairs with a time varying time delay. A CDSL, effective CDSL, or CSL may be arranged in an imaging system for one or more of optical imaging, microscopy, micro-spectroscopy and/or THz imaging.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: October 6, 2015
    Assignee: IMRA AMERICA, INC.
    Inventors: Martin Fermann, Ingmar Hartl, Axel Ruehl
  • Patent number: 9153929
    Abstract: A laser utilizes a cavity design which allows the stable generation of high peak power pulses from mode-locked multi-mode fiber lasers, greatly extending the peak power limits of conventional mode-locked single-mode fiber lasers. Mode-locking may be induced by insertion of a saturable absorber into the cavity and by inserting one or more mode-filters to ensure the oscillation of the fundamental mode in the multi-mode fiber. The probability of damage of the absorber may be minimized by the insertion of an additional semiconductor optical power limiter into the cavity.
    Type: Grant
    Filed: October 17, 2014
    Date of Patent: October 6, 2015
    Assignee: IMRA AMERICA, INC.
    Inventor: Martin E. Fermann
  • Publication number: 20150280227
    Abstract: A predoping method for a negative electrode active material of an energy storage device, comprising at least one predoping material that can provide an ion that is different from a primary ionic charge carrier for a charging and discharging process of the energy storage device, called non-primary predoping material. The predoping material may be first included in a predoping electrode and later discharged to the negative electrode active material. The predoping material may be first mixed with the negative electrode active material in an electrode fabrication process, and later made to directly contact the negative electrode active material by adding an electrolyte and removing the protective shells of the predoping material. An ion exchanging method is used to exchange a first ion coming from the predoping material for a second ion in an electrode stack.
    Type: Application
    Filed: March 26, 2015
    Publication date: October 1, 2015
    Applicant: IMRA AMERICA, INC.
    Inventors: Guanghui HE, Bing TAN, Zhendong HU, Yong CHE
  • Patent number: 9147989
    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: December 9, 2013
    Date of Patent: September 29, 2015
    Assignee: IMRA AMERICA, INC.
    Inventors: Lawrence Shah, James M. Bovatsek, Alan Y. Arai, Tadashi Yamamoto, Rajesh S. Patel, Donald J. Harter
  • Patent number: 9138913
    Abstract: Methods, devices, and systems for ultrashort pulse laser processing of optically transparent materials are presented, with example applications in scribing, marking, welding, and joining. For example, ultrashort laser pulses create multiple scribe features with one pass of the laser beam across the material, with at least one of the scribe features being formed below the surface of the material. Slightly modifying the ultrashort pulse laser processing conditions produces different types of sub-surface marks. When properly arranged, these marks are clearly visible with correctly aligned illumination through either light scattering or light reflection and nearly invisible without illumination. Transparent material other than glass may be utilized. A method for welding transparent materials uses ultrashort laser pulses to create a bond through localized heating.
    Type: Grant
    Filed: March 4, 2009
    Date of Patent: September 22, 2015
    Assignee: IMRA AMERICA, INC.
    Inventors: Alan Y. Arai, Gyu C. Cho, Jingzhou Xu, Fumiyo Yoshino, Haibin Zhang, James Bovatsek, Makoto Yoshida
  • Publication number: 20150255942
    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, a low noise wavelength tunable seed source via anti-Stokes frequency shifting can be obtained.
    Type: Application
    Filed: May 19, 2015
    Publication date: September 10, 2015
    Applicant: IMRA AMERICA, INC.
    Inventors: Martin E. FERMANN, Gennady IMESHEV, Gyu C. CHO, Zhenlin LIU, Donald J. HARTER
  • Publication number: 20150249317
    Abstract: Frequency standards based on mode-locked fiber lasers, fiber amplifiers and fiber-based ultra-broad bandwidth light sources, and applications of the same.
    Type: Application
    Filed: May 12, 2015
    Publication date: September 3, 2015
    Applicant: IMRA AMERICA, INC.
    Inventors: Ingmar HARTL, Martin FERMANN
  • Patent number: 9097656
    Abstract: The present invention relates to precision linewidth control and frequency measurements of continuous wave lasers for the near to far IR spectral regions, precision frequency synthesizers and exemplary applications in molecular detection. Methods and systems are disclosed for simultaneous line narrowing of cw lasers, as well as referencing the desired emission wavelength to a frequency comb laser.
    Type: Grant
    Filed: March 27, 2013
    Date of Patent: August 4, 2015
    Assignee: IMRA AMERICA, INC.
    Inventors: Martin E. Fermann, Marco Marangoni, Davide Gatti
  • Publication number: 20150207289
    Abstract: High power parallel fiber arrays for the amplification of high peak power pulses are described. Fiber arrays based on individual fiber amplifiers as well as fiber arrays based on multi-core fibers can be implemented. The optical phase between the individual fiber amplifier elements of the fiber array is measured and controlled using a variety of phase detection and compensation techniques. High power fiber array amplifiers can be used for EUV and X-ray generation as well as pumping of parametric amplifiers.
    Type: Application
    Filed: March 30, 2015
    Publication date: July 23, 2015
    Applicant: IMRA AMERICA, INC.
    Inventors: Martin FERMANN, Ingmar HARTL, Andrius MARCINKEVICIUS, Liang DONG
  • Publication number: 20150187558
    Abstract: The present invention relates to a mass spectrometer system, which combines laser desorption with pulse bursts comprising a train of ultrashort pulses and electrospray ionization. The pulse separation between individual pulses within the pulse burst is selected such that transient phenomena on an irradiated sample do not fully relax between individual pulses. Pulses with pulse widths ranging from fs to sub ns are conveniently implemented. The pulse widths can be selected to allow for multi-photon excitation of a sample while at the same time minimizing heat accumulation in a sample. Low cost laser systems such as fiber lasers can be configured to generate appropriate pulse bursts. The technique is suitable for mass spectrometry imaging with high spatial resolution. The laser system can serve as an electronic clock to which the whole mass spectrometry system or mass spectrometry imaging system is synchronized.
    Type: Application
    Filed: December 27, 2013
    Publication date: July 2, 2015
    Applicant: IMRA AMERICA, INC.
    Inventors: Andrew A. MILLS, Martin E. FERMANN, Jiahui PENG, Robert J. LEVIS
  • Patent number: 9071037
    Abstract: A pulsed laser comprises an oscillator and amplifier. An attenuator and/or pre-compressor may be disposed between the oscillator and amplifier to improve performance and possibly the quality of pulses output from the laser. Such pre-compression may be implemented with spectral filters and/or dispersive elements between the oscillator and amplifier. The pulsed laser may have a modular design comprising modular devices that may have Telcordia-graded quality and reliability. Fiber pigtails extending from the device modules can be spliced together to form laser system. In one embodiment, a laser system operating at approximately 1050 nm comprises an oscillator having a spectral bandwidth of approximately 19 nm. This oscillator signal can be manipulated to generate a pulse having a width below approximately 90 fs. A modelocked linear fiber laser cavity with enhanced pulse-width control includes concatenated sections of both polarization-maintaining and non-polarization-maintaining fibers.
    Type: Grant
    Filed: August 28, 2013
    Date of Patent: June 30, 2015
    Assignee: IMRA America, Inc.
    Inventors: Xinhua Gu, Mark Bendett, Gyu Cheon Cho, Martin E. Fermann