Patents Assigned to Thorlabs, Inc.
  • Patent number: 10101559
    Abstract: A monolithic optical mount having a bore for accommodating an optical element, the bore including: a first ridge located at a first position on the inside circumference of the bore; a second ridge located at a second position on the inside circumference of the bore; and a flexure extending from along the inside circumference of the bore to a point beyond a threaded hole which passes through from the outside circumference of the bore to the inside circumference of the bore; wherein the flexure is actuated by turning a screw in the threaded hole thereby adjusting an amount of force pushing against a point on the flexure by a tip of the screw.
    Type: Grant
    Filed: May 27, 2016
    Date of Patent: October 16, 2018
    Assignee: Thorlabs, Inc.
    Inventors: Brett D'Alessio, Alex Cable, Blace Jacobus
  • Patent number: 9997891
    Abstract: A tunable source includes a short-cavity laser optimized for performance and reliability in SSOCT imaging systems, spectroscopic detection systems, and other types of detection and sensing systems. The short cavity laser has a large free spectral range cavity, fast tuning response and single transverse, longitudinal and polarization mode operation, and includes embodiments for fast and wide tuning, and optimized spectral shaping. Disclosed are both electrical and optical pumping in a MEMS-VCSEL geometry with mirror and gain regions optimized for wide tuning, high output power, and a variety of preferred wavelength ranges; and a semiconductor optical amplifier, combined with the short-cavity laser to produce high-power, spectrally shaped operation. Several preferred imaging and detection systems make use of this tunable source for optimized operation are also disclosed.
    Type: Grant
    Filed: May 19, 2017
    Date of Patent: June 12, 2018
    Assignees: Thorlabs, Inc., Praevium Research, Inc.
    Inventors: Alex Ezra Cable, Vijaysekhar Jayaraman, Benjamin Michael Potsaid
  • Patent number: 9989749
    Abstract: Disclosed are several technical approaches of using low coherence interferometry techniques to create an autofocus apparatus for optical microscopy. These approaches allow automatic focusing on thin structures that are positioned closely to reflective surfaces and behind refractive material like a cover slip, and automated adjustment of focus position into the sample region without disturbance from reflection off adjacent surfaces. The measurement offset induced by refraction of material that covers the sample is compensated for. Proposed are techniques of an instrument that allows the automatic interchange of imaging objectives in a low coherence interferometry autofocus system, which is of major interest in combination with TDI (time delay integration) imaging, confocal and two-photon fluorescence microscopy.
    Type: Grant
    Filed: August 18, 2017
    Date of Patent: June 5, 2018
    Assignee: Thorlabs, Inc.
    Inventors: Alex Cable, Jörn Wollenzin, Ross Johnstone, Kirk Gossage, Jeffrey S. Brooker, Jason Mills, James Jiang, Dierck Hillmann
  • Patent number: 9977189
    Abstract: Apparatus and methods are described herein for cleaving an optical element at a defined distance from a splice (or other reference point/feature) of the optical element within a desired precision and/or accuracy. In some embodiments, a method includes receiving an indication of a location of a feature in an intermediate optical assembly visible within an image of the intermediate optical assembly. The feature can be for example, a splice. A position of the intermediate optical assembly is translated relative to a cleave unit based on the indication. After translating, the intermediate optical assembly, the intermediate optical assembly is cleaved to form an optical assembly that has an end face at a location disposed at a non-zero distance from the location of the feature. In some embodiments, the location of the feature can be determined with an image recognition system.
    Type: Grant
    Filed: June 9, 2016
    Date of Patent: May 22, 2018
    Assignee: THORLABS, INC.
    Inventors: Giorgio Giaretta, Timothy J. Howell, Michael E. Harju, Ying Qin
  • Patent number: 9960340
    Abstract: A piezoelectric actuator with integrated features to provide coarse position adjustment of a pushing threaded rod and also mechanically amplified piezo motion for fine position adjustment is presented here in three design variants. The mechanical amplifier houses one or more piezo stacks in longitudinal axis with preload to translate an amplified motion in the order of a few times in the transverse axis, perpendicular to the piezo stack motion. The piezo amplifier output travel is transmitted to the threaded rod with a ball at the end to push a desired surface for position adjustments and motion translation in application such as a mirror mount.
    Type: Grant
    Filed: August 13, 2015
    Date of Patent: May 1, 2018
    Assignee: Thorlabs, Inc.
    Inventors: Saeed Fathi, Mark Robson, Keith Dhese
  • Patent number: 9958255
    Abstract: An agile optical imaging system for optical coherence tomography imaging using a tunable source comprising a wavelength tunable VCL laser is disclosed. The tunable source has long coherence length and is capable of high sweep repetition rate, as well as changing the sweep trajectory, sweep speed, sweep repetition rate, sweep linearity, and emission wavelength range on the fly to support multiple modes of OCT imaging. The imaging system also offers new enhanced dynamic range imaging capability for accommodating bright reflections. Multiscale imaging capability allows measurement over orders of magnitude dimensional scales. The imaging system and methods for generating the waveforms to drive the tunable laser in flexible and agile modes of operation are also described.
    Type: Grant
    Filed: July 26, 2013
    Date of Patent: May 1, 2018
    Assignees: THORLABS, INC., PRAEVIUM RESEARCH, INC.
    Inventors: Benjamin Michael Potsaid, James Yi Jiang, Vijaysekhar Jayaraman, Scott Barry, Anjul M. Davis Loiacono, Alex Ezra Cable
  • Patent number: 9915520
    Abstract: An optical instrument including at least a first and second wavelength swept vertical cavity laser (VCL) sources. The wavelength sweeping ranges spanned by the first and second VCL sources may differ with a region of spectral overlap. The first and second VCL sources may be operable under different modes of operation, wherein the modes of operation differ in at least one of: sweep repetition rate, sweep wavelength range, sweep center wavelength, and sweep trajectory. A VCL source may also exhibit sweep-to-sweep variation. Apparatus and methods are described for aligning sample signal data from the first VCL and sample signal data from the second VCL to generate output digital data. The output digital data is aligned with respect to at least one of: wavelength, wavenumber, and interferometric phase. The apparatus and methods can also be used to phase stabilize successive sweeps from the same VCL source or wavelength swept source.
    Type: Grant
    Filed: September 14, 2016
    Date of Patent: March 13, 2018
    Assignees: Thorlabs, Inc., Praevium Research, Inc.
    Inventors: Alex Cable, Vijaysekhar Jayaraman, James Jiang, Benjamin Potsaid
  • Patent number: 9869852
    Abstract: Disclosed are several technical approaches of using low coherence interferometry techniques to create an autofocus apparatus for optical microscopy. These approaches allow automatic focusing on thin structures that are positioned closely to reflective surfaces and behind refractive material like a cover slip, and automated adjustment of focus position into the sample region without disturbance from reflection off adjacent surfaces. The measurement offset induced by refraction of material that covers the sample is compensated for. Proposed are techniques of an instrument that allows the automatic interchange of imaging objectives in a low coherence interferometry autofocus system, which is of major interest in combination with TDI (time delay integration) imaging, confocal and two-photon fluorescence microscopy.
    Type: Grant
    Filed: January 13, 2016
    Date of Patent: January 16, 2018
    Assignee: THORLABS, INC.
    Inventors: Alex Cable, Jörn Wollenzin, Ross Johnstone, Kirk Gossage, Jeffrey S. Brooker, Jason Mills, James Jiang, Dierck Hillmann
  • Patent number: 9871340
    Abstract: A tunable laser including: a reflecting mirror; a partially transmitting mirror; a gain medium energized by a pump source; a pair of mirrors surrounding the gain medium, a first prism and a second prism located between the gain medium and the reflecting mirror; the first prism receives radiation from the gain medium and disperses the radiation to the second prism; the second prism receives and directs the radiation towards an optical element which filters the spatially dispersed radiation based on the position to the second prism, the radiation resonates between the reflecting mirror and the partially transmitting mirror; the second prism is placed on a stage moved by a linear motor such that a desired center wavelength is obtained by moving the second prism to a position so as to allow radiation having the desired center wavelength to resonate between the reflecting mirror and the partially transmitting mirror.
    Type: Grant
    Filed: October 14, 2016
    Date of Patent: January 16, 2018
    Assignee: THORLABS, INC.
    Inventors: Peter Fendel, David Sproles, James Easter, Xuan Luo
  • Patent number: 9843159
    Abstract: A tunable source includes a short-cavity laser optimized for performance and reliability in SSOCT imaging systems, spectroscopic detection systems, and other types of detection and sensing systems. The short cavity laser has a large free spectral range cavity, fast tuning response and single transverse, longitudinal and polarization mode operation, and includes embodiments for fast and wide tuning, and optimized spectral shaping. Disclosed are both electrical and optical pumping in a MEMS-VCSEL geometry with mirror and gain regions optimized for wide tuning, high output power, and a variety of preferred wavelength ranges; and a semiconductor optical amplifier, combined with the short-cavity laser to produce high-power, spectrally shaped operation. Several preferred imaging and detection systems make use of this tunable source for optimized operation are also disclosed.
    Type: Grant
    Filed: July 26, 2013
    Date of Patent: December 12, 2017
    Assignees: Thorlabs, Inc., Praevium Research, Inc.
    Inventors: Alex Ezra Cable, Vijaysekhar Jayaraman, Benjamin Michael Potsaid
  • Patent number: 9784561
    Abstract: An optical imaging system includes an optical radiation source (410, 510), a frequency clock module outputting frequency clock signals (420), an optical interferometer (430), a data acquisition (DAQ) device (440) triggered by the frequency clock signals, and a computer (450) to perform multi-dimensional optical imaging of the samples. The frequency clock signals are processed by software or hardware to produce a record containing frequency-time relationship of the optical radiation source (410, 510) to externally clock the sampling process of the DAQ device (440). The system may employ over-sampling and various digital signal processing methods to improve image quality. The system further includes multiple stages of routers (1418, 1425) connecting the light source (1410) with a plurality of interferometers (1420a-1420n) and a DAQ system (1450) externally clocked by frequency clock signals to perform high-speed multi-channel optical imaging of samples.
    Type: Grant
    Filed: February 27, 2014
    Date of Patent: October 10, 2017
    Assignee: Thorlabs, Inc.
    Inventors: James Y. Jiang, Scott Barry, Alex E. Cable
  • Patent number: 9774166
    Abstract: A high-speed, single-mode, high power, reliable and manufacturable wavelength-tunable light source operative to emit wavelength tunable radiation over a wavelength range contained in a wavelength span between about 950 nm and about 1150 nm, including a vertical cavity laser (VCL), the VCL having a gain region with at least one compressively strained quantum well containing Indium, Gallium, and Arsenic.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: September 26, 2017
    Assignees: Praevium Research, Inc., Thorlabs, Inc.
    Inventors: Vijaysekhar Jayaraman, Christopher Burgner, Demis John, Peter Heim, Alex Ezra Cable
  • Publication number: 20170248405
    Abstract: An optical imaging system includes an optical radiation source (410, 510), a frequency clock module outputting frequency clock signals (420), an optical interferometer (430), a data acquisition (DAQ) device (440) triggered by the frequency clock signals, and a computer (450) to perform multi-dimensional optical imaging of the samples. The frequency clock signals are processed by software or hardware to produce a record containing frequency-time relationship of the optical radiation source (410, 510) to externally clock the sampling process of the DAQ device (440). The system may employ over-sampling and various digital signal processing methods to improve image quality. The system further includes multiple stages of routers (1418, 1425) connecting the light source (1410) with a plurality of interferometers (1420a-1420n) and a DAQ system (1450) externally clocked by frequency clock signals to perform high-speed multi-channel optical imaging of samples.
    Type: Application
    Filed: February 27, 2014
    Publication date: August 31, 2017
    Applicant: Thorlabs, Inc.
    Inventors: James Y. Jiang, Scott Barry, Alex E. Cable
  • Patent number: 9740003
    Abstract: An adaptive optics scanning system and method using a beam projection module with four or more axes of motion that can project and control the position and angle of a beam of light to or from an adaptive optics element. The adaptive optics scanning system is compact in size, overcoming the challenges of a traditional lens and mirror based pupil relay design. The adaptive optics scanning system has little to no dispersion, chromatic aberration, and off-axis aberration for improved optical performance. The system and methods for calibrating and optimizing the system are described. A modular adaptive optics unit that scans and interfaces an adaptive optics element is described.
    Type: Grant
    Filed: November 4, 2015
    Date of Patent: August 22, 2017
    Assignee: Thorlabs, Inc.
    Inventors: Benjamin Michael Potsaid, John Joseph Taranto, Alex Ezra Cable
  • Patent number: 9696132
    Abstract: A system for swept source optical coherence tomography, the system including a light source emitting multiplexed wavelength-swept radiation over a total wavelength range, the light source including N wavelength-swept vertical cavity lasers (VCL) emitting N tunable VCL outputs having N wavelength trajectories, a combiner for combining the N tunable VCL optical outputs into a common optical path to create the multiplexed wavelength-swept radiation, a splitter for splitting the multiplexed wavelength-swept radiation to a sample and a reference path, an optical detector for detecting an interference signal created by an optical interference between a reflection from the sample and light traversing the reference path, and a signal processing system which uses the interference signal to construct an image of the sample, wherein at least one of the N wavelength trajectories differs from another of the N wavelength trajectories with respect to at least one parameter.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: July 4, 2017
    Assignees: Praevium Research, Inc., Thorlabs, Inc.
    Inventors: Vijaysekhar Jayaraman, Christopher Burgner, Demis John, Benjamin Michael Potsaid, Alex Ezra Cable
  • Patent number: 9671676
    Abstract: A shutter assembly comprises a plurality of shutter blades movable between an open position and a closed position, and a plurality of drive mechanisms arranged circumferentially about the plurality of shutter blades for moving the plurality of shutter blades, wherein each of said drive mechanisms is stable in at least a first position and a second position.
    Type: Grant
    Filed: November 26, 2013
    Date of Patent: June 6, 2017
    Assignee: Thorlabs, Inc.
    Inventor: Tudor Agapescu
  • Patent number: 9601899
    Abstract: A super-continuum system including: a fiber laser configured to output a pulse having a center wavelength; a first nonlinear waveguide configured to shift the wavelength of the pulse from the fiber laser; a first fiber amplifier of at least one stage configured to amplify the output from the first nonlinear waveguide; and a second nonlinear waveguide configured to spectrally broaden the output from the first fiber amplifier.
    Type: Grant
    Filed: January 5, 2015
    Date of Patent: March 21, 2017
    Assignee: Thorlabs, Inc.
    Inventors: Reza Salem, Peter Fendel, Alex Cable
  • Patent number: 9599786
    Abstract: An optical mount is disclosed having at least one restraining element for an optic having at least one contact point with a first surface of the optic and at least one force element having at least one contact point with a second surface of the optic, wherein each contact point on the first surface of the optic has a corresponding contact point on the second surface of the optic.
    Type: Grant
    Filed: December 26, 2013
    Date of Patent: March 21, 2017
    Assignee: Thorlabs, Inc.
    Inventors: Brett D'Alessio, Alex Ezra Cable
  • Patent number: 9599834
    Abstract: A depolarizer, including: a photoalignment layer deposited on the substrate; and a birefringent layer deposited on the photoalignment layer; wherein the photoalignment layer includes a plurality of segments, each segment with a different fast axis orientation and a different pretilt angle, such that each segment of the birefringent layer over the corresponding segment of the photoalignment layer has a different fast axis angle and a different birefringent value.
    Type: Grant
    Filed: September 11, 2015
    Date of Patent: March 21, 2017
    Assignee: Thorlabs, Inc.
    Inventors: Lichao Zhang, Sam Rubin, Cary Zhang
  • Patent number: 9520548
    Abstract: A piezoelectric actuator with integrated features to provide linear displacement of a threaded rod is presented. One mechanism provides mechanically amplified piezo motion for high speed/short travel position scanning whereas the other provides a low speed/long travel piezo motorized position adjustment. Mechanical amplifier incorporates one or more piezo stacks in longitudinal axis with preload to translate an amplified motion in the order of a few times in the transverse axis, perpendicular to the piezo stack motion. The piezo amplified output travel is transmitted to the internally threaded features of the other mechanism where a screw with a ball at the end to push a desired surface for high speed scanning mode translation. The internally threaded feature of the other mechanism is also operated by a secondary piezo stack which produces slip-stick motion steps to rotate the screw in one direction or the other to produce a slow speed/long travel mode.
    Type: Grant
    Filed: September 11, 2015
    Date of Patent: December 13, 2016
    Assignee: Thorlabs, Inc.
    Inventors: Saeed Fathi, Mark Robson, Keith Dhese