Patents Assigned to NKT Photonics A/S
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Publication number: 20240272515Abstract: A method of making a microstructured optical fiber including loading the core and cladding materials of the fiber with hydrogen and deuterium at a loading temperature; annealing the fiber at a selected temperature Tanneal; pumping the fiber with radiation; and reducing the temperature of the fiber and storing the fiber at the reduced temperature before the step of pumping the fiber; and wherein the method allows the hydrogen and the deuterium to become bound to the core material and the cladding material.Type: ApplicationFiled: April 10, 2024Publication date: August 15, 2024Applicant: NKT Photonics A/SInventor: Carsten L. THOMSEN
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Publication number: 20240264362Abstract: A supercontinuum source including a pump light source arranged to emit pump light and a nonlinear fiber having a core arranged to receive the pump light. The supercontinuum includes infrared wavelengths generated in the nonlinear fiber from the pump light. The nonlinear fiber has a dispersion profile including a zero dispersion wavelength, a positive peak value at a peak wavelength longer than the zero dispersion wavelength, a minimum value of dispersion at a minimum wavelength longer than the peak wavelength. The pump light is arranged to include substantial energy at one or more preferred pump wavelengths which are 10 nm longer than the zero dispersion wavelength or more. Also, a supercontinuum pump source including a nonlinear fiber having a core including a fluoride glass and having a core diameter smaller than 7 ?m, where the fiber has a numerical aperture of more than 0.26.Type: ApplicationFiled: April 19, 2024Publication date: August 8, 2024Applicant: NKT Photonics A/SInventor: Peter Morten Moselund
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Publication number: 20240248252Abstract: An optical fiber for guiding an optical signal, the optical fiber includes: a core region; a cladding region surrounding the core region, the cladding region including an inner cladding region and an outer cladding region, wherein a plurality of the plurality of inner cladding features are of a first type of feature, wherein a plurality of the plurality of inner cladding features are of a second type of feature including an air hole in direct contact with the background material having a refractive index, nb, and wherein the inner cladding features are arranged in a substantially hexagonal lattice and the six nearest neighbors surrounding a first type of feature are of the second type of feature, and wherein no first type of feature is surrounded by less than six nearest neighbors of the second type of feature.Type: ApplicationFiled: July 1, 2022Publication date: July 25, 2024Applicant: NKT PHOTONICS A/SInventors: Mattia MICHIELETTO, Martin Erland Vestergaard PEDERSEN, Martin MAACK, Mette Marie JOHANSEN
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Patent number: 12038668Abstract: A light source, including: a pulse generator for providing an initial sequence of light pulses, the pulse generator including an optical source for producing optical pulses; and a modulator in communication with the optical source for increasing or decreasing the selected number of pulses provided by the pulse generator in the selected time period; first and second optical arms, for propagating, respectively, first and second sequences of light pulses, wherein the first optical arm includes a first manipulator configured to generate the first sequence of light pulses from the initial sequence of light pulses, wherein the light source includes a nonlinear optical element arranged to receive the first sequence of light pulses or the second sequence of light pulses, and an optical switch arranged to switch either the first sequence of light pulses or the second sequence of light pulses for reception by the nonlinear optical element.Type: GrantFiled: December 21, 2020Date of Patent: July 16, 2024Assignee: NKT PHOTONICS A/SInventor: Thomas Vestergaard Andersen
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Patent number: 12001051Abstract: The invention relates to a supercontinuum source comprising a pump light source arranged to emit pump light and a nonlinear fiber having a core arranged to receive the pump light. The supercontinuum comprises infrared wavelengths generated in the nonlinear fiber from the pump light. The nonlinear fiber has a dispersion profile comprising—a zero dispersion wavelength,—a positive peak value at a peak wavelength longer than the zero dispersion wavelength,—a minimum value of dispersion at a minimum wavelength longer than the peak wavelength. The pump light is arranged to comprise substantial energy at one or more preferred pump wavelengths which are 10 nm longer than the zero dispersion wavelength or more, The invention also relates to a supercontinuum pump source comprising a nonlinear fiber having a core comprising a fluoride glass and having a core diameter smaller than 7 ?m, where the fiber has a numerical aperture of more than 0.26.Type: GrantFiled: July 22, 2013Date of Patent: June 4, 2024Assignee: NKT PHOTONICS A/SInventor: Peter Morten Moselund
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Patent number: 11994688Abstract: A depolarizing homogenizer including one or more lenslet arrays, for providing a plurality of beamlets associated with different respective parts of a received beam. The depolarizing homogenizer includes a depolarizer comprising different areas which affect polarization differently, the depolarizer being positioned to cause alteration of the polarization characteristics of at least some of the plurality of beamlets. A lens is arranged to at least partially overlap the beamlets having the altered polarization characteristics.Type: GrantFiled: June 22, 2023Date of Patent: May 28, 2024Assignee: NKT PHOTONICS A/SInventors: Dmitri Oulianov, Frederik Nielsen, Irnis Kubat, Thomas Feuchter, Timur Iskhakov
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Patent number: 11988940Abstract: A method of making a microstructured optical fiber including loading the core and cladding materials of the fiber with hydrogen and deuterium at a loading temperature; annealing the fiber at a selected temperature Tanneal; pumping the fiber with radiation; and reducing the temperature of the fiber and storing the fiber at the reduced temperature before the step of pumping the fiber; and wherein the method allows the hydrogen and the deuterium to become bound to the core material and the cladding material.Type: GrantFiled: July 1, 2022Date of Patent: May 21, 2024Assignee: NKT PHOTONICS A/SInventor: Carsten L. Thomsen
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Patent number: 11982834Abstract: A microstructured optical fiber for generating supercontinuum light. The optical fiber includes a core and a cladding region surrounding the core. The optical fiber includes a first fiber length section, a second fiber length section as well as an intermediate fiber length section between said first and second fiber length sections. The first fiber length section has a core with a first characteristic core diameter larger than about 7 ?m. The second fiber length section has a core with a second characteristic core diameter, smaller than said first characteristic core diameter. The intermediate length section of the optical fiber includes a core which is tapered from said first characteristic core diameter to the second characteristic core diameter over a tapered length. Also, a supercontinuum light source including an optical fiber and a pump light source.Type: GrantFiled: December 8, 2021Date of Patent: May 14, 2024Assignee: NKT PHOTONICS A/SInventors: Carsten L. Thomsen, Thomas T. Alkeskjold, Erik B. Thomsen
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Patent number: 11977255Abstract: A hollow core photonic crystal fiber (PCF) including an outer cladding region and seven hollow tubes surrounded by the outer cladding region. Each of the hollow tubes is fused to the outer cladding to form a ring defining an inner cladding region and a hollow core region surrounded by the inner cladding region. The hollow tubes are not touching each other but are arranged with distance to adjacent hollow tubes. The hollow tubes each have an average outer diameter d2 and an average inner diameter d1, wherein d1/d2 is equal to or larger than about 0.8, such as equal to or larger than about 0.85, such as equal to or larger than about 0.9. Also, a laser system.Type: GrantFiled: April 17, 2023Date of Patent: May 7, 2024Assignee: NKT Photonics A/SInventors: Jens Kristian Lyngsøe, Christian Jakobsen, Mattia Michieletto
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Publication number: 20240118585Abstract: A coherent anti-stokes Raman scattering apparatus for imaging a sample includes an optical output; an optical source arranged to generate a first optical signal at a first wavelength; and a nonlinear element arranged to receive the first optical signal, where the nonlinear element is arranged to cause the first optical signal to undergo four-wave mixing on transmission through the nonlinear element such that a second optical signal at a second wavelength and a third optical signal at a third wavelength are generated, wherein an optical signal pair including two of the first, second and third optical signals is provided to the optical output for imaging the sample.Type: ApplicationFiled: May 1, 2023Publication date: April 11, 2024Applicant: NKT PHOTONICS A/SInventors: Anatoly Borisovich Grudinin, John Redvers Clowes, Pascal Dupriez, Michael Yarrow
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Publication number: 20240111087Abstract: A Photonic Crystal Fiber (PCF) a method of its production and a supercontinuum light source comprising such PCF. The PCF has a longitudinal axis and includes a core extending along the length of said longitudinal axis and a cladding region surrounding the core. At least the cladding region includes a plurality of microstructures in the form of inclusions extending along the longitudinal axis of the PCF in at least a microstructured length section. In at least a degradation resistant length section of the microstructured length section the PCF includes hydrogen and/or deuterium. In at least the degradation resistant length section the PCF further includes a main coating surrounding the cladding region, which main coating is hermetic for the hydrogen and/or deuterium at a temperature below Th, wherein Th is at least about 50° C., preferably 50° C.<Th<250° C.Type: ApplicationFiled: June 19, 2023Publication date: April 4, 2024Applicant: NKT Photonics A/SInventors: Thomas Tanggaard ALKESKJOLD, Casper Laur BYG, Christian Jakobsen, Jens Kristian LYNGSØE, Kim G. JESPERSEN, Jeppe JOHANSEN, Martin Dybendal MAACK, Martin Erland Vestergaard PEDERSEN, Carsten L. THOMSEN
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Patent number: 11947160Abstract: An optical fiber having an axial direction and a cross section perpendicular to the axial direction, and a method and preform for producing such an optical fiber. The optical fiber is adapted to guide light at a wavelength ?, and includes a core region, an inner cladding region surrounding said core region, and at least one of a first type of feature including a void and a surrounding first silica material. The core, the inner cladding region and the first type of feature extends along said axial direction over at least a part of the length of the optical fiber. The first silica material has a first chlorine concentration of about 300 ppm or less.Type: GrantFiled: January 5, 2023Date of Patent: April 2, 2024Assignee: NKT PHOTONICS A/SInventors: Jens Kristian Lyngsø, Christian Jakobsen, Jesper Skov Gretlund, Harald R. Simonsen
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Publication number: 20240106198Abstract: A laser device includes a laser configured to generate laser light and a laser control module configured to receive at least a portion of the laser light generated by the laser, to generate a control signal and to feed the control signal back to the laser for stabilizing the frequency, wherein the laser control module includes a tunable frequency discriminating element which is preferably continuously frequency tunable, and where the laser control module is placed outside the laser cavity.Type: ApplicationFiled: May 31, 2023Publication date: March 28, 2024Applicant: NKT PHOTONICS A/SInventors: Jens E. PEDERSEN, Poul VARMING, Christian V. POULSEN, Thomas O. FAGERHØJ, Bjarke GØTH, Henrik SØRENSEN
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Publication number: 20240041313Abstract: A supercontinuum light source can include a seed laser arranged to provide seed pulses with a pulse frequency Fseed; a pulse frequency multiplier (PFM) arranged to multiply the seed pulses by converting pulses having the pulse frequency Fseed to pump pulses with a pulse frequency Fpump, where Fpump is larger than Fseed; and a non-linear element arranged to receive said pump pulses and convert said pump pulses to pulses of supercontinuum light. The PFM can further include a splitter for splitting pulses into first and second sub beams each having the same pulse frequency, where the PFM is configured such that the sub beams experience different delays; and a combiner for combining said first and second sub beams into a beam having the pulse frequency that is greater than said same pulse frequency. The splitter can have an uneven splitter ratio.Type: ApplicationFiled: September 28, 2023Publication date: February 8, 2024Applicant: NKT PHOTONICS A/SInventors: Carsten L. THOMSEN, Thomas Vestergaard Andersen, Thomas FEUCHTER
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Patent number: 11846809Abstract: A photonic crystal fiber (PCF) assembly including a PCF and at least one ferrule structure. The PCF includes a core region and a cladding region and a first fiber end section with a first fiber end. The ferrule structure is mounted to the first fiber end section. The ferrule structure includes an inner ferrule arrangement and an outer ferrule arrangement surrounding the first fiber end section. The inner ferrule arrangement includes an inner ferrule front section proximally to the first fiber end and an inner ferrule rear section distally to the first fiber end, and each of the sections has an inner diameter and in at least a length thereof fully surrounds the PCF. The inner ferrule rear section is anchored in an anchor length section to the first fiber end section and the inner ferrule front section supports the first fiber end section proximally to the first fiber end.Type: GrantFiled: May 13, 2022Date of Patent: December 19, 2023Assignee: NKT PHOTONICS A/SInventors: Thomas Tanggaard Alkeskjold, Jens Kristian Lyngsøe, Christian Jakobsen, Martin Dybendal Maack, Mattia Michieletto, Sidsel Rübner Papior
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Publication number: 20230384512Abstract: A delivery fiber assembly suitable for delivering broad band light and including a delivery fiber and a connector member. The delivery fiber has a length, an input end for launching light, and a delivery end. The delivery fiber includes along its length a core region and a cladding region surrounding the core region, the cladding region includes a cladding background material having a refractive index Nbg and a plurality of microstructures in the form of inclusions of solid material having refractive index up to Ninc and extending in the length of the longitudinal axis of the delivery fiber, wherein Ninc<Nbg. The plurality of inclusions in the cladding region is arranged in a cross-sectional pattern including at least two rings of inclusions surrounding the core region. The connector member is mounted to the delivery fiber at a delivery end section of the delivery fiber including the delivery end.Type: ApplicationFiled: May 31, 2023Publication date: November 30, 2023Applicant: NKT PHOTONICS A/SInventors: Johannes WEIRICH, Martin Dybendal MAACK
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Publication number: 20230375897Abstract: A light source, including: a pulse generator for providing an initial sequence of light pulses, the initial sequence of light pulses including an initial number of light pulses within a predetermined time period, first and second optical arms, for propagating, respectively, first and second sequences of light pulses, each derived from the initial sequence of light pulses, wherein the first optical arm includes a first manipulator configured to generate the first sequence of light pulses from the initial sequence of light pulses, wherein the light source includes a nonlinear optical element arranged to receive the first sequence of light pulses or the second sequence of light pulses, and an optical switch arranged to switch that either the first sequence of light pulses or the second sequence of light pulses is received by the nonlinear optical element.Type: ApplicationFiled: December 21, 2020Publication date: November 23, 2023Applicant: NKT PHOTONICS A/SInventor: Thomas Vestergaard ANDERSEN
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Publication number: 20230359102Abstract: An optical source (100) comprising a supercontinuum generation apparatus comprising a pump light source (102), a twisted photonic crystal fibre, PCF, (104) and a wideband quarter-wave retarder (106). The pump light source is arranged to provide circularly polarised pump light. The twisted PCF is arranged to receive the pump light and to convert the pump light into circularly polarised supercontinuum light. The wideband quarter-wave retarder is arranged to convert the circularly polarised supercontinuum light into linearly polarised supercontinuum light. The optical source may additionally comprise a wavelength tunable bandpass optical filter arranged to transmit the linearly polarised supercontinuum light at wavelengths within a selected range.Type: ApplicationFiled: June 29, 2023Publication date: November 9, 2023Applicant: NKT PHOTONICS A/SInventors: Cameron Lesley Colwell SMITH, Alexandra LUPI, Martin Erland Vestergaard PEDERSEN, Jens Kristian LYNGSØ, Martin D. MAACK
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Publication number: 20230350219Abstract: A depolarizing homogenizer including one or more lenslet arrays, for providing a plurality of beamlets associated with different respective parts of a received beam. The depolarizing homogenizer includes a depolarizer comprising different areas which affect polarization differently, the depolarizer being positioned to cause alteration of the polarization characteristics of at least some of the plurality of beamlets. A lens is arranged to at least partially overlap the beamlets having the altered polarization characteristics.Type: ApplicationFiled: June 22, 2023Publication date: November 2, 2023Applicant: NKT PHOTONICS A/SInventors: Dmitri OULIANOV, Frederik NIELSEN, Irnis KUBAT, Thomas FEUCHTER, Timur ISKHAKOV
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Patent number: RE50026Abstract: A method of tuning the time duration of laser output pulses, the method including spectrally dispersing optical pulses and further comprising providing an optical pulse having a time duration and a spectral bandwidth; spectrally dispersing (243, 245) the optical pulse so as to provide a selected change in the time duration of the pulse responsive to the spectral bandwidth of the pulse; outputting (226) an optical output pulse having a first time duration that is responsive to the selected change in time duration; providing another optical pulse; changing the amount of spectral bandwidth of the another optical pulse (272) to be different than that of the optical pulse or changing the amount of spectral dispersion so that spectrally dispersing the another optical pulse provides a change in time duration that is different than the selected change; and outputting (226) another optical output pulse having a second time duration that is responsive to the different change in time duration, the second time duration oType: GrantFiled: January 13, 2020Date of Patent: June 25, 2024Assignee: NKT PHOTONICS A/SInventors: Paulo Almeida, John Redvers Clowes, Pascal Dupriez, Anatoly Borisovich Grudinin