Patents by Inventor Patrick Sebastian UEBEL

Patrick Sebastian UEBEL 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: 11640028
    Abstract: A hollow-core photonic crystal fiber (HC-PCF) (10) for guiding at least one mode of a light field (1) along a mode guiding section (11) of the HC-PCF (10), comprises an outer jacket (12), an inner cladding (13) and a hollow core (14), which extend along the HC-PCF (10), wherein the inner cladding (13) is arranged on an interior surface of the outer jacket (12) and comprises anti-resonant structures (15) surrounding the hollow core (14), and the hollow core (14) has a mode guiding core diameter (d) provided along the mode guiding section of the HC-PCF (10), and wherein at least one fiber end (16) of the HC-PCF (10) has a light field coupling section (17) in which the hollow core (14) is tapered over an axial coupling section length from a fiber end core diameter (D) at the at least one fiber end (16) to the mode guiding core diameter (d). Furthermore, methods of using the HC-PCF and manufacturing the HC-PCF are described.
    Type: Grant
    Filed: May 26, 2021
    Date of Patent: May 2, 2023
    Assignee: MAX-PLANCK-GESELLSCHAFT ZUR FÖRDERUNG DER WISSENSCHAFTEN E.V.
    Inventors: Sebastian Thomas Bauerschmidt, Patrick Sebastian Uebel, Philip St. J. Russell
  • Patent number: 11556044
    Abstract: Disclosed is an optical component, being configured to function as an optical frequency converter in a broadband radiation source device. The optical component comprises a gas cell, and a hollow-core photonic crystal fiber at least partially enclosed within said gas cell. The local cavity volume of said gas cell, where said hollow-core photonic crystal fiber is enclosed within the gas cell, comprises a maximum value of 36 cm3 per cm of length of said hollow-core photonic crystal fiber.
    Type: Grant
    Filed: September 27, 2021
    Date of Patent: January 17, 2023
    Assignee: ASML Netherlands B.V.
    Inventors: Patrick Sebastian Uebel, Sebastian Thomas Bauerschmidt, Peter Maximilian Götz
  • Patent number: 11467339
    Abstract: A system and method for providing a radiation source. In one arrangement, the radiation source includes an optical fiber that is hollow, and has an axial direction, a gas that fills the hollow of the optical fiber, and a plurality of temperature setting devices disposed at respective positions along the axial direction of the optical fiber, wherein the temperature setting devices are configured to control the temperature of the gas to locally control the density of the gas.
    Type: Grant
    Filed: March 3, 2021
    Date of Patent: October 11, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Hendrik Sabert, Patrick Sebastian Uebel
  • Publication number: 20220317368
    Abstract: A mounted hollow-core fiber arrangement includes a hollow-core fiber having a microstructure, and a mount arrangement including a plurality of mounting contacts configured to apply a force to an outer layer of the hollow-core fiber. A portion of the hollow-core fiber is located in a receiving region of the mount arrangement. The plurality of mounting contacts are positioned around the receiving region. The mounting contacts are distributed around the receiving region, the distribution of the mounting contacts corresponding to a distribution of features of the microstructure of the hollow-core fiber. The mounted hollow core fiber can be used in a radiation source apparatus for providing broadband radiation.
    Type: Application
    Filed: June 9, 2022
    Publication date: October 6, 2022
    Applicant: ASML NETHERLANDS B. V.
    Inventors: Sebastian Thomas BAUERSCHMIDT, Patrick Sebastian UEBEL, Peter Maximilian GÕTZ
  • Publication number: 20220291595
    Abstract: Provided are light sources and methods of controlling them, and devices and methods for use in measurement applications, particularly in metrology, for example in a lithographic apparatus. The methods and devices provide mechanisms for detection and/or correction of variations in the light source, in particular stochastic variations. Feedback or feedforward approaches can be used for the correction of the source and/or the metrology outputs. An exemplary method of controlling the spectral output of a light source which emits a time-varying spectrum of light includes the steps of: determining at least one characteristic of the spectrum of light emitted from the light source; and using said determined characteristic to control the spectral output.
    Type: Application
    Filed: July 7, 2020
    Publication date: September 15, 2022
    Applicant: ASML Netherlands B.V.
    Inventors: Marinus Petrus REIJNDERS, Hendrik SABERT, Patrick Sebastian UEBEL
  • Publication number: 20220269183
    Abstract: A mode control system and method for controlling an output mode of a broadband radiation source including a photonic crystal fiber (PCF). The mode control system includes at least one detection unit configured to measure one or more parameters of radiation emitted from the broadband radiation source to generate measurement data, and a processing unit configured to evaluate mode purity of the radiation emitted from the broadband radiation source, from the measurement data. Based on the evaluation, the mode control system is configured to generate a control signal for optimization of one or more pump coupling conditions of the broadband radiation source. The one or more pump coupling conditions relate to the coupling of a pump laser beam with respect to a fiber core of the photonic crystal fiber.
    Type: Application
    Filed: May 11, 2022
    Publication date: August 25, 2022
    Applicants: ASML NETHERLANDS B.V., ASML HOLDING N.V.
    Inventors: Sebastian Thomas Bauerschmidt, Peter Maximilian Götz, Patrick Sebastian Uebel, Ronald Franciscus Herman Hugers, Jan Adrianus Boer, Edwin Johannes Cornelis Bos, Andreas Johannes Antonius Brouns, Vitaliy Prosyentsov, Paul William Scholtes - Van Eijk, Paulus Antonius Andreas Teunissen, Mahesh Upendra Ajgaonkar
  • Patent number: 11385402
    Abstract: A mounted hollow-core fiber arrangement includes a hollow-core fiber having a microstructure, and a mount arrangement including a plurality of mounting contacts configured to apply a force to an outer layer of the hollow-core fiber. A portion of the hollow-core fiber is located in a receiving region of the mount arrangement. The plurality of mounting contacts are positioned around the receiving region. The mounting contacts are distributed around the receiving region, the distribution of the mounting contacts corresponding to a distribution of features of the microstructure of the hollow-core fiber. The mounted hollow core fiber can be used in a radiation source apparatus for providing broadband radiation.
    Type: Grant
    Filed: June 17, 2020
    Date of Patent: July 12, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Sebastian Thomas Bauerschmidt, Patrick Sebastian Uebel, Peter Maximilian Götz
  • Patent number: 11372154
    Abstract: A hollow-core photonic crystal fiber (HC-PCF) assembly for converting input radiation to broadband radiation, the hollow core fiber assembly including: a micro-structured fiber with a hollow core extending along a length of the fiber from an input end configured to receive input radiation to an output end configured to output broadband radiation, wherein the hollow core of the fiber is configured to include a medium; and a density control system configured to control a density profile of the medium along at least a part of the length of the fiber to establish a desired zero dispersion wavelength profile along at least a part of the length of the fiber.
    Type: Grant
    Filed: December 21, 2020
    Date of Patent: June 28, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Hendrik Sabert, Patrick Sebastian Uebel, Willem Richard Pongers
  • Publication number: 20220187680
    Abstract: A broadband radiation source device configured for generating a broadband output radiation upon receiving pump radiation, the device including: a hollow-core photonic crystal fiber (HC-PCF) including at least one structurally varied portion having at least one structural parameter of the HC-PCF varied with respect to one or more main portions of the HC-PCF, wherein the at least one structurally varied portion includes at least a structurally varied portion located downstream of a position along the length of the HC-PCF where the pump radiation will be spectrally expanded by a modulation instability dominated nonlinear optical process, and wherein the at least one structurally varied portion is configured and located such that the broadband output radiation includes wavelengths in the ultraviolet region.
    Type: Application
    Filed: December 1, 2021
    Publication date: June 16, 2022
    Applicant: ASML NETHERLANDS B.V.
    Inventors: Janneke Ravensbergen, Patrick Sebastian Uebel, Willem Richard Pongers
  • Patent number: 11360396
    Abstract: A mode control system and method for controlling an output mode of a broadband radiation source including a photonic crystal fiber (PCF). The mode control system includes at least one detection unit configured to measure one or more parameters of radiation emitted from the broadband radiation source to generate measurement data, and a processing unit configured to evaluate mode purity of the radiation emitted from the broadband radiation source, from the measurement data. Based on the evaluation, the mode control system is configured to generate a control signal for optimization of one or more pump coupling conditions of the broadband radiation source. The one or more pump coupling conditions relate to the coupling of a pump laser beam with respect to a fiber core of the photonic crystal fiber.
    Type: Grant
    Filed: August 27, 2020
    Date of Patent: June 14, 2022
    Assignees: ASML Netherlands B.V., ASML Holding N.V.
    Inventors: Sebastian Thomas Bauerschmidt, Peter Maximilian Götz, Patrick Sebastian Uebel, Ronald Franciscus Herman Hugers, Jan Adrianus Boer, Edwin Johannes Cornelis Bos, Andreas Johannes Antonius Brouns, Vitaliy Prosyentsov, Paul William Scholtes-Van Eijk, Paulus Antonius Andreas Teunissen, Mahesh Upendra Ajgaonkar
  • Publication number: 20220128912
    Abstract: An apparatus for receiving input radiation and broadening a frequency range of the input radiation to provide broadband output radiation. The apparatus includes a chamber, a fiber, a gas generating apparatus, and a radical generating apparatus. The fiber includes a hollow core configured to guide radiation propagating through the fiber, the hollow core in fluid communication with the chamber. The gas generating apparatus is configured to provide a gas within the chamber. The radical generating apparatus is configured to provide free radicals within the chamber to reduce contaminants in the gas. The apparatus may be included in a radiation source.
    Type: Application
    Filed: January 11, 2022
    Publication date: April 28, 2022
    Applicant: ASML Netherlands B.V.
    Inventors: Patrick Sebastian Uebel, Sebastian Thomas Bauerschmidt, Paul William Scholtes-Van Eijk
  • Publication number: 20220128910
    Abstract: A radiation source includes: a hollow core optical fiber, a working medium; and a pulsed pump radiation source. The hollow core optical fiber has a body and has a hollow core. The working medium is disposed within the hollow core. The pulsed pump radiation source is arranged to produce pulsed pump radiation that is received by, and propagates through, the hollow core from an input end to an output end. One or more parameters of the pulsed pump radiation, the optical fiber and the working medium are configured to allow soliton self-compression of the pulsed pump radiation so as to change a spectrum of the pulsed pump radiation so as to form output radiation. In some embodiments, a length of the optical fiber is such that the output end substantially coincides with a position at which a temporal extent of the pulsed pump radiation is minimal.
    Type: Application
    Filed: January 6, 2022
    Publication date: April 28, 2022
    Applicant: ASML NETHERLANDS B.V.
    Inventors: Patrick Sebastian UEBEL, Sebastian Thomas BAUERSCHMIDT, Yongfeng NI
  • Patent number: 11287747
    Abstract: A system and method for providing a radiation source is disclosed. In one arrangement, the radiation source includes a gas cell having a window, an optical fiber that is hollow and has an axial direction, an end thereof being enclosed within the gas cell and optically coupled to the window via an optical path, and a surface, disposed around the end of the optical fiber, and extending past the end of the optical fiber in the axial direction towards the window so as to limit one or more selected from: the exchange of gas between the optical path and the remainder of the gas cell, ingress of plasma towards or into the optical fiber, and/or radical flux towards etch-susceptible surfaces.
    Type: Grant
    Filed: August 3, 2020
    Date of Patent: March 29, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Andrey Nikipelov, Patrick Sebastian Uebel, Amir Abdolvand, Sebastian Thomas Bauerschmidt, Peter Maximilian Götz, Natallia Eduardauna Uzunbajakava
  • Patent number: 11262665
    Abstract: An apparatus (100) for receiving input radiation (108) and broadening a frequency range of the input radiation so as to provide broadband output radiation (110). The apparatus comprises a fiber (102), wherein the fiber (102) may comprise a hollow core (104) for guiding radiation propagating through the fiber (102). The apparatus (100) further comprises an apparatus for providing a gas mixture (106) within the hollow core (104). The gas mixture (106) comprises a hydrogen component, and a working component, wherein the working component is for broadening a frequency range of a received input radiation (108) so as to provide the broadband output radiation (110). The apparatus may be included in a radiation source.
    Type: Grant
    Filed: March 24, 2020
    Date of Patent: March 1, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Patrick Sebastian Uebel, Sebastian Thomas Bauerschmidt, Paul William Scholtes-Van Eijk
  • Publication number: 20220045470
    Abstract: A broadband light source device for creating broadband light pulses includes a hollow-core fiber and a pump laser source device. The hollow-core fiber is configured to create the broadband light pulses by an optical non-linear broadening of pump laser pulses. The hollow-core fiber includes a filling gas, an axial hollow light guiding fiber core configured to support core modes of a guided light field, and an inner fiber structure surrounding the fiber core and configured to support transverse wall modes of the guided light field. The pump laser source device is configured to create and provide the pump laser pulses at an input side of the hollow-core fiber. The transverse wall modes include a fundamental transverse wall mode and second and higher order transverse wall modes.
    Type: Application
    Filed: October 21, 2021
    Publication date: February 10, 2022
    Applicant: Max-Planck-Gesellschaft zur Förderung der Wissenschaften e.V.
    Inventors: Patrick Sebastian Uebel, Philip St. J. Russell, Sebastian Thomas Bauerschmidt
  • Patent number: 11237486
    Abstract: A radiation source includes: a hollow core optical fiber, a working medium; and a pulsed pump radiation source. The hollow core optical fiber has a body and has a hollow core. The working medium is disposed within the hollow core. The pulsed pump radiation source is arranged to produce pulsed pump radiation that is received by, and propagates through, the hollow core from an input end to an output end. One or more parameters of the pulsed pump radiation, the optical fiber and the working medium are configured to allow soliton self-compression of the pulsed pump radiation so as to change a spectrum of the pulsed pump radiation so as to form output radiation. In some embodiments, a length of the optical fiber is such that the output end substantially coincides with a position at which a temporal extent of the pulsed pump radiation is minimal.
    Type: Grant
    Filed: July 17, 2020
    Date of Patent: February 1, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Patrick Sebastian Uebel, Sebastian Thomas Bauerschmidt, Yongfeng Ni
  • Publication number: 20220011644
    Abstract: Disclosed is an optical component, being configured to function as an optical frequency converter in a broadband radiation source device. The optical component comprises a gas cell, and a hollow-core photonic crystal fiber at least partially enclosed within said gas cell. The local cavity volume of said gas cell, where said hollow-core photonic crystal fiber is enclosed within the gas cell, comprises a maximum value of 36 cm3 per cm of length of said hollow-core photonic crystal fiber.
    Type: Application
    Filed: September 27, 2021
    Publication date: January 13, 2022
    Applicant: ASML Netherlands B.V.
    Inventors: Patrick Sebastian UEBEL, Sebastian Thomas Bauerschmidt, Peter Maximilian Götz
  • Patent number: 11205884
    Abstract: A broadband light source device for creating broadband light pulses includes a hollow-core fiber and a pump laser source device. The hollow-core fiber is configured to create the broadband light pulses by an optical non-linear broadening of pump laser pulses. The hollow-core fiber includes a filling gas, an axial hollow light guiding fiber core configured to support core modes of a guided light field, and an inner fiber structure surrounding the fiber core and configured to support transverse wall modes of the guided light field. The pump laser source device is configured to create and provide the pump laser pulses at an input side of the hollow-core fiber. The transverse wall modes include a fundamental transverse wall mode and second and higher order transverse wall modes.
    Type: Grant
    Filed: May 15, 2020
    Date of Patent: December 21, 2021
    Assignee: Max-Planck-Gesellschaft zur Förderung der Wissenschaften e. V.
    Inventors: Patrick Sebastian Uebel, Philip St. J. Russell, Sebastian Thomas Bauerschmidt
  • Publication number: 20210364885
    Abstract: A supercontinuum radiation source including a modulator being operable to modulate pump laser radiation including a train of radiation pulses to provide modulated pump laser radiation, the modulation being such to selectively provide a burst of the pulses; and a hollow-core photonic crystal fiber being operable to receive the modulated pump laser radiation and excite a working medium contained within the hollow-core photonic crystal fiber so as to generate supercontinuum radiation.
    Type: Application
    Filed: May 4, 2021
    Publication date: November 25, 2021
    Applicant: ASML NETHERLANDS B.V.
    Inventors: Sebastian Thomas BAUERSCHMIDT, Peter Maximilian GÖTZ, Patrick Sebastian UEBEL
  • Publication number: 20210356656
    Abstract: A hollow-core photonic crystal fiber (HC-PCF) (10) for guiding at least one mode of a light field (1) along a mode guiding section (11) of the HC-PCF (10), comprises an outer jacket (12), an inner cladding (13) and a hollow core (14), which extend along the HC-PCF (10), wherein the inner cladding (13) is arranged on an interior surface of the outer jacket (12) and comprises anti-resonant structures (15) surrounding the hollow core (14), and the hollow core (14) has a mode guiding core diameter (d) provided along the mode guiding section of the HC-PCF (10), and wherein at least one fiber end (16) of the HC-PCF (10) has a light field coupling section (17) in which the hollow core (14) is tapered over an axial coupling section length from a fiber end core diameter (D) at the at least one fiber end (16) to the mode guiding core diameter (d). Furthermore, methods of using the HC-PCF and manufacturing the HC-PCF are described.
    Type: Application
    Filed: May 26, 2021
    Publication date: November 18, 2021
    Applicant: Max-Planck-Gesellschaft Zur Forderung der Wissenschaften e. V
    Inventors: Sebastian Thomas BAUERSCHMIDT, Patrick Sebastian UEBEL, Philip St.J. RUSSELL