Patents by Inventor Thomas L. Earles

Thomas L. Earles 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).

  • Publication number: 20240097404
    Abstract: Single-mode quantum cascade semiconductor lasers are provided. The lasers comprise a laser element, the laser element comprising a quantum cascade active layer; an upper cladding layer over the quantum cascade active layer; and a lower cladding layer under the quantum cascade active layer, wherein the quantum cascade active layer, the upper cladding layer and the lower cladding layer define a guided optical mode. The quantum cascade active layer and the upper and lower cladding layers are shaped in the form of a ridge structure having a front face, a back face opposite the front face, and a lasing face through which laser emission exits the ridge structure, the ridge structure configured such that the laser emission has a single-lobe, far-field beam pattern from the ridge structure comprising certain sections, including tapered sections, collateral sections, or both.
    Type: Application
    Filed: September 24, 2020
    Publication date: March 21, 2024
    Inventors: Luke J. Mawst, Thomas L. Earles, Christopher A. Sigler, Dan Botez
  • Patent number: 9742151
    Abstract: A terahertz quantum cascade laser device is provided comprising a substrate having a top substrate surface, a bottom substrate surface, and an exit facet extending between the top substrate surface and the bottom substrate surface at an angle ?tap. The device comprises a waveguide structure having a top surface, a bottom surface, a front facet extending between the top surface and the bottom surface and positioned proximate to the exit facet, and a back facet extending between the top surface and the bottom surface and oppositely facing the front facet. The waveguide structure comprises a quantum cascade laser structure configured to generate light comprising light of a first frequency ?1, light of a second frequency ?2, and light of a third frequency ?THz, wherein ?THz=?1??2; an upper cladding layer; and a lower cladding layer.
    Type: Grant
    Filed: May 4, 2016
    Date of Patent: August 22, 2017
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Dan Botez, Christopher A. Sigler, Thomas L. Earles, Jeremy D. Kirch
  • Patent number: 9093821
    Abstract: Semiconductor lasers comprise a substrate; an active layer configured to generate transverse magnetic (TM) polarized light under an electrical bias; an upper cladding layer; a lower cladding layer; and a distributed feedback (DFB) grating defined by the interface of a layer of metal and a layer of semiconductor under the layer of metal, the interface periodically corrugated in the longitudinal direction of the laser with a periodicity of ?DFB=m?/(2neff), wherein m>1. The DFB grating is configured such that loss of one or more antisymmetric longitudinal modes of the laser structure via absorption to the DFB grating is sufficiently maximized so as to produce lasing of a symmetric longitudinal mode of the laser with laser emission characterized by a single-lobe beam along each direction defined by the grating diffraction orders corresponding to emission away from the plane of the grating.
    Type: Grant
    Filed: December 11, 2013
    Date of Patent: July 28, 2015
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Luke J. Mawst, Dan Botez, Thomas L. Earles, Jeremy D. Kirch, Christopher A. Sigler
  • Publication number: 20150162724
    Abstract: Semiconductor lasers comprise a substrate; an active layer configured to generate transverse magnetic (TM) polarized light under an electrical bias; an upper cladding layer; a lower cladding layer; and a distributed feedback (DFB) grating defined by the interface of a layer of metal and a layer of semiconductor under the layer of metal, the interface periodically corrugated in the longitudinal direction of the laser with a periodicity of ?DFB=m?/(2neff), wherein m>1. The DFB grating is configured such that loss of one or more antisymmetric longitudinal modes of the laser structure via absorption to the DFB grating is sufficiently maximized so as to produce lasing of a symmetric longitudinal mode of the laser with laser emission characterized by a single-lobe beam along each direction defined by the grating diffraction orders corresponding to emission away from the plane of the grating.
    Type: Application
    Filed: December 11, 2013
    Publication date: June 11, 2015
    Applicant: Wisconsin Alumni Research Foundation
    Inventors: Luke J. Mawst, Dan Botez, Thomas L. Earles, Jeremy D. Kirch, Christopher A. Sigler
  • Patent number: 6363092
    Abstract: High power edge emitting semiconductor lasers are formed to emit with very narrow spectral width at precisely selected wavelengths. An epitaxial structure is grown on a semiconductor substrate, e.g., GaAs, and includes an active region at which light emission occurs, upper and lower confinement layers and upper and lower cladding layers. A distributed feedback grating is formed in an aluminum free section of the upper confinement layer to act upon the light generated in the active region to produce lasing action and emission of light from an edge face of the semiconductor laser. Such devices are well suited to being formed to provide a wide stripe, e.g., in the range of 50 to 100 &mgr;m or more, and high power, in the 1 watt range, at wavelengths including visible wavelengths.
    Type: Grant
    Filed: January 24, 2001
    Date of Patent: March 26, 2002
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Dan Botez, Thomas L Earles, Luke J. Mawst
  • Patent number: 6195381
    Abstract: High power edge emitting semiconductor lasers are formed to emit with very narrow spectral width at precisely selected wavelengths. An epitaxial structure is grown on a semiconductor substrate, e.g., GaAs, and includes an active region at which light emission occurs, upper and lower confinement layers and upper and lower cladding layers. A distributed feedback grating is formed in an aluminum free section of the upper confinement layer to act upon the light generated in the active region to produce lasing action and emission of light from an edge face of the semiconductor laser. Such devices are well suited to being formed to provide a wide stripe, e.g., in the range of 50 to 100 &mgr;m or more, and high power, in the 1 watt range, at wavelengths including visible wavelengths.
    Type: Grant
    Filed: April 27, 1998
    Date of Patent: February 27, 2001
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Dan Botez, Thomas L. Earles, Luke J. Mawst
  • Patent number: 5644177
    Abstract: Micromechanical structures capable of actuation for purposes such as fluid flow control are formed on substrates in sizes in the range of one or two millimeters or less using micromechanical processing techniques. A magnetic core having a gap therein is fixed on the substrate, and a plunger is mounted by a spring for movement parallel to the substrate in response to the flux provided to the gap of the fixed core. An electrical coil wound around a mandrel is engaged to the fixed magnetic core such that flux is induced in the core when current is supplied to the coil, driving the plunger against the force of the spring. A micromechanical fluid control unit includes a metal frame structure formed by electrodeposition on a substrate with the inner wall of the frame having slots formed therein to admit a separator wall which divides the interior of the frame into separate chambers, with a cover secured over the top of the frame and the separator wall to seal the chambers.
    Type: Grant
    Filed: February 23, 1995
    Date of Patent: July 1, 1997
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Henry Guckel, Jonathan L. Klein, Thomas L. Earles