Patents by Inventor Gregory Olegovic Andreev

Gregory Olegovic Andreev 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: 11874474
    Abstract: A system includes a diffractive optical element including at least one substrate and a grating structure. The grating structure is configured to diffract a first light having an incidence angle within a predetermined range, and the at least one substrate is configured to reflect a second light. The system also includes a polarization selective mechanism configured to generate images based on the first light and the second light, respectively.
    Type: Grant
    Filed: September 11, 2020
    Date of Patent: January 16, 2024
    Assignee: META PLATFORMS TECHNOLOGIES, LLC
    Inventors: Yun-Han Lee, Mengfei Wang, Junren Wang, Lu Lu, Robin Sharma, Gregory Olegovic Andreev, Garam Young, Andrew John Ouderkirk, Babak Amirsolaimani, Fenglin Peng, Barry David Silverstein
  • Publication number: 20230152578
    Abstract: A method includes projecting, with a holographic optical element, a first view of an eye toward an imaging device, and projecting, with the holographic optical element, a second view of the eye, distinct from the first view of the eye, toward the imaging device so that the first view and the second view of the eye are concurrently received by the imaging device. An eye tracking device for performing the method, a holographic optical element used for the method, and a method of making the holographic optical element are also disclosed.
    Type: Application
    Filed: November 15, 2021
    Publication date: May 18, 2023
    Inventors: Changwon JANG, Olivier MERCIER, Gregory Olegovic ANDREEV, Gang LI, Liliana Ruiz DIAZ
  • Patent number: 11650426
    Abstract: Techniques disclosed herein relate generally to eye-tracking in near-eye display systems. One example of an eye illuminator for eye-tracking includes a substrate transparent to visible light, an array of light sources immersed in the substrate and configured to emit infrared light, and a holographic optical element conformally coupled to a surface of the substrate and encapsulated by an encapsulation layer. The holographic optical element is configured to transmit the visible light and diffract the infrared light emitted by the array of light sources to the eye of a user for eye-tracking.
    Type: Grant
    Filed: April 21, 2020
    Date of Patent: May 16, 2023
    Assignee: META PLATFORMS TECHNOLOGIES, LLC
    Inventors: Qi Zhang, Gang Li, Robin Sharma, Gregory Olegovic Andreev, Andrew John Ouderkirk, Karol Constantine Hatzilias, Ying Geng
  • Patent number: 11650403
    Abstract: An example device may include a light source, an optical element, and, optionally, an encapsulant layer. A light beam generated by the light source may be received by the optical element and redirected towards an illumination target, such as an eye of a user. The optical element may include a material, for example, with a refractive index of at least approximately 2 at a wavelength of the light beam. The light source may be a semiconductor light source, such as a light-emitting diode or a laser. The optical element may be supported by an emissive surface of the light source. Refraction at an exit surface of the optical element, and/or within a metamaterial layer, may advantageously modify the beam properties, for example, in relation to illuminating a target. In some examples, the light source and optical element may be integrated into a monolithic light source module.
    Type: Grant
    Filed: January 23, 2020
    Date of Patent: May 16, 2023
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Robin Sharma, Andrew John Ouderkirk, Christopher Yuan Ting Liao, Qi Zhang, Tanya Malhotra, Karol Constantine Hatzilias, Maik Scheller, Sheng Ye, Gregory Olegovic Andreev, Guohua Wei
  • Publication number: 20230135756
    Abstract: A plurality of light sources such as vertical-cavity surface-emitting lasers (VCSELs) are configured to emit light through emission apertures. The light may be near-infrared light. Optics are formed over the emission apertures of the plurality of light sources. The optics may provide different tilt angles or divergence angles to the non-visible light emitted by the light sources in the plurality of light sources.
    Type: Application
    Filed: December 20, 2022
    Publication date: May 4, 2023
    Inventors: Karol Constantine Hatzilias, Christopher Yuan-Ting Liao, Robin Sharma, Gregory Olegovic Andreev, Paul Armen Tchertchian, Andrew John Ouderkirk
  • Patent number: 11615647
    Abstract: Systems and method for eye tracking are provided. In some embodiments, the eye tracking system includes a light source configured to generate light and project the light toward an object in a field of view, a detector configured to receive reflected portions of the light from the field of view in order to image the object, and a combiner including a volume grating configured to direct light reflected from different points in a field of view to the light detector. The volume grating includes a plurality of portions along a first area and each of the portions comprising a unique k-vector that is dependent on a respective portion of the field of view.
    Type: Grant
    Filed: November 26, 2019
    Date of Patent: March 28, 2023
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Gregory Olegovic Andreev, Gang Li, Changwon Jang
  • Patent number: 11609424
    Abstract: Techniques disclosed herein relate to a near-eye display system. One example of an eye-tracking system includes a substrate transparent to visible light and infrared light and a reflective holographic grating conformally coupled to a surface of the substrate. The reflective holographic grating is configured to transmit the visible light and reflectively diffract infrared light in a first wavelength range for eye tracking. The refractive index modulation of the reflective holographic grating is apodized in a direction along a thickness of the reflective holographic grating to reduce optical artifacts in the visible light.
    Type: Grant
    Filed: July 8, 2019
    Date of Patent: March 21, 2023
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Gregory Olegovic Andreev, Gang Li, Erik Shipton, Yingfei Jiang, Wanli Chi, Andrew John Ouderkirk
  • Patent number: 11575246
    Abstract: A plurality of light sources such as vertical-cavity surface-emitting lasers (VCSELs) are configured to emit non-visible light through emission apertures. Optics are formed over the emission apertures of the plurality of light sources. The optics may provide different tilt angles or divergence angles to the non-visible light emitted by the light sources in the plurality of light sources.
    Type: Grant
    Filed: November 6, 2019
    Date of Patent: February 7, 2023
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Karol Constantine Hatzilias, Christopher Yuan-Ting Liao, Robin Sharma, Gregory Olegovic Andreev, Paul Armen Tchertchian, Andrew John Ouderkirk
  • Publication number: 20220365343
    Abstract: The disclosure includes near-eye optical elements configured to suppress stray infrared light. Infrared light sources illuminate an eyebox area. A combiner layer may receive reflected infrared light and direct the reflected infrared light to a camera.
    Type: Application
    Filed: July 27, 2022
    Publication date: November 17, 2022
    Inventors: QI ZHANG, ROBIN SHARMA, ANDREW JOHN OUDERKIRK, KAROL CONSTANTINE HATZILIAS, CHRISTOPHER YUAN-TING LIAO, GREGORY OLEGOVIC ANDREEV
  • Patent number: 11428930
    Abstract: The disclosure includes optical systems and near-eye optical elements configured to suppress stray infrared light. Infrared illuminators illuminator an eyebox area with narrow-band infrared illumination light for eye-tracking. A combiner layer receives reflected infrared light reflected of an eye of the user and directs the reflected infrared light to a camera configured to capture eye-tracking images of an eye of a user. An anti-reflection (AR) coating may be disposed on a base curvature to reduce Fresnel reflections that generate stray light. A ghost suppression component may be paired with the infrared illuminators to reduce stray light becoming incident on the camera.
    Type: Grant
    Filed: August 7, 2019
    Date of Patent: August 30, 2022
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Qi Zhang, Robin Sharma, Andrew John Ouderkirk, Karol Constantine Hatzilias, Christopher Yuan-Ting Liao, Gregory Olegovic Andreev
  • Patent number: 11415808
    Abstract: An example device may include a light source, an optical element, and an encapsulant layer. A light beam generated by the light source may be received by the optical element, and redirected into the encapsulant layer. The optical element may include a high-index material, for example, with a refractive index of at least approximately 1.5 at the wavelength of the light beam. The light source may be a semiconductor light source, such as a light emitting diode or a laser. The optical element may be embedded in the encapsulant layer, and the optical element may have a curved exit surface. Refraction at the exit surface of the optical element may redirect the light beam towards a target.
    Type: Grant
    Filed: December 19, 2019
    Date of Patent: August 16, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Robin Sharma, Andrew John Ouderkirk, Christopher Yuan Ting Liao, Qi Zhang, Tanya Malhotra, Karol Constantine Hatzillias, Maik Scheller, Sheng Ye, Gregory Olegovic Andreev
  • Patent number: 11234095
    Abstract: An audio system (e.g., of an artificial reality headset) determines a position of the headset relative to a position of a head of a user wearing the headset. The determination is based in part on an image of a portion of the head from a tracking camera (e.g., eye tracking and/or face tracking) on the headset. The audio system adjusts an acoustic parameter based in part on the determined position of the headset. The audio system performs an action that uses the adjusted acoustic parameter.
    Type: Grant
    Filed: May 21, 2020
    Date of Patent: January 25, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Sang-Ik Cho, Pablo Francisco Faundez Hoffmann, Karol Constantine Hatzilias, Gregory Olegovic Andreev
  • Patent number: 11233189
    Abstract: A form birefringent optical element includes a structured layer and a dielectric environment disposed over the structured layer. At least one of the structured layer and the dielectric environment includes a nanovoided polymer, the nanovoided polymer having a first refractive index in an unactuated state and a second refractive index different than the first refractive index in an actuated state. Actuation of the nanovoided polymer can be used to reversibly control the form birefringence of the optical element. Various other apparatuses, systems, materials, and methods are also disclosed.
    Type: Grant
    Filed: January 30, 2019
    Date of Patent: January 25, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Kenneth Diest, Andrew John Ouderkirk, Gregory Olegovic Andreev, Erik Shipton, Tanya Malhotra, Barry David Silverstein, Christopher Yuan Ting Liao
  • Patent number: 11107972
    Abstract: An optical element includes a nanovoided polymer layer having a first refractive index in an unactuated state and a second refractive index different than the first refractive index in an actuated state. Compression or expansion of the nanovoided polymer layer, for instance, can be used to reversibly control the size and shape of the nanovoids within the polymer layer and hence tune its refractive index over a range of values, e.g., during operation of the optical element. Various other apparatuses, systems, materials, and methods are also disclosed.
    Type: Grant
    Filed: January 30, 2019
    Date of Patent: August 31, 2021
    Assignee: Facebook Technologies, LLC
    Inventors: Kenneth Diest, Andrew John Ouderkirk, Robin Sharma, Tanya Malhotra, Barry David Silverstein, Christopher Yuan Ting Liao, Erik Shipton, Gregory Olegovic Andreev
  • Patent number: 11073697
    Abstract: Embodiments of the disclosure are generally directed to systems and methods for switchable electroactive devices for head-mounted displays (HMDs). In particular, a method may include (1) applying an electric field to an electroactive element of an electroactive device via electrodes of the electroactive device that are electrically coupled to the electroactive element to compress the electroactive element, which comprises a polymer material defining nanovoids, such that an average size of the nanovoids is decreased and a density of the nanovoids is increased in the electroactive element, wherein the electroactive device is positioned at a distance from a user's eye, and (2) emitting image light from an emissive device positioned such that at least a portion of the image light is incident on a surface of the electroactive device facing the user's eye.
    Type: Grant
    Filed: March 12, 2019
    Date of Patent: July 27, 2021
    Assignee: Facebook Technologies, LLC
    Inventors: Robin Sharma, Andrew John Ouderkirk, Tanya Malhotra, Kenneth Diest, Gregory Olegovic Andreev, Erik Shipton, Christopher Yuan Ting Liao, Barry David Silverstein
  • Patent number: 11067821
    Abstract: Techniques disclosed herein relate to a near-eye display system. One example of an optical device of a near-eye display includes a substrate and holographic grating conformally coupled to a surface of the substrate. The substrate is transparent to visible light and infrared light and is configured to be placed in front of an eye of a user of the near-eye display. A refractive index modulation of the holographic grating is apodized in a surface-normal direction of the substrate to reduce optical artifacts in the visible light.
    Type: Grant
    Filed: July 8, 2019
    Date of Patent: July 20, 2021
    Assignee: FACEBOOK TECHNOLOGIES, LLC
    Inventors: Gregory Olegovic Andreev, Gang Li, Erik Shipton, Yingfei Jiang, Wanli Chi, Andrew John Ouderkirk
  • Publication number: 20210083455
    Abstract: A vertical-cavity surface-emitting laser (VCSEL) includes a semiconductor substrate, a first reflector, a second reflector, a first electrical contact, a second electrical contact, and a through-hole via. The first reflector is disposed on a first side of the semiconductor substrate and the second reflector is disposed between the first reflector and an emission side of the VCSEL. The first and second electrical contacts are disposed on a second side of the semiconductor substrate, opposite the first side, for mounting the VCSEL to a transparent substrate. The through-hole via electrically connects the second electrical contact to the second reflector.
    Type: Application
    Filed: December 1, 2020
    Publication date: March 18, 2021
    Inventors: KAROL CONSTANTINE HATZILIAS, CHRISTOPHER YUAN TING LIAO, ROBIN SHARMA, GREGORY OLEGOVIC ANDREEV, PAUL ARMEN TCHERTCHIAN, ANDREW JOHN OUDERKIRK
  • Publication number: 20210041692
    Abstract: The disclosure includes optical systems and near-eye optical elements configured to suppress stray infrared light. Infrared illuminators illuminator an eyebox area with narrow-band infrared illumination light for eye-tracking. A combiner layer receives reflected infrared light reflected of an eye of the user and directs the reflected infrared light to a camera configured to capture eye-tracking images of an eye of a user. An anti-reflection (AR) coating may be disposed on a base curvature to reduce Fresnel reflections that generate stray light. A ghost suppression component may be paired with the infrared illuminators to reduce stray light becoming incident on the camera.
    Type: Application
    Filed: August 7, 2019
    Publication date: February 11, 2021
    Inventors: QI Zhang, ROBIN SHARMA, ANDREW JOHN OUDERKIRK, Karol Constantine Hatzilias, CHRISTOPHER YUAN-TING LIAO, Gregory Olegovic Andreev
  • Publication number: 20210011303
    Abstract: Techniques disclosed herein relate to a near-eye display system. One example of an optical device of a near-eye display includes a substrate and holographic grating conformally coupled to a surface of the substrate. The substrate is transparent to visible light and infrared light and is configured to be placed in front of an eye of a user of the near-eye display. A refractive index modulation of the holographic grating is apodized in a surface-normal direction of the substrate to reduce optical artifacts in the visible light.
    Type: Application
    Filed: July 8, 2019
    Publication date: January 14, 2021
    Inventors: Gregory Olegovic ANDREEV, Gang LI, Erik SHIPTON, Yingfei JIANG, Wanli CHI, Andrew John OUDERKIRK
  • Publication number: 20210011284
    Abstract: Techniques disclosed herein relate to a near-eye display system. One example of an eye-tracking system includes a substrate transparent to visible light and infrared light and a reflective holographic grating conformally coupled to a surface of the substrate. The reflective holographic grating is configured to transmit the visible light and reflectively diffract infrared light in a first wavelength range for eye tracking. The refractive index modulation of the reflective holographic grating is apodized in a direction along a thickness of the reflective holographic grating to reduce optical artifacts in the visible light.
    Type: Application
    Filed: July 8, 2019
    Publication date: January 14, 2021
    Inventors: Gregory Olegovic ANDREEV, Gang LI, Erik SHIPTON, Yingfei JIANG, Wanli CHI, Andrew John OUDERKIRK