Patents by Inventor Jesse Lu

Jesse Lu 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: 11040343
    Abstract: This disclosure provides for devices and methods for conducting assays for combinatorial libraries. The devices comprise a multiplicity of wells and a removable cap.
    Type: Grant
    Filed: January 28, 2020
    Date of Patent: June 22, 2021
    Assignee: Plexium, Inc.
    Inventors: Kapil Mahakalkar, Kenneth Chung, Jesse Lu, Edgar Gutierrez, Yi Zhang
  • Publication number: 20210149109
    Abstract: A two-channel photonic demultiplexer includes an input region to receive a multi-channel optical signal, two output regions, each adapted to receive a corresponding one of two distinct wavelength channels demultiplexed from the multi-channel optical signal, and a dispersive region including a first material and a second material inhomogeneously interspersed to form a plurality of interfaces that collectively structure the dispersive region to optically separate each of the two distinct wavelength channels from the multi-channel optical signal and respectively guide the first distinct wavelength channel to a first output region and the second distinct wavelength channel to the second output region when the input region receives the multi-channel optical signal. At least one of the first material or the second material is structured within the dispersive region to be schematically reproducible by a feature shape with a pre-determined width.
    Type: Application
    Filed: November 15, 2019
    Publication date: May 20, 2021
    Inventors: Martin Schubert, Brian Adolf, Jesse Lu
  • Patent number: 11011884
    Abstract: Methods for designing a mode-selective optical device including one or more optical interfaces defining an optical cavity include: defining a loss function within a simulation space encompassing the optical device, the loss function corresponding to an electromagnetic field having an operative wavelength within the optical device resulting from an interaction between an input electromagnetic field at the operative wavelength and the one or more optical interfaces of the optical device; defining an initial structure for each of the one or more optical interfaces, each initial structure being defined using a plurality of voxels; determining values for at least one structural parameter and/or at least one functional parameter of the one or more optical interfaces by solving Maxwell's equations; and defining a final structure of the one or more optical interfaces based on the values for the one or more structural and/or functional parameters.
    Type: Grant
    Filed: August 29, 2019
    Date of Patent: May 18, 2021
    Assignee: X Development LLC
    Inventors: Martin Friedrich Schubert, Brian John Adolf, Jesse Lu
  • Publication number: 20210143930
    Abstract: A multi-channel photonic demultiplexer includes an input region to receive a multi-channel optical signal including four distinct wavelength channels, four output regions, each adapted to receive a corresponding one of the four distinct wavelength channels demultiplexed from the multi-channel optical signal, and a dispersive region optically disposed between the input region and the four output regions. The dispersive region includes a first material and a second material inhomogeneously interspersed to form a plurality of interfaces that each correspond to a change in refractive index of the dispersive region and collectively structure the dispersive region to optically separate each of the four distinct wavelength channels from the multi-channel optical signal and respectively guide each of the four distinct wavelength channels to the corresponding one of the four output regions.
    Type: Application
    Filed: October 29, 2020
    Publication date: May 13, 2021
    Inventors: Martin Schubert, Brian Adolf, Jesse Lu
  • Publication number: 20210010136
    Abstract: A deposition device is described. The deposition device has a substrate support and a laser imaging system disposed to image a portion of a substrate positioned on the substrate support. The laser imaging system comprises a laser source and an imaging unit, and is coupled to a deposition assembly disposed across the substrate support.
    Type: Application
    Filed: June 29, 2020
    Publication date: January 14, 2021
    Applicant: Kateeva, Inc.
    Inventors: Karl Mathia, Jesse Lu, Jerry Chang, Matt Audet, Stephen Baca, Vadim Mashevsky, David C. Darrow
  • Patent number: 10885262
    Abstract: In some embodiments, a design verification system is provided that is configured to perform actions for ensuring fabricability of a segmented design. The design verification system searches a proposed segmented design for a paintbrush pattern to determine a positive paintbrush loss, and searches for an inverse paintbrush pattern to determine a negative paintbrush loss. The design verification system combines the positive paintbrush loss and the negative paintbrush loss to obtain a total paintbrush loss that indicates whether or not the proposed segmented design is fabricable. If the total paintbrush loss indicates that the proposed segmented design is not fabricable, the design verification system updates the proposed segmented design based on a gradient of the total paintbrush loss.
    Type: Grant
    Filed: February 20, 2020
    Date of Patent: January 5, 2021
    Assignee: X Development LLC
    Inventors: Brian Adolf, Jesse Lu, Martin Schubert
  • Publication number: 20200387577
    Abstract: A technique for simulating and optimizing the fabrication and design of a physical device is described. The technique includes executing a fabrication simulation of the physical device with a fabrication model that receives a fabrication specification as input and outputs a structural design for the physical device in response to the fabrication simulation. An operational simulation of the physical device is executed with a design model that simulates a field response propagating through a simulated environment of the physical device. The structural design output from the fabrication model is forward cascaded to the design model and an output from backpropagation of a performance loss error through the design model is reverse cascaded to the fabrication model.
    Type: Application
    Filed: June 5, 2019
    Publication date: December 10, 2020
    Inventors: Brian Adolf, Martin Schubert, Jesse Lu
  • Patent number: 10862610
    Abstract: A multi-channel photonic demultiplexer includes an input region to receive a multi-channel optical signal including four distinct wavelength channels, four output regions, each adapted to receive a corresponding one of the four distinct wavelength channels demultiplexed from the multi-channel optical signal, and a dispersive region optically disposed between the input region and the four output regions. The dispersive region includes a first material and a second material inhomogeneously interspersed to form a plurality of interfaces that each correspond to a change in refractive index of the dispersive region and collectively structure the dispersive region to optically separate each of the four distinct wavelength channels from the multi-channel optical signal and respectively guide each of the four distinct wavelength channels to the corresponding one of the four output regions.
    Type: Grant
    Filed: November 11, 2019
    Date of Patent: December 8, 2020
    Assignee: X Development LLC
    Inventors: Martin Schubert, Brian Adolf, Jesse Lu
  • Patent number: 10840676
    Abstract: An optical device that includes: a base layer; a first region supported by the base layer, the first region including a first plurality of quantum-confined nanostructures and having a first density of quantum-confined nanostructures; a second region supported by the base layer, the first and second regions being non-overlapping regions, the second region having a second density of quantum-confined nanostructures lower than the first density; and an optical confinement structure supported by the base layer and configured to guide at least one transverse optical mode between a first end and a second end of the optical confinement structure. The first region substantially overlaps with the at least one transverse optical mode, and the first density varies across a cross-section of the optical device.
    Type: Grant
    Filed: May 10, 2018
    Date of Patent: November 17, 2020
    Assignee: X Development LLC
    Inventors: Martin Friedrich Schubert, Michael Jason Grundmann, Jesse Lu, Brian John Adolf
  • Publication number: 20200342325
    Abstract: A computer-implemented method for revising structural parameters of a physical device is provided. The method comprises configuring a simulated environment to be representative of the physical device based on an initial description that describes structural parameters of the physical device. The method further includes performing an operational simulation of the physical device based on training data representative of physical stimuli within a physical domain to simulate an interaction between the physical device and the physical stimuli. The method further includes computing a loss value based on a simulated output of the physical device and performing and adjoint simulation by backpropagating the loss value through the simulated environment. The method also includes generating a revised description of the physical device by updating the structural parameters to reduce the loss value.
    Type: Application
    Filed: April 24, 2019
    Publication date: October 29, 2020
    Inventors: Jesse Lu, Brian Adolf, Martin Schubert
  • Publication number: 20200226221
    Abstract: A method and system for optimizing structural parameters of an electromagnetic device is described that includes performing operations. The operations include performing a time-forward simulation of a field response in a simulated environment describing the electromagnetic device and extracting decomposition components from the field response to compute a loss value. The operations further include backpropagating the loss value backwards in time using the decomposition components to determine an influence of changes in the structural parameters of the electromagnetic device on the loss value. The operations further include generating a revised description of the electromagnetic device by updating the structural parameters to reduce the loss value.
    Type: Application
    Filed: January 10, 2019
    Publication date: July 16, 2020
    Inventors: Jesse Lu, Martin Schubert, Brian Adolf
  • Publication number: 20190348820
    Abstract: An optical device that includes: a base layer; a first region supported by the base layer, the first region including a first plurality of quantum-confined nanostructures and having a first density of quantum-confined nanostructures; a second region supported by the base layer, the first and second regions being non-overlapping regions, the second region having a second density of quantum-confined nanostructures lower than the first density; and an optical confinement structure supported by the base layer and configured to guide at least one transverse optical mode between a first end and a second end of the optical confinement structure. The first region substantially overlaps with the at least one transverse optical mode, and the first density varies across a cross-section of the optical device.
    Type: Application
    Filed: May 10, 2018
    Publication date: November 14, 2019
    Inventors: Martin Friedrich Schubert, Michael Jason Grundmann, Jesse Lu, Brian John Adolf
  • Patent number: 5873620
    Abstract: A light filtering plate is fastened with a sun visor of the motor vehicle for enhancing the shading effect of the sun visor. The light filtering plate is transparent and provided respectively at both longitudinal ends thereof with an arcuate edge. The light filtering plate is fastened with a fastening seat which is composed of a support rod and an adhesive tape enabling the fastening seat to be attached securely to the sun visor or an accessory of the motor vehicle.
    Type: Grant
    Filed: November 7, 1997
    Date of Patent: February 23, 1999
    Inventor: Jesse Lu