Patents by Inventor Harry Atwater

Harry Atwater 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: 20160056321
    Abstract: A space-based solar power station, a power generating satellite module and/or a method for collecting solar radiation and transmitting power generated using electrical current produced therefrom is provided. Each solar power station includes a plurality of satellite modules. The plurality of satellite modules each include a plurality of modular power generation tiles including a photovoltaic solar radiation collector, a power transmitter and associated control electronics. Numerous embodiments relate to efficient power generation tiles. In one embodiment, an efficient power generation tile includes: at least one photovoltaic material; and at least one concentrator that redirects incident solar radiation towards a photovoltaic material such that the photovoltaic material experiences a greater solar flux relative to the case where the photovoltaic material experiences unaltered solar radiation.
    Type: Application
    Filed: June 2, 2015
    Publication date: February 25, 2016
    Inventors: Harry A. Atwater, Sergio Pellegrino, Seyed Ali Hajimiri, Jeffrey P. Bosco, Dennis Callahan, Emily C. Warmann
  • Patent number: 9263612
    Abstract: This disclosure relates to structures for the conversion of light into energy. More specifically, the disclosure describes devices for conversion of light to electricity using ordered arrays of semiconductor wires coated in a wider band-gap material.
    Type: Grant
    Filed: March 23, 2011
    Date of Patent: February 16, 2016
    Assignee: California Institute of Technology
    Inventors: Adele Tamboli, Daniel B. Turner-Evans, Manav Malhotra, Harry A. Atwater
  • Publication number: 20150287842
    Abstract: A photovoltaic system that converts incident light into electrical energy that includes a light trapping optical module having a light randomizing dielectric slab with a first surface and a second surface, a first cell adjacent to the first surface of the slab that has a bandgap of lower energy than the energy of absorption onset of the dielectric slab, at least one filter element in optical contact with the second surface of the dielectric slab, and a sub-cell array with a plurality of photovoltaic sub-cells, wherein at least one of the sub-cells has a first surface that is in optical contact with the at least one filter element.
    Type: Application
    Filed: August 30, 2013
    Publication date: October 8, 2015
    Inventors: Emily D. Kosten, Christofer A. Flowers, John V. Lloyd, Carrie E. Hofmann, Harry A. Atwater, Emily C. Warmann, James C. Stevens, Rebekah K. Feist, Weijun Zhou, Michael E. Mills, Narayan Ramesh
  • Publication number: 20150279741
    Abstract: Embodiments of the invention generally relate to epitaxial lift off (ELO) thin films and devices and methods used to form such films and devices. In one embodiment, a method for forming an ELO thin film is provided which includes depositing an epitaxial material over a sacrificial layer on a substrate, adhering a flattened, pre-curved support handle onto the epitaxial material, and removing the sacrificial layer during an etching process. The etching process includes bending the pre-curved support handle to have substantial curvature while peeling the epitaxial material from the substrate and forming an etch crevice therebetween. Compression is maintained within the epitaxial material during the etching process. The flattened, pre-curved support handle may be formed by flattening a pre-curved support material.
    Type: Application
    Filed: May 27, 2015
    Publication date: October 1, 2015
    Inventors: Melissa ARCHER, Harry ATWATER, Thomas GMITTER, Gang HE, Andreas HEGEDUS, Gregg HIGASHI, Stewart SONNENFELDT
  • Publication number: 20150267308
    Abstract: Embodiments of the present invention are directed to photoelectrodes having a wire array core and a conformal coating on the core. The wire array core and the conformal coating can be independently selected from inorganic semiconductor materials. The photoelectrodes can be used as either or both the anode and cathode in a device for fuel generation. Such a device, for example, could include a photoanode and a photocathode separated from each other by an electrically and ionically permeable, and proton-conductive membrane.
    Type: Application
    Filed: May 2, 2011
    Publication date: September 24, 2015
    Inventors: Adele Tamboli, Daniel B. Turner-Evans, Manav Malhotra, Harry A. Atwater, Nathan S. Lewis, Chris Chen
  • Publication number: 20150255637
    Abstract: The present invention provides strategies for improving the quality of the insulating layer in MIS and SIS devices in which the insulator layer interfaces with at least one pnictide-containing film The principles of the present invention are based at least in part on the discovery that very thin (20 nm or less) insulating films comprising a chalcogenide such as i-ZnS are surprisingly superior tunnel barriers in MIS and SIS devices incorporating pnictide semiconductors. In one aspect, the present invention relates to a photovoltaic device, comprising: a semiconductor region comprising at least one pnictide semiconductor; an insulating region electrically coupled to the semiconductor region, wherein the insulating region comprises at least one chalcogenide and has a thickness in the range from 0.5 nm to 20 nm; and a rectifying region electrically coupled to the semiconductor region in a manner such that the insulating region is electrically interposed between the collector region and the semiconductor region.
    Type: Application
    Filed: October 7, 2013
    Publication date: September 10, 2015
    Inventors: Jeffrey P. Bosco, Rebekah K. Feist, Harry A. Atwater, Marty W. Degroot, James C. Stevens, Gregory M. Kimball
  • Publication number: 20150243815
    Abstract: Methods and apparatus for converting electromagnetic radiation, such as solar energy, into electric energy with increased efficiency when compared to conventional solar cells are provided. A photovoltaic (PV) device generally includes a window layer; an absorber layer disposed below the window layer such that electrons are generated when photons travel through the window layer and are absorbed by the absorber layer; and a plurality of contacts for external connection coupled to the absorber layer, such that all of the contacts for external connection are disposed below the absorber layer and do not block any of the photons from reaching the absorber layer through the window layer. Locating all the contacts on the back side of the PV device avoids solar shadows caused by front side contacts, typically found in conventional solar cells. Therefore, PV devices described herein with back side contacts may allow for increased efficiency when compared to conventional solar cells.
    Type: Application
    Filed: May 7, 2015
    Publication date: August 27, 2015
    Inventors: Gang HE, Isik C. KIZILYALLI, Melissa J. ARCHER, Harry A. ATWATER, Thomas J. GMITTER, Andreas G. HEGEDUS, Gregg S. HIGASHI
  • Publication number: 20150221800
    Abstract: A light splitting optical module that converts incident light into electrical energy, the module including a solid optical element comprising an input end for receiving light, a first side, and a second side spaced from the first side, a first solar cell adjacent to the first side of the solid optical element, and a second solar cell adjacent to the second side of the solid optical element. The first solar cell is positioned to absorb a first subset of incident light and reflect a first remainder of the incident light to the second solar cell through the solid optical element.
    Type: Application
    Filed: August 30, 2013
    Publication date: August 6, 2015
    Inventors: Carissa N. Eisler, Emily D. Kosten, Harry A. Atwater, Emily C. Warmann, Carrie E. Hofmann, Rebekah K. Feist, James C. Stevens, Weijun Zhou, Michael E. Mills, Narayan Ramesh
  • Publication number: 20150207009
    Abstract: The present invention provides photovoltaic devices that comprise multiple bandgap cell arrays in combination with spectrum splitting optics. The spectrum splitting optics include one or more optical spectrum splitting modules that include two or more optical splitting, diffractive elements that are optically in series to successively and diffractively split incident light into segments or slices that are independently directed onto different photovoltaic cell(s) of the array having appropriate bandgap characteristics.
    Type: Application
    Filed: August 30, 2013
    Publication date: July 23, 2015
    Inventors: Matthew D. Escarra, Sunita Darbe, Harry A. Atwater, Rebekah K. Feist, Carrie E. Hofmann, Emily D. Kosten, Michael E. Mills, Narayan Ramesh, James C. Stevens
  • Publication number: 20150203977
    Abstract: A CO2 reduction electrode includes an active layer on an electrode base. The active layer includes a polymer that includes one or more reaction components selected from a group consisting of a CO2 reduction catalyst and an activator that bonds CO2 so as to form a CO2 reduction intermediate.
    Type: Application
    Filed: January 22, 2015
    Publication date: July 23, 2015
    Inventors: Oana R. Luca, Raymond Weitekamp, Robert H. Grubbs, Harry A. Atwater, Slobodan Mitrovic
  • Patent number: 9070764
    Abstract: Embodiments of the invention generally relate to epitaxial lift off (ELO) thin films and devices and methods used to form such films and devices. In one embodiment, a method for forming an ELO thin film is provided which includes depositing an epitaxial material over a sacrificial layer on a substrate, adhering a flattened, pre-curved support handle onto the epitaxial material, and removing the sacrificial layer during an etching process. The etching process includes bending the pre-curved support handle to have substantial curvature while peeling the epitaxial material from the substrate and forming an etch crevice therebetween. Compression is maintained within the epitaxial material during the etching process. The flattened, pre-curved support handle may be formed by flattening a pre-curved support material.
    Type: Grant
    Filed: May 29, 2009
    Date of Patent: June 30, 2015
    Assignee: Alta Devices, Inc.
    Inventors: Melissa Archer, Harry Atwater, Thomas Gmitter, Gang He, Andreas Hegedus, Gregg Higashi, Stewart Sonnenfeldt
  • Patent number: 9034685
    Abstract: The present invention provides methods for making pnictide compositions, particularly photoactive and/or semiconductive pnictides. In many embodiments, these compositions are in the form of thin films grown on a wide range of suitable substrates to be incorporated into a wide range of microelectronic devices, including photovoltaic devices, photodetectors, light emitting diodes, betavoltaic devices, thermoelectric devices, transistors, other optoelectronic devices, and the like. As an overview, the present invention prepares these compositions from suitable source compounds in which a vapor flux is derived from a source compound in a first processing zone, the vapor flux is treated in a second processing zone distinct from the first processing zone, and then the treated vapor flux, optionally in combination with one or more other ingredients, is used to grow pnictide films on a suitable substrate.
    Type: Grant
    Filed: February 10, 2012
    Date of Patent: May 19, 2015
    Assignees: Dow Global Technologies LLC, California Institute of Technology
    Inventors: Gregory M. Kimball, Jeffrey P. Bosco, Harry A. Atwater, Nathan S. Lewis, Marty W. Degroot, James C. Stevens
  • Patent number: 9029687
    Abstract: Methods and apparatus for converting electromagnetic radiation, such as solar energy, into electric energy with increased efficiency when compared to conventional solar cells are provided. A photovoltaic (PV) device generally includes a window layer; an absorber layer disposed below the window layer such that electrons are generated when photons travel through the window layer and are absorbed by the absorber layer; and a plurality of contacts for external connection coupled to the absorber layer, such that all of the contacts for external connection are disposed below the absorber layer and do not block any of the photons from reaching the absorber layer through the window layer. Locating all the contacts on the back side of the PV device avoids solar shadows caused by front side contacts, typically found in conventional solar cells. Therefore, PV devices described herein with back side contacts may allow for increased efficiency when compared to conventional solar cells.
    Type: Grant
    Filed: October 23, 2009
    Date of Patent: May 12, 2015
    Assignee: Alta Devices, Inc.
    Inventors: Isik C. Kizilyalli, Melissa Archer, Harry Atwater, Thomas J. Gmitter, Gang He, Andreas Hegedus, Gregg Higashi
  • Patent number: 9029680
    Abstract: Methods and apparatus are provided for converting electromagnetic radiation, such as solar energy, into electric energy with increased efficiency when compared to conventional solar cells. A photovoltaic (PV) unit may have all electrical contacts positioned on the back side of the PV device to avoid shadowing and increase absorption of the photons impinging on the front side of the PV unit. Several PV units may be combined into PV banks, and an array of PV banks may be connected to form a PV module with thin strips of metal or conductive polymer formed at low temperature. Such innovations may allow for greater efficiency and flexibility in PV devices when compared to conventional solar cells.
    Type: Grant
    Filed: October 23, 2009
    Date of Patent: May 12, 2015
    Assignee: Alta Devices, Inc.
    Inventors: Isik C. Kizilyalli, Melissa Archer, Harry Atwater, Thomas J. Gmitter, Gang He, Andreas Hegedus, Gregg Higashi
  • Publication number: 20150118188
    Abstract: The present invention relates to methods of metathesizing olefins using catalysts previously considered to be practically inactive. The present invention further relates to novel photosensitive compositions, their use as photoresists, and methods related to patterning polymer layers on substrates. Further, modifications to the compositions and method provide for an unprecedented functionalization of the compositions, useful for example in the preparation of sensors, drug delivery systems, and tissue scaffolds. The novel compositions and associated methods also provide for the opportunity to prepare 3-dimensional objects which provide new access to critically dimensioned devices, including for example photonic devices.
    Type: Application
    Filed: October 3, 2014
    Publication date: April 30, 2015
    Inventors: RAYMOND WEITEKAMP, ROBERT H. GRUBBS, HARRY A. ATWATER, JAMES FAKONAS
  • Patent number: 8937244
    Abstract: Methods and apparatus are provided for converting electromagnetic radiation, such as solar energy, into electric energy with increased efficiency when compared to conventional solar cells. A photovoltaic (PV) unit, according to embodiments of the invention, may have a very thin absorber layer produced by epitaxial lift-off (ELO), all electrical contacts positioned on the back side of the PV device to avoid shadowing, and/or front side and back side light trapping employing a diffuser and a reflector to increase absorption of the photons impinging on the front side of the PV unit. Several PV units may be combined into PV banks, and an array of PV banks may be connected to form a PV module with thin strips of metal or conductive polymer applied at low temperature. Such innovations may allow for greater efficiency and flexibility in PV devices when compared to conventional solar cells.
    Type: Grant
    Filed: October 23, 2009
    Date of Patent: January 20, 2015
    Assignee: Alta Devices, Inc.
    Inventors: Isik C. Kizilyalli, Melissa Archer, Harry Atwater, Thomas J. Gmitter, Gang He, Andreas Hegedus, Gregg Higashi
  • Publication number: 20150011042
    Abstract: The present invention uses a treatment that involves an etching treatment that forms a pnictogen-rich region on the surface of a pnictide semiconductor film The region is very thin in many modes of practice, often being on the order of only 2 to 3 nm thick in many embodiments. Previous investigators have left the region in place without appreciating the fact of its presence and/or that its presence, if known, can compromise electronic performance of resultant devices. The present invention appreciates that the formation and removal of the region advantageously renders the pnictide film surface highly smooth with reduced electronic defects. The surface is well-prepared for further device fabrication.
    Type: Application
    Filed: January 30, 2013
    Publication date: January 8, 2015
    Inventors: Gregory M. Kimball, Harry A. Atwater, Nathan S. Lewis, Jeffrey P. Bosco, Rebekah K. Feist
  • Patent number: 8921789
    Abstract: A tunable metamaterial structure, comprises a flexible substrate capable of being strained, a metamaterial pattern on a surface of the flexible substrate, and a metal layer on the metamaterial pattern. The flexible substrate of the tunable metamaterial structure is a strained and relaxed substrate which has been strained to a degree sufficient to register a resonant response upon relaxation that is shifted relative to the resonant response of the flexible substrate prior to being strained. The application of strain to the flexible substrate of the metamaterial structure enables tuning of the resonant frequency.
    Type: Grant
    Filed: September 21, 2011
    Date of Patent: December 30, 2014
    Assignee: California Institute of Technology
    Inventors: Imogen Pryce, Koray Aydin, Ryan Briggs, Harry A. Atwater, Yousif Kelaita
  • Patent number: 8912432
    Abstract: Methods and apparatus are provided for converting electromagnetic radiation, such as solar energy, into electric energy with increased efficiency when compared to conventional solar cells. In one embodiment of a photovoltaic (PV) device, the PV device generally includes an n-doped layer and a p+-doped layer adjacent to the n-doped layer to form a p-n layer such that electric energy is created when electromagnetic radiation is absorbed by the p-n layer. The n-doped layer and the p+-doped layer may compose an absorber layer having a thickness less than 500 nm. Such a thin absorber layer may allow for greater efficiency and flexibility in PV devices when compared to conventional solar cells.
    Type: Grant
    Filed: November 5, 2010
    Date of Patent: December 16, 2014
    Assignee: Alta Devices, Inc.
    Inventors: Isik C. Kizilyalli, Melissa J. Archer, Harry Atwater, Thomas J. Gmitter, Gang He, Andreas G. Hegedus, Gregg Higashi
  • Publication number: 20140360566
    Abstract: The present invention provides methods of making photovoltaic devices incorporating improved pnictide semiconductor films. In particular, the principles of the present invention are used to improve the surface quality of pnictide films. Photovoltaic devices incorporating these films demonstrate improved electronic performance. As an overview, the present invention involves a methodology that metalizes the pnictide film, anneals the metalized film under conditions that tend to form an alloy between the pnictide film and the alloy, and then removes the excess metal and at least a portion of the alloy. In one mode of practice, the pnictide semiconductor is Zinc phosphide and the metal is Magnesium.
    Type: Application
    Filed: January 30, 2013
    Publication date: December 11, 2014
    Inventors: Gregory M. Kimball, Marty W. DeGroot, Harry A. Atwater, Nathan S. Lewis, Rebekah K. Feist, Jeffrey P. Bosco