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US Patent 12089509 Quantum hardware characterized by programmable bose-hubbard Hamiltonians

Patent 12089509 was granted and assigned to Google on September, 2024 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Google
Google
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Current Assignee
Google
Google
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
120895090
Patent Inventor Names
Hartmut Neven0
Masoud Mohseni0
Date of Patent
September 10, 2024
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Patent Application Number
167524040
Date Filed
January 24, 2020
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Patent Citations
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US Patent 7451292 Methods for transmitting data across quantum interfaces and quantum gates using same
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US Patent 7613765 Bus architecture for quantum processing
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US Patent 7893708 Quantum gate operations with a common coupled resonator
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US Patent 7932514 Microwave readout for flux-biased qubits
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US Patent 8111083 Quantum processor
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US Patent 8195596 Systems, devices, and methods for interconnected processor topology
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US Patent 8242799 System and method for phase error reduction in quantum systems
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US Patent 8560282 Quantum processor-based systems, methods and apparatus for solving problems as logic circuits
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...
Patent Primary Examiner
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Jay C Kim
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CPC Code
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H01L 39/025
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G06N 10/00
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G06N 7/005
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Patent abstract

An apparatus includes a first group of superconducting cavities and a second group of superconducting cavities, each of which is configured to receive multiple photons. The apparatus includes couplers, where each coupler couples one superconducting cavity from the first group with one cavity from the second group such that the photons in the coupled superconducting cavities interact. A first superconducting cavity of the first group is connected to a second superconducting cavity of the second group, such that photons of the first and second superconducting cavities are shared by each of the first and second superconducting cavities. The first superconducting cavity is coupled to at least one other superconducting cavity of the first group to which the second superconducting cavities are coupled, and the second superconducting cavity is coupled to at least one other superconducting cavity of the second group to which the first superconducting cavities are coupled.

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