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US Patent 11907832 Optoelectronic computing systems

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Contents

Is a
Patent
Patent
0

Patent attributes

Patent Applicant
Lightelligence
Lightelligence
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119078320
Patent Inventor Names
Ronald Gagnon0
Yichen Shen0
Peng Xie0
Cheng-Kuan Lu0
Maurice Steinman0
Li Jing0
Arash Hosseinzadeh0
Jianhua Wu0
...
Date of Patent
February 20, 2024
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Patent Application Number
168526420
Date Filed
April 20, 2020
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Patent Citations
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US Patent 7536431 Vector-matrix multiplication
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US Patent 7660533 Quantum Fourier transform based information transmission system and method
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US Patent 7667995 Teleportation system for electronic many-qubit states using individual photons
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US Patent 7876248 Systems, methods and apparatus for local programming of quantum processor elements
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US Patent 7985965 Quantum computing device and method including qubit arrays of entangled states using negative refractive index lenses
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US Patent 8018244 Architecture for local programming of quantum processor elements using latching qubits
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US Patent 8023828 Quantum information conversion between matter and light representations
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US Patent 8027587 Integrated optic vector-matrix multiplier
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Patent Primary Examiner
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Tan V. Mai
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CPC Code
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G06N 3/063
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G06N 3/008
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G06N 3/0675
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G06N 3/08
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Patent abstract

A method includes: providing input information in an electronic format; converting the electronic input information into an optical input vector; optically transforming the optical input vector into an optical output vector based on an optical matrix multiplication; converting the optical output vector into an electronic format; and electronically applying a non-linear transformation to the electronically converted optical output vector to provide output information in an electronic format. For example, a set of input values are encoded on respective optical signals. For each of at least two subsets of optical signals, a copying module splits the subset into multiple copies of the optical signals. For each copy of a first subset of optical signals, a corresponding multiplication module multiplies the optical signals of the first subset by matrix element values using optical amplitude modulation. A summation module produces an electrical signal representing a sum of the results of the multiplication modules.

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