Invention Grant
- Patent Title: Residue arithmetic nanophotonic system
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Application No.: US16284762Application Date: 2019-02-25
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Publication No.: US11922136B2Publication Date: 2024-03-05
- Inventor: Jiaxin Peng , Tarek El-Ghazawi , Volker J. Sorger , Shuai Sun
- Applicant: The George Washington University
- Applicant Address: US DC Washington
- Assignee: The George Washington University
- Current Assignee: The George Washington University
- Current Assignee Address: US DC Washington
- Agency: Blank Rome LLP
- Main IPC: G06F7/72
- IPC: G06F7/72 ; G02B6/122 ; G02B6/35 ; G02F1/313 ; G06E3/00 ; G06E1/06 ; G02F1/31

Abstract:
An integrated photonics computing system implements a residue number system (RNS) to achieve orders of magnitude improvements in computational speed per watt over the current state-of-the-art. RNS and nanophotonics have a natural affinity where most operations can be achieved as spatial routing using electrically controlled directional coupler switches, thereby giving rise to an innovative processing-in-network (PIN) paradigm. The system provides a path for attojoule-per-bit efficient and fast electro-optic switching devices, and uses them to develop optical compute engines based on residue arithmetic leading to multi-purpose nanophotonic computing.
Public/Granted literature
- US20190265952A1 RESIDUE ARITHMETIC NANOPHOTONIC SYSTEM Public/Granted day:2019-08-29
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