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US Patent 10218504 Public key validation in supersingular isogeny-based cryptographic protocols

Patent 10218504 was granted and assigned to ISARA (company) on February, 2019 by the United States Patent and Trademark Office.

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Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Applicant
ISARA (company)
ISARA (company)
1
Current Assignee
ISARA (company)
ISARA (company)
1
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
102185041
Patent Inventor Names
Kassem Kalach1
Anton Mosunov1
Date of Patent
February 26, 2019
1
Patent Application Number
158872401
Date Filed
February 2, 2018
1
Patent Citations Received
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US Patent 12088706 Device securing communications using two post-quantum cryptography key encapsulation mechanisms
2
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US Patent 10812264 Traversing a zigzag path tree topology in a supersingular isogeny-based cryptosystem
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US Patent 10880278 Broadcasting in supersingular isogeny-based cryptosystems
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US Patent 11374975 TLS integration of post quantum cryptographic algorithms
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US Patent 12003629 Secure server digital signature generation for post-quantum cryptography key encapsulations
6
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7
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US Patent 10630476 Obtaining keys from broadcasters in supersingular isogeny-based cryptosystems
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US Patent 10805081 Processing batches of point evaluations in a supersingular isogeny-based cryptosystem
...
Patent Primary Examiner
‌
Yogesh Paliwal
1
Patent abstract

In a general aspect, a supersingular isogeny-based cryptography process is performed. In some aspects, a first generator point is computed based on a secret integer of a first entity and a pair of elliptic curve points defined by a supersingular isogeny-based cryptosystem. An image curve is computed based on the secret integer, and a shared secret value is computed based on the image curve. An encrypted generator point is computed from the first generator point and the shared secret value. A public key of the first entity is sent to a second entity to enable the second entity to compute the shared secret value. The encrypted generator point is sent to the second entity to enable the second entity to validate the public key of the first entity.

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