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NIST SP 800-208: Recommendation for Stateful Hash-Based Signature Schemes

David Cooper (NIST); Daniel Apon (NIST); Quynh Dang (NIST); Michael Davidson (NIST); Morris Dworkin (NIST); Carl Miller (NIST) · National Institute of Standards and Technology (NIST)
NIST · Standards · License: Public Domain
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accesscontrolcomputersecurityidentityincidentresponsenistriskmanagement
cybersecurity, computer security, cryptography, access control, incident response, privacy, identity, risk management, NIST

You are viewing this page in an unauthorized frame window. This is a potential security issue, you are being redirected to https://csrc.nist.gov . An official website of the United States government Here’s how you know Here’s how you know Official websites use .gov A .gov website belongs to an official government organization in the United States. Secure .gov websites use HTTPS A lock ( Lock Locked padlock icon ) or https:// means you’ve safely connected to the .gov website. Share sensitive information only on official, secure websites. Search Search CSRC MENU Search Search Projects Publications Expand or Collapse Drafts for Public Comment All Public Drafts Final Pubs FIPS (standards) Special Publications (SP s ) IR (interagency/internal reports) CSWP (cybersecurity white papers) ITL Bulletins Project Descriptions Journal Articles Conference Papers Books Topics Expand or Collapse Security & Privacy Applications Technologies Sectors Laws & Regulations Activities & Products News & Updates Events Glossary About CSRC Expand or Collapse Computer Security Division Cryptographic Technology Software Security Group Hardware Security Group Security Engineering and Risk Management Applied Cybersecurity Division Cybersecurity and Privacy Applications National Cybersecurity Center of Excellence (NCCoE) National Initiative for Cybersecurity Education (NICE) Contact Us Information Technology Laboratory Computer Security Resource Center Publications NIST SP 800-208 Recommendation for Stateful Hash-Based Signature Schemes Share to Facebook Share to X Share to LinkedIn Share ia Email Documentation Topics Date Published: October 2020 Author(s) David Cooper (NIST) , Daniel Apon (NIST) , Quynh Dang (NIST) , Michael Davidson (NIST) , Morris Dworkin (NIST) , Carl Miller (NIST) Abstract This recommendation specifies two algorithms that can be used to generate a digital signature, both of which are stateful hash-based signature schemes: the Leighton-Micali Signature (LMS) system and the eXtended Merkle Signature Scheme (XMSS), along with their multi-tree variants, the Hierarchical Signature System (HSS) and multi-tree XMSS (XMSS MT ). This recommendation specifies two algorithms that can be used to generate a digital signature, both of which are stateful hash-based signature schemes: the Leighton-Micali Signature (LMS) system and the eXtended Merkle Signature Scheme (XMSS), along with their multi-tree variants, the Hierarchical... See full abstract This recommendation specifies two algorithms that can be used to generate a digital signature, both of which are stateful hash-based signature schemes: the Leighton-Micali Signature (LMS) system and the eXtended Merkle Signature Scheme (XMSS), along with their multi-tree variants, the Hierarchical Signature System (HSS) and multi-tree XMSS (XMSS MT ). Hide full abstract Keywords cryptography ; digital signatures ; hash-based signatures ; public-key cryptography Control Families None selected Documentation Publication: https://doi.org/10.6028/NIST.SP.800-208 Download URL Supplemental Material: Comments received (pdf) Document History: 12/11/19: SP 800-208 (Draft) 10/29/20: SP 800-208 (Final) Topics Security and Privacy digital signatures , key management , secure hashing HEADQUARTERS 100 Bureau Drive Gaithersburg, MD 20899 X (link is external) facebook (link is external) linkedin (link is external) instagram (link is external) youtube (link is external) rss govdelivery (link is external) Want updates about CSRC and our publications? Subscribe Contact Us | Our Other Offices Send inquiries to [email protected] Site Privacy Accessibility Privacy Program Copyrights Vulnerability Disclosure No Fear Act Policy FOIA Environmental Policy Scientific Integrity Information Quality Standards Commerce.gov Science.gov USA.gov Vote.gov

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