---
id: 901123
card_url: "https://mdrss.com/security/cryptography-privacy-and-compliance/901123"
permalink_url: "https://mdrss.com/m/901123"
thread_url: "https://mdrss.com/s/security"
markdown_url: "https://mdrss.com/security/cryptography-privacy-and-compliance/901123/901123.md"
title: "Awesome Post-Quantum"
annotation: "A curated list of resources about post-quantum cryptography. Use it to build a structured path from fundamentals to hands-on practice."
state: published
thread: security
domain: security
category: cryptography-privacy-and-compliance
type: guide
tags: ["security-privacy-compliance", "cryptography-privacy-compliance", "pqc", "post-quantum", "awesome", "resources", "standards", "cryptography", "security", "collider-club"]
ontology_terms: ["concept:cryptography-privacy-compliance", "org:collider-club"]
relation_terms: []
license: "MIT"
version: 1
snapshot_at: "2026-08-04T16:17:00.000Z"
source_url: "https://github.com/veorq/awesome-post-quantum"
source_kind: "collider-club-curated"
platform_scam_risk: 5
platform_evidence_score: 100
evidence_urls:
  - "https://github.com/veorq/awesome-post-quantum"
  - "https://raw.githubusercontent.com/veorq/awesome-post-quantum/53b06d4237d16082987b882b3325f38df0b7ad59/README.md"
  - "https://collider.club"
  - "https://opensource.org/licenses/MIT"
---
# Awesome Post-Quantum

> A curated list of resources about post-quantum cryptography. Use it to build a structured path from fundamentals to hands-on practice.

> Editorial note: curated source snapshot published by [Collider.club](https://collider.club) under the MIT License. Source attribution is preserved in the front matter.

## Source snapshot

# Awesome Post-Quantum [![Awesome](https://cdn.rawgit.com/sindresorhus/awesome/d7305f38d29fed78fa85652e3a63e154dd8e8829/media/badge.svg)](https://github.com/sindresorhus/awesome)

A curated list of resources about post-quantum cryptography.

To contribute, please file a PR. Please list items alphabetically.

If you notice errors or obsolete content, please file PR or an Issue.


## U.S. standards and guidelines 

Standardization projects: 
* [NIST Post-Quantum Cryptography](https://csrc.nist.gov/Projects/post-quantum-cryptography)
* [PQC Additional Digital Signature Schemes](https://csrc.nist.gov/projects/pqc-dig-sig) (in progress,
  round 3)


### NIST standard algorithms

KEMs (encryption, key agreement):

* [HQC](https://www.pqc-hqc.org/) - Selected in 2025, code-based
  - [HQC official software](https://pqc-hqc.org/implementation.html)
* [ML-KEM (Kyber)](https://pq-crystals.org/kyber) - Selected in 2022, lattice-based
    - [FIPS 203: Module-Lattice-Based Key-Encapsulation Mechanism Standard (ML-KEM)](https://csrc.nist.gov/pubs/fips/203/final)
    -  [Kyber official software](https://pq-crystals.org/kyber/software.shtml)

Signature schemes:

* [FN-DSA (Falcon)](https://falcon-sign.info/) - Selected in 2022, lattice-based
    - Presentation [FIPS 2026 Status Update](https://csrc.nist.gov/csrc/media/presentations/2025/fips-206-fn-dsa-(falcon)/images-media/fips_206-perlner_2.1.pdf)
    - Presentation [Falcon, Towards FN-DSA](https://csrc.nist.gov/csrc/media/Presentations/2024/falcon/images-media/prest-falcon-pqc2024.pdf)
    - [Falcon official software](https://falcon-sign.info/impl/falcon.h.html)
* [ML-DSA (Dilithium)](https://pq-crystals.org/dilithium/) - Selected in 2022, lattice-based
    - [FIPS 204: Module-Lattice-Based Digital Signature Standard (ML-DSA)](https://csrc.nist.gov/pubs/fips/204/final)
    - [Dilithium official software](https://pq-crystals.org/dilithium/software.shtml)
* [SLH-DSA (SPHINCS+)](https://sphincs.org/) - Selected in 2022, hash-based
    - [FIPS 205: Stateless Hash-Based Digital Signature Standard (SLH-DSA)](https://csrc.nist.gov/pubs/fips/205/final)
    -  [SPHINCS+ official software](https://sphincs.org/software.html)


### Migration guidelines

* [CISA Quantum-Readiness: Migration to Post-Quantum Cryptography](https://www.cisa.gov/sites/default/files/2023-08/Quantum%20Readiness_Final_CLEAR_508c%20%283%29.pdf)
* [CISA Strategy for Migrating to Automated Post-Quantum Cryptography Discovery and Inventory Tools](https://www.cisa.gov/sites/default/files/2024-09/Strategy-for-Migrating-to-Automated-PQC-Discovery-and-Inventory-Tools.pdf)
* [DHS PQC approach and roadmap](https://www.dhs.gov/quantum)
* [NIST and NCCoE's Migration to PQC](https://www.nccoe.nist.gov/sites/default/files/2022-07/pqc-migration-project-description-final.pdf)
* [NIST Migration to Post-Quantum Cryptography](https://www.nccoe.nist.gov/crypto-agility-considerations-migrating-post-quantum-cryptographic-algorithms)
* [NSA PQC FAQ](https://media.defense.gov/2021/Aug/04/2002821837/-1/-1/1/Quantum_FAQs_20210804.PDF)
* [Quantum Computing Cybersecurity Preparedness Act](https://www.congress.gov/bill/117th-congress/house-bill/7535/text)


## Other national initiatives

* [GSMA: Post Quantum Government Initiatives by Country and Region](https://www.gsma.com/newsroom/post-quantum-government-initiatives-by-country-and-region)
* [ISO/IEC JTC 1/SC 27 Working Group on PQC Standardization](https://www.iso.org/committee/45306.html)
* [G7 CYBER EXPERT GROUP STATEMENT ON Advancing a Coordinated Roadmap for the Transition to Post-Quantum Cryptography in the Financial Sector](https://www.gov.uk/government/publications/advancing-a-coordinated-roadmap-for-the-transition-to-post-quantum-cryptography-in-the-financial-sector)

Australia:

* [ASD: Planning for post-quantum cryptography ](https://www.cyber.gov.au/business-government/secure-design/quantum/planning-for-post-quantum-cryptography)


Canada:

* [Communications Security Establishment (CSE) Quantum Threat Assessments](https://www.cse-cst.gc.ca/)
* [Migrating the Government of Canada to Post-Quantum Cryptography: Security Policy Implementation Notice](https://www.canada.ca/en/government/system/digital-government/policies-standards/spin/migrating-government-canada-post-quantum-cryptography.html)
* [Roadmap for the migration to post-quantum cryptography for the Government of Canada (ITSM.40.001)](https://www.cyber.gc.ca/en/guidance/roadmap-migration-post-quantum-cryptography-government-canada-itsm40001)

China:

* [Next-Generation Commercial Cryptographic Algorithms Program (NGCC)](https://www.niccs.org.cn/en/)

Czech Republic:

* [Minimum Requirements for Cryptographic Algorithms](https://nukib.gov.cz/download/publications_en/Minimum%20Requirements%20for%20Cryptographic%20Algorithms.pdf)
* [Quantum Threat and Quantum Resistant Cryptography](https://nukib.gov.cz/download/publications_en/Annex%20to%20the%20document_Minimum%20Requirements%20for%20Cryptographic%20Algorithms.pdf)

EU: 

* [A Coordinated Implementation Roadmap for the Transition to Post-Quantum Cryptography](https://digital-strategy.ec.europa.eu/en/library/coordinated-implementation-roadmap-transition-post-quantum-cryptography)
* [ENISA Post-Quantum Cryptography Reports](https://www.enisa.europa.eu/topics/cryptography)
* [ETSI Quantum-Safe Cryptography Specification Group](https://www.etsi.org/committee/1430-qsc)

France:

* [ANSSI](https://cyber.gouv.fr/en/technological-and-cybersecurity-challenges/post-quantum-cryptography/)
  initiatives and publications
* [ANSSI views on the Post-Quantum Cryptography transition](https://cyber.gouv.fr/en/publications/follow-position-paper-post-quantum-cryptography)

G7:

* [G7 Cybersecurity Working Group Statement on preparing for a post-quantum cryptography migration](https://www.cyber.gc.ca/en/news-events/g7-cybersecurity-working-group-statement-preparing-post-quantum-cryptography-migration)

Germany:

* [BSI Cryptographic Mechanisms Recommendations (TR-02102-1)](https://www.bsi.bund.de/EN/Topics/CryptographicAlgorithms/cryptographic-algorithms_node.html)
* [BSI Post-Quantum Cryptography Recommendations](https://www.bsi.bund.de/EN/Topics/Companies-and-Organisations/Information-and-Recommendations/Quantum-safe-cryptography/quantum-safe-cryptography_node.html)

India:

* [Implementation of Quantum Safe Ecosystem in India](https://dst.gov.in/sites/default/files/Report_TaskForce_PQMigration_4Feb26%20%28v1%29.pdf)

Israel:

* [Post Quantum Cryptography-ל היערכות](https://www.gov.il/BlobFolder/reports/alert_1855/he/ALERT-CERT-IL-W-1855.pdf)

Japan:

* [Guidelines](https://www.cryptrec.go.jp/report/cryptrec-gl-2007-2024.pdf) (including PQC) by [CRYPTREC](https://www.cryptrec.go.jp/en/)

Malaysia:

* [Post-Quantum Cryptography Migration Framework](https://www.cybersecurity.my/portal-main/services/post-quantum-overview)

Netherlands:

* [AIVD's PQC Migration Handbook](https://english.aivd.nl/documents/2024/12/3/the-pqc-migration-handbook)

Singapore:

* [MAS Advisory on Addressing the Cybersecurity Risks Associated with Quantum](https://www.mas.gov.sg/-/media/mas-media-library/regulation/circulars/trpd/mas-quantum-advisory/mas-quantum-advisory.pdf)
* [CSA Quantum-Safe Hanbook and Quantum Readiness Index](https://www.csa.gov.sg/resources/publications/quantum-safe-handbook-and-quantum-readiness-index/)

South Korea:

* [KpqC Competitions and Algorithms](https://kpqc.or.kr/)
* Standardized algorithms:
  * [NTRU+](https://www.kpqc.or.kr/images/pdf/NTRU+.pdf) - KEM, lattice-based
  * [SMAUG-T](https://kpqc.cryptolab.co.kr/smaug-t) - KEM, lattice-based
  * [AIMer](https://www.kpqc.or.kr/images/pdf/AIMer.pdf) - Signature, MPC-in-the-head
  * [HAETAE](https://kpqc.cryptolab.co.kr/haetae) - Signature, lattice-based

Spain:

* [CCN Recommendations for a safe post-quantum transition](https://www.ccn.cni.es/index.php/es/docman/documentos-publicos/boletines-pytec/499-ccn-tec-009-recomendaciones-transicion-postcuantica-segura-english/file)

Switzerland:

* [FINMA Guidance 05/2026: Quantum Computing](https://www.finma.ch/en/~/media/finma/dokumente/dokumentencenter/myfinma/4dokumentation/finma-aufsichtsmitteilungen/20260709-finma-aufsichtsmitteilung-05-2026.pdf)

United Kingdom:

* [NCSC's Timelines for migration to post-quantum cryptography](https://www.ncsc.gov.uk/guidance/pqc-migration-timelines)
* [NCSC's Next steps in preparing for post-quantum cryptography](https://www.ncsc.gov.uk/whitepaper/next-steps-preparing-for-post-quantum-cryptography)


## IETF standards and proposals

RFCs:

* RFC 8391: [XMSS: eXtended Merkle Signature Scheme](https://datatracker.ietf.org/doc/html/rfc8391)
* RFC 8554: [Leighton-Micali Hash-Based Signatures](https://datatracker.ietf.org/doc/html/rfc8554)
* RFC 8784: [Mixing Preshared Keys in the Internet Key Exchange Protocol Version 2 (IKEv2) for Post-quantum Security](https://datatracker.ietf.org/doc/html/rfc8784)
* RFC 9370 [Multiple Key Exchanges in the Internet Key Exchange Protocol Version 2 (IKEv2)](https://datatracker.ietf.org/doc/html/rfc9370)
* RFC 9881: [Internet X.509 Public Key Infrastructure -- Algorithm Identifiers for the Module-Lattice-Based Digital Signature Algorithm (ML-DSA)](https://datatracker.ietf.org/doc/html/rfc9881)
* RFC 9935: [Internet X.509 Public Key Infrastructure - Algorithm Identifiers for the Module-Lattice-Based Key-Encapsulation Mechanism (ML-KEM) ](https://datatracker.ietf.org/doc/rfc9935/)
* RFC 9794: [Terminology for Post-Quantum Traditional Hybrid Schemes ](https://www.rfc-editor.org/rfc/rfc9794.html)
* RFC 9941: [Secure Shell (SSH) Key Exchange Method Using Hybrid Streamlined NTRU Prime sntrup761 and X25519 with SHA-512: sntrup761x25519-sha512](https://www.rfc-editor.org/rfc/rfc9941.html)

Internet-Drafts:

* I-D [Composite ML-DSA for use in X.509 Public Key Infrastructure](https://datatracker.ietf.org/doc/draft-ietf-lamps-pq-composite-sigs/)
* I-D [Downgrade Prevention for the Internet Key Exchange Protocol Version 2 (IKEv2) ](https://datatracker.ietf.org/doc/draft-ietf-ipsecme-ikev2-downgrade-prevention/)
* I-D [Framework to Integrate Post-quantum Key Exchanges into Internet Key Exchange Protocol Version 2 (IKEv2)](https://datatracker.ietf.org/doc/html/draft-tjhai-ipsecme-hybrid-qske-ikev2-04)
* I-D [Hybrid key exchange in TLS 1.3](https://datatracker.ietf.org/doc/html/draft-ietf-tls-hybrid-design)
* I-D [Hybrid Post-Quantum Key Encapsulation Methods (PQ KEM) for Transport Layer Security 1.2 (TLS)](https://datatracker.ietf.org/doc/html/draft-campagna-tls-bike-sike-hybrid)
* I-D [Merkle Tree Certificates](https://datatracker.ietf.org/doc/draft-ietf-plants-merkle-tree-certs/)
* I-D [ML-KEM Post-Quantum Key Agreement for TLS 1.3 ](https://datatracker.ietf.org/doc/draft-ietf-tls-mlkem/)
* I-D [Post-Quantum Cryptography for Engineers](https://datatracker.ietf.org/doc/draft-ietf-pquip-pqc-engineers/)
* I-D [Post-Quantum and Post-Quantum/Traditional Hybrid Algorithms for HPKE](https://datatracker.ietf.org/doc/draft-ietf-hpke-pq/)
* I-D [Post-quantum hybrid ECDHE-MLKEM Key Agreement for TLSv1.3](https://datatracker.ietf.org/doc/draft-ietf-tls-ecdhe-mlkem/)
* I-D [Post-quantum Key Exchange with ML-KEM in the Internet Key Exchange Protocol Version 2 (IKEv2) ](https://datatracker.ietf.org/doc/draft-ietf-ipsecme-ikev2-mlkem/)
* I-D [PQ/T Hybrid Key Exchange with ML-KEM in SSH](https://www.ietf.org/archive/id/draft-ietf-sshm-mlkem-hybrid-kex-10.html)
* I-D [Use of Composite ML-DSA in TLS 1.3](https://datatracker.ietf.org/doc/draft-reddy-tls-composite-mldsa/)
* I-D [Use of ML-DSA in TLS 1.3](https://datatracker.ietf.org/doc/draft-ietf-tls-mldsa/)
* I-D [Use of the FN-DSA Signature Algorithm in the Cryptographic Message Syntax (CMS)](https://www.ietf.org/archive/id/draft-turner-lamps-cms-fn-dsa-00.html)


## From tech organizations

Alibaba:

* [What is Post-Quantum Encryption - And How to Enable It on ESA](https://www.alibabacloud.com/blog/what-is-post-quantum-encryption---and-how-to-enable-it-on-esa_603220)

Apple:

* [iMessage with PQ3 protocol](https://security.apple.com/blog/imessage-pq3/)
* [Security research blog on PQC](https://security.apple.com/)

AWS:

* [AWS KMS post-quantum TLS](https://aws.amazon.com/blogs/security/post-quantum-tls-now-supported-in-aws-kms/)
* [AWS PQC Initiative](https://aws.amazon.com/security/post-quantum-cryptography/)
* [AWS post-quantum cryptography migration plan](https://aws.amazon.com/blogs/security/aws-post-quantum-cryptography-migration-plan/)
* [s2n-tls PQC implementation](https://github.com/aws/s2n-tls/tree/main/pq-crypto)
* [Verifying and optimizing post-quantum cryptography at Amazon](https://www.amazon.science/blog/verifying-and-optimizing-post-quantum-cryptography-at-amazon)

Cloudflare:

* [A look at the latest post-quantum signature standardization candidates](https://blog.cloudflare.com/another-look-at-pq-signatures/)
* [Cloudflare targets 2029 for full post-quantum security](https://blog.cloudflare.com/post-quantum-roadmap/)
* [Keeping the Internet fast and secure: introducing Merkle Tree Certificates](https://blog.cloudflare.com/bootstrap-mtc/)
* [PQC solutions overview](https://www.cloudflare.com/pqc/)
* [State of the post-quantum Internet in 2025](https://blog.cloudflare.com/pq-2025/)
* [Why we cannot wait for better post-quantum signature algorithms](https://blog.cloudflare.com/ml-dsa-will-have-to-do/)
* [You don’t need quantum hardware for post-quantum security](https://blog.cloudflare.com/you-dont-need-quantum-hardware/)

Google:

* [Announcing quantum-safe digital signatures in Cloud KMS](https://cloud.google.com/blog/products/identity-security/announcing-quantum-safe-digital-signatures-in-cloud-kms) - Implementation details for ML-DSA and SLH-DSA in cloud environments.
* [Building superconducting and neutral atom quantum computers](https://blog.google/innovation-and-ai/technology/research/neutral-atom-quantum-computers/)
* [FIDO2/WebAuthn post-quantum security keys](https://security.googleblog.com/)
* [Google Cloud Post-Quantum Cryptography (PQC)](https://cloud.google.com/security/resources/post-quantum-cryptography) - Organizational PQC strategy, architecture, and hybrid cryptographic deployments.
* [Post-quantum cryptography in Chrome](https://security.googleblog.com/2024/08/post-quantum-cryptography-standards.html)
* [Quantum frontiers may be closer than they appear](https://blog.google/innovation-and-ai/technology/safety-security/cryptography-migration-timeline/)

Hashicorp:

* [NIST’s post-quantum cryptography standards: Our plans](https://www.hashicorp.com/en/blog/nist-s-post-quantum-cryptography-standards-our-plans)

IBM:

* [Cryptographic Bill of Materials (CBOM)](https://www.ibm.com/quantum/quantum-safe/cbom)
* [IBM Quantum Safe](https://www.ibm.com/quantum/quantum-safe)
* [Quantum Safe Roadmap](https://www.ibm.com/quantum/quantum-safe/roadmap)

Kubernetes:

* [Post-Quantum Cryptography in Kubernetes](https://kubernetes.io/blog/2025/07/18/pqc-in-k8s/)

Meta:

* [Post-Quantum Cryptography Migration at Meta: Framework, Lessons, and Takeaways](https://engineering.fb.com/2026/04/16/security/post-quantum-cryptography-migration-at-meta-framework-lessons-and-takeaways/)
* [Post-quantum readiness for TLS at Meta](https://engineering.fb.com/2024/05/22/security/post-quantum-readiness-tls-pqr-meta/)

Microsoft:

* [Azure Quantum Cryptography](https://azure.microsoft.com/en-us/products/quantum/)
* [LWEKE Reference implementations](https://github.com/Microsoft/PQCrypto-LWEKE)
* [Microsoft PQC program](https://www.microsoft.com/en-us/research/project/post-quantum-cryptography/)
* [Post-Quantum TLS](https://www.microsoft.com/en-us/research/project/post-quantum-tls/)

Palo Alto Networks:

* [A Complete Guide to Post-Quantum Cryptography Standards](https://www.paloaltonetworks.com/cyberpedia/pqc-standards)
* [Quantum Readiness Guide](https://www.paloaltonetworks.co.uk/cyberpedia/quantum-readiness)

Red Hat:

* [Post-quantum cryptography in Red Hat Enterprise Linux 10](https://www.redhat.com/en/blog/post-quantum-cryptography-red-hat-enterprise-linux-10)
* [What’s new in post-quantum cryptography in RHEL 10.1](https://www.redhat.com/en/blog/whats-new-post-quantum-cryptography-rhel-101)


Signal:

* [PQXDH: Post-Quantum Extended Diffie-Hellman](https://signal.org/docs/specifications/pqxdh/)
* [Signal's approach to post-quantum encryption](https://signal.org/blog/pqxdh/)

Tencent:

* [PQC InfoHub](https://pqc.tencent.com/en)


## PQC software

* [SUPERCOP](https://bench.cr.yp.to/results-kem.html) - Benchmarks for cryptographic software
* [PQConnect](https://www.pqconnect.net/) - Network-layer PQ-protected tunneling


### General-purpose libraries with PQC support

Does not include TLS implementations listed later:

* [AWS-LC](https://github.com/aws/aws-lc/blob/main/crypto/fipsmodule/PQREADME.md) - Rust bindings in [aws-lc-rs](https://github.com/aws/aws-lc-rs)
* [Botan](https://github.com/randombit/botan) - C++
* [Bouncy Castle](https://www.bouncycastle.org/) - Java/C# 
* [CIRCL (Cloudflare Interoperable, Reusable Cryptographic Library)](https://github.com/cloudflare/circl) - Go
* [Google Tink](https://github.com/tink-crypto) - Multi-language (C++, Go, Java, Obj-C, Python) 


### PQC libraries and language-specific software

C:

* [algorand/falcon](https://github.com/algorand/falcon) - Deterministic FALCON implementation
* [liboqs](https://github.com/open-quantum-safe/liboqs) - From [Open Quantum Safe](https://openquantumsafe.org/)
* [mupq/pqm4](https://github.com/mupq/pqm4) - PQC library for the ARM Cortex-M4
* [PQ Code Package](https://github.com/pq-code-package) - A Linux Foundation [PQCA](https://pqca.org/) project building high-assurance implementations of standards-track algorithms

Go:

* [Go crypto/mlkem](https://pkg.go.dev/crypto/mlkem) - Official Go implementation of Kyber/ML-KEM

JavaScript:

* [paulmillr/noble-post-quantum](https://github.com/paulmillr/noble-post-quantum) - ML-KEM, ML-DSA, SLH-DSA, Falcon, and hybrids 


.NET:

* [Post-Quantum Cryptography in .NET](https://devblogs.microsoft.com/dotnet/post-quantum-cryptography-in-dotnet/)

Rust:

* [libcrux](https://crates.io/crates/libcrux) - Formally verified code
* [RustCrypto/KEMs](https://github.com/RustCrypto/KEMs) - ML-KEM, FrodoKem
* [RustCrypto/signatures](https://github.com/RustCrypto/signatures) - ML-DSA, SLH-DSA, LMS
* [orion-rs/orion](https://github.com/orion-rs/orion) - ML-KEM

Zig:

* [std.crypto](https://www.mintlify.com/ziglang/zig/api/crypto) -
  ML-DSA and ML-KEM in the standard library


### TLS implementations with PQC support

* [aws/s2n-tls](https://github.com/aws/s2n-tls/)
* [BoringSSL](https://boringssl.googlesource.com/boringssl)
* [OpenSSL](https://www.openssl.org/)
* [Go crypto/tls](https://github.com/golang/go/tree/master/src/crypto/tls)
* [wolfSSL](https://github.com/wolfSSL/wolfssl)


## Blockchains

Official documentation, plan, proposals, and specifications:

Algorand:

* [Algorand Post-Quantum Roadmap](https://algorand.co/blog/algorand-post-quantum-cryptography-roadmap)
* [Technical Brief: Quantum-resistant transactions on Algorand with Falcon signatures](https://algorand.co/blog/technical-brief-quantum-resistant-transactions-on-algorand-with-falcon-signatures)
* [Algorand Post-Quantum Ledger: Securing the ledger, one account type at a time](https://algorand.co/blog/algorand-post-quantum-ledger)
* [Deterministic Falcon Signatures](https://github.com/algorandfoundation/specs/blob/master/_archive/dev/cryptographic-specs/falcon-deterministic.pdf)

Bitcoin:

* [BIP-360: Pay-to-Merkle-Root (P2MR)](https://bip360.org/)
* [BIP-361: Post Quantum Migration and Legacy Signature Sunset](https://www.bip361.org/)

Circle/Arc:

* [Circle’s Post-Quantum Security
  Roadmap](https://6778953.fs1.hubspotusercontent-na1.net/hubfs/6778953/PDFs/quantum_paper.pdf):
  "Arc will deploy a precompiled post-quantum signature verifier on mainnet (**SLH-DSA-SHA2-128s**) so smart accounts can validate post-quantum signatures on-chain."

Ethereum: 

* [Post-quantum cryptography on Ethereum](https://ethereum.org/roadmap/future-proofing/quantum-resistance/)
* [pq.ethereum.org](https://pq.ethereum.org/)
* [Lean Consensus R&D Progress](https://leanroadmap.org/)

NEAR:

* [Preparing NEAR for the Quantum Computing Era](https://www.near.org/blog/making-near-protocol-post-quantum-safe): "The Near One team (...) decided to start with FIPS-204 (**ML-DSA**, prev.  Dilithium)"

Polkadot:

* [Post Quantum Cryptography Roadmap for Polkadot and
  JAM](https://forum.polkadot.network/t/post-quantum-cryptography-roadmap-for-polkadot-and-jam/13232):
  "We use both [**Falcon and Dilithium**] in different parts of the Polkadot protocol to replace all signature schemes."

Ripple:

* [Post-Quantum Readiness on the XRP Ledger](https://ripple.com/insights/post-quantum-readiness-on-the-xrp-ledger/)

Solana:

* [Quantumglow: Will Solana’s Performance Survive Quantum Computing?](https://www.anza.xyz/blog/quantumglow-will-solana%E2%80%99s-performance-survive-quantum-computing): "we propose a **hash-based (XMSS-style)** signature scheme tailored specifically to Quantumglow"
* [Securing Solana Against a Powerful Quantum Adversary](https://www.anza.xyz/blog/securing-solana-against-a-powerful-quantum-adversary)
* [Solana’s Quantum Readiness](https://solana.com/news/quantum-readiness): "The alignment around **Falcon** reflects extensive research around Solana’s quantum resiliency. "

Zcash:

* [ZIP-2005: Orchard Quantum Recoverability](https://zips.z.cash/zip-2005)


## Research surveys

* [A Decade of Lattice-Based Cryptography](https://eprint.iacr.org/2015/939.pdf) by Chris Peikert
* [A Survey on Code-Based Cryptography](https://arxiv.org/abs/2201.07119) by Violetta Weger, Niklas Gassner and Joachim Rosenthal
* [Mathematics of Isogeny-Based Cryptography](https://arxiv.org/abs/1711.04062) by Luca de Feo
* [Post-Quantum Cryptography](https://www.researchgate.net/profile/Nicolas-Sendrier-2/publication/226115302_Code-Based_Cryptography/links/540d62d50cf2df04e7549388/Code-Based-Cryptography.pdf) by Daniel J. Bernstein, Johannes Buchmann and Erik Dahmen
* [Post-quantum cryptography—dealing with the fallout of physics success](https://eprint.iacr.org/2017/314) by Daniel J. Bernstein and Tanja Lange
* [Securing Elliptic Curve Cryptocurrencies against Quantum Vulnerabilities: Resource Estimates and Mitigations](https://quantumai.google/static/site-assets/downloads/cryptocurrency-whitepaper.pdf) by Google Quantum AI
* [The Learning with Errors Problem](https://cims.nyu.edu/~regev/papers/lwesurvey.pdf) by Oded Regev
* [A Gentle Introduction to Lattice-Based Cryptography](https://cryptography101.ca/wp-content/uploads/lattice-based-cryptography.pdf) by Alfred Menezes


## Other resources

* [awesome-quantum-software](https://github.com/qosf/awesome-quantum-software)
* [PQC Crypto Registry](https://registry.projecteleven.com/) - By Project Eleven
* [PQCrypto Usage & Deployment](https://ianix.com/pqcrypto/pqcrypto-deployment.html)
* [PQC Forum](https://groups.google.com/a/list.nist.gov/g/pqc-forum) - NIST's discussion list
* [PQ-SORT: Post-Quantum Signatures On-Ramp Tests](https://pqsort.tii.ae/)
* [Quantum Algorithm Zoo](https://quantumalgorithmzoo.org)

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