Tezos、耐量子ブロックチェーンのプレビュー・ネットワークを公開
重要ポイント
- •プレビュー・ネットワークは、コンセンサスやランダム性を含むTezosのプロトコル全体で耐量子セキュリティを検証するために設計されている。
- •この取り組みは、2026年6月のUshuaia改定で導入されたテストネット限定の耐量子サポートとCRYSTALS-Dilithiumを基盤としている。
- •TezosはコンセンサスにSTARKベースの手法を採用し、データ可用性レイヤーをZODAプロトコルで強化した。
- •XTZは9月3日時点で約0.214ドルで取引されており、Tezosの時価総額は約2億3590万ドルとなっている。
- •Tezosは、9月を通じてベイカー、開発者、コミュニティメンバーに対し、実験的ネットワークのテスト参加を呼びかけている。

Tezos is moving toward a post-quantum version of its blockchain with the launch of an experimental preview network, marking a major step in efforts to protect decentralized systems against increasingly capable quantum computers.
The initiative, announced on Sept. 2, 2026, is designed to test cryptographic and protocol changes intended to withstand attacks that could eventually undermine conventional security methods. The move comes as advances in quantum computing raise concerns over the long-term security of cryptographic systems widely used across blockchain networks and financial infrastructure.
Post-quantum cryptography is designed to protect digital systems against quantum computers capable of solving certain mathematical problems far more efficiently than conventional machines. The urgency surrounding the transition has increased following advances in quantum hardware. Research published by Google in March 2026 indicated that the resources required to break elliptic-curve cryptography had fallen significantly, potentially bringing previously distant security concerns closer to practical consideration. Google has set 2029 as a target for migrating its own systems toward post-quantum cryptography.
Tezos’ preview network is intended to test a fully post-quantum version of the protocol, covering not only user keys but also critical functions such as consensus and blockchain randomness.
新たな暗号技術は既存アップグレードを基盤に
The latest initiative follows work introduced through the Ushuaia protocol amendment in June 2026. That upgrade added testnet-only support for post-quantum cryptography and incorporated CRYSTALS-Dilithium, a cryptographic algorithm standardized by the U.S. National Institute of Standards and Technology.
The new preview network expands that foundation by examining how post-quantum security can be integrated throughout the blockchain’s architecture. Rather than limiting protection to user-facing transactions or wallet keys, Tezos developers are working to secure core mechanisms that determine how the network reaches agreement and generates randomness.
The transition has required substantial engineering work because post-quantum cryptographic methods can impose additional computational and communication requirements. Maintaining blockchain performance while introducing stronger security therefore remains a central challenge for developers, especially for networks that need to preserve throughput and coordination across validators.
For consensus operations, Tezos developers have adopted a STARK-based approach derived from the LeanEthereum project. The system is designed to efficiently aggregate hash-based signatures, helping reduce the performance burden associated with post-quantum authentication.
The blockchain’s Data Availability Layer has also been upgraded through ZODA, a post-quantum-secure data protocol. According to the project, the approach is intended to provide extremely low communication overhead while maintaining the scalability required for data-intensive blockchain operations.
The combination of STARK-based signature aggregation and ZODA is aimed at allowing Tezos to strengthen quantum resistance without sacrificing the scalability and resilience required for a production blockchain. That matters because any broader shift to post-quantum security will need to work not just in theory, but across the network’s day-to-day operating model.
XTZの市場動向は後景に
The security initiative comes while Tezos’ native XTZ token remains under pressure. As of Sept. 3, XTZ was trading at about $0.214, giving the network a market capitalization of approximately $235.9 million.
12 years since the Tezos white paper. Smart Rollups. EVM Compatibility. Native Atomic Composability. 12 years of technical evolution… and it’s not stopping here. Next up: post-quantum testnet. Coming soon. pic.twitter.com/34PwXpurHP — Tezos (@tezos) September 2, 2026
12 years since the Tezos white paper.
Smart Rollups. EVM Compatibility. Native Atomic Composability.
12 years of technical evolution… and it’s not stopping here.
Next up: post-quantum testnet. Coming soon. pic.twitter.com/34PwXpurHP
— Tezos (@tezos) September 2, 2026
Although token performance has been subdued, the project’s focus has shifted toward longer-term infrastructure development. The post-quantum initiative also follows efforts to broaden Tezos’ capabilities, including the introduction of TzEL for private payments designed with post-quantum security considerations.
The preview network remains experimental, and Tezos expects testing to identify technical challenges before any broader deployment. Bakers, developers and community members have been encouraged to participate in testing throughout September to help identify weaknesses and performance limitations, giving the project a chance to surface compatibility issues before they reach a production environment.
For developers and users, the initiative could provide a pathway toward protecting blockchain assets and infrastructure against a future generation of quantum attacks while preserving the network’s existing operating model.
The significance of the project extends beyond the current market value of XTZ. As quantum computing continues to advance, blockchain networks that rely heavily on conventional cryptography may eventually need substantial architectural changes. Tezos’ decision to test those changes before the threat becomes immediate could give the network additional time to identify compatibility issues, optimize performance, and strengthen its security model.
The previewnet does not guarantee that Tezos will be fully protected against future quantum systems, but it represents an early attempt to address a potentially fundamental challenge to blockchain security. Its progress through testing and subsequent protocol development will determine whether the network can translate its experimental post-quantum architecture into a production-ready system.
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