Anchorage Unveils Plan to Protect Against Quantum Threats

cryptonews.ruPublished on 2026-08-04Last updated on 2026-08-04

Abstract

Regulated crypto bank Anchorage Digital has presented a strategy for preparing institutional assets for the post-quantum era, including implementing hybrid protection for internal TLS connections. The bank highlights that for cryptocurrencies, the main quantum risk lies in digital signatures, as Shor's algorithm could theoretically derive a private key from a public one. To mitigate this, Anchorage uses Bitcoin addresses based on a hash of the public key, which keeps the key hidden until a transaction is sent, and practices minimal address reuse. Internally, the company has deployed post-quantum key encapsulation for employee devices on ChromeOS and is implementing post-quantum cryptography within its hardware security modules (HSMs). A key proposal is the "Post-Quantum Turnstile" mechanism, which uses STARK zero-knowledge proofs to allow users to migrate signing rights to a post-quantum key without exposing their old private or public key. This could help secure an estimated two-thirds of circulating coins that might otherwise become inaccessible if the network phases out classical signatures. Furthermore, Anchorage open-sourced its Rust implementation of the SQIsign digital signature scheme, which it claims offers signatures about seven times smaller than the Falcon algorithm. This comes amid warnings that around 6 million BTC in addresses with exposed public keys could be vulnerable to future quantum attacks.

Regulated crypto bank Anchorage Digital has presented a strategy to prepare institutional assets for the post-quantum era. The organization also announced the implementation of hybrid protection for internal TLS connections.

For cryptocurrencies, the key risk is not related to mining or hashing, but to digital signatures: Shor's algorithm theoretically allows the computation of a private key from a revealed public one.

"Quantum computing is not a moment, but a migration. At Anchorage Digital, we have been building infrastructure for this migration from day one," said Nathan McCauley, co-founder and CEO of the crypto bank.

According to Anchorage, client bitcoins are in a more secure position due to the use of addresses based on a hash of the public key. Such a scheme does not reveal it until a transaction is sent, and the company itself follows the practice of minimizing address reuse.

Regarding TLS connections, the organization stated that managed employee devices on ChromeOS already use post-quantum key encapsulation—a secret key agreement mechanism resistant to future quantum attacks.

Another element of the strategy is hardware security modules where cryptographic keys are stored and processed. Anchorage stated that it is deploying post-quantum cryptography in its production infrastructure and testing the performance of different algorithms.

What are quantum computing and quantum computers?

In addition to internal measures, Anchorage proposed a Post-Quantum Turnstile mechanism for migrating old accounts to post-quantum keys. It uses STARK—a type of zero-knowledge proof that allows confirmation of secret knowledge without revealing it and does not require a trusted setup.

The idea addresses one of the problems of Bitcoin's future migration. If the network ever disables classical signatures, some funds in addresses with unrevealed public keys will remain protected from quantum attack but may become inaccessible to their owners. Turnstile proposes transferring the signing right to a post-quantum key without revealing the old private or public key.

According to Anchorage's estimate, this approach could be applicable to approximately two-thirds of the circulating coins.

The crypto bank has also open-sourced sqisign-rs—an implementation of the SQIsign digital signature scheme in Rust. Representatives of the organization claim that SQIsign yields a signature size approximately seven times smaller compared to Falcon.

Earlier, Glassnode analysts estimated that around 6 million BTC in addresses with revealed public keys could be at risk from quantum attacks.

Recall that in May, Quantus developers pointed out the cryptocurrency market's lack of readiness for the transition to post-quantum cryptography.

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Related Questions

QWhat is Anchorage Digital's primary concern regarding cryptocurrencies and quantum computing threats?

AAnchorage Digital identifies the key risk for cryptocurrencies is not mining or hashing, but digital signatures. The Shor's algorithm could theoretically compute a private key from a revealed public key.

QHow is Anchorage Digital currently protecting its internal TLS connections against future quantum threats?

AAnchorage Digital is using post-quantum key encapsulation for internal TLS connections on managed employee devices running ChromeOS.

QWhat is the 'Post-Quantum Turnstile' mechanism proposed by Anchorage Digital, and what problem does it solve?

AThe Post-Quantum Turnstile is a mechanism for migrating old accounts to post-quantum keys. It uses STARK proofs to allow signing rights to be transferred to a new post-quantum key without revealing the old private or public key, solving the problem of funds becoming inaccessible if the network disables classical signatures.

QWhich algorithm did Anchorage Digital open-source, and what is claimed to be its advantage?

AAnchorage Digital open-sourced 'sqisign-rs,' an implementation of the SQIsign digital signature scheme in Rust. It is claimed to produce signatures about seven times smaller than those from the Falcon algorithm.

QAccording to Glassnode analysts, how many bitcoins are estimated to be at risk from quantum attacks due to exposed public keys?

AAccording to Glassnode analysts, approximately 6 million BTC held on addresses with exposed public keys could be at risk from quantum attacks.

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