# First Quantum-Resistant Bitcoin Transaction Mined on Mainnet

**Published:** 2026-09-02T08:59:16.834Z  
**Topic:** Bitcoin  
**Sentiment:** neutral  
**Publisher:** TrendWatcher — https://www.trendwatcher.in/article/0fc018c1-92ec-43c4-8e46-d97095e876f7

A StarkWare researcher has completed the first quantum-resistant Bitcoin transaction on mainnet, addressing risks to $483 billion in vulnerable BTC.

The Starknet Foundation has successfully executed the first quantum-resistant Bitcoin transaction on the network's mainnet, demonstrating a method to secure funds against future quantum computing threats without requiring protocol-level upgrades [1]. This development serves as an "emergency escape hatch" for the roughly 6.04 million BTC—representing 30.2% of the total issued supply—that currently have public keys exposed on-chain and are theoretically vulnerable to future quantum decryption [2].

| At a glance | |
|---|---|
| Milestone | First quantum-resistant transaction on mainnet |
| Vulnerable Supply | 6.04 million BTC [2] |
| Estimated Value at Risk | ~$483 billion [2] |
| Primary Catalyst | StarkWare "QSB" signature grinding method [1] |

## How the quantum-resistant transaction works
The transaction, dubbed "Quantum-Safe Bitcoin" (QSB), was developed by StarkWare researcher Avihu Levy [1]. Unlike standard Bitcoin transactions that rely on elliptic-curve cryptography—which could theoretically be broken by a sufficiently powerful quantum computer using Shor’s algorithm—the QSB method uses a hash-based authorization system [1, 2]. Because standard Bitcoin nodes do not recognize this non-standard format, the transaction was processed directly by the mining company MARA via its Slipstream service rather than through the public mempool [1].

The process is computationally intensive, requiring "signature grinding" to generate millions of candidates until a structure is found that does not expose vulnerable cryptographic material [1]. This approach is not intended for daily payments; it requires significant off-chain computation and carries a cost estimated at several hundred dollars per transaction, positioning it as a last-resort security measure rather than a scalable payment solution [2].

## The industry debate on quantum readiness
While the successful transaction proves that a migration mechanism is technically feasible today, it has not settled the debate over when quantum-ready upgrades should be integrated into the Bitcoin protocol [2]. Some industry figures, including Michael Saylor, have suggested that a credible quantum threat remains more than a decade away [2]. Conversely, institutions are increasingly prioritizing the issue; a consortium including BlackRock, Fidelity Digital Assets, and Coinbase has pledged $15 million over three years toward research into post-quantum cryptography for Bitcoin [2].

Developers remain divided on the long-term strategy for protecting the network. While some advocate for a soft fork to disable vulnerable spending paths, others express concern over the potential for "quantum treasure hunts," where attackers might attempt to claim early, dormant coins—including those associated with Satoshi Nakamoto—should they gain access to sufficient computing power [2].

## What to watch
*   **Protocol-level proposals:** Monitor progress on Bitcoin Improvement Proposal (BIP) 360 and other formal discussions regarding how the network should handle quantum-vulnerable addresses [2].
*   **Research funding milestones:** Track the output of the $15 million security research consortium, which is specifically tasked with developing post-quantum standards for the Bitcoin ecosystem [2].
*   **Commercial quantum deployment:** Observe the integration of silicon spin quantum computers into commercial data centers, such as the upcoming Diraq deployment at Equinix, as a proxy for the maturation of the underlying technology [3].

The successful QSB transaction provides a functional lifeboat for the network, but industry leaders emphasize that it is not a final solution. The core challenge remains determining how to migrate billions of dollars in vulnerable assets without forcing a contentious network fork or leaving inactive coins permanently stranded [2].

## Sources
1. Bitcoin Magazine — [Bitcoin's First Quantum-Safe Transaction Just Happened](https://bitcoinmagazine.com/news/bitcoin-quantum-resistant-transaction)
2. Gizmodo — [The First Quantum-Resistant Bitcoin Transaction Has Been Mined](https://gizmodo.com/the-first-quantum-resistant-bitcoin-transaction-has-been-mined-2000804119)
3. Cullman Times — [Diraq to Deploy a Quantum Computer Inside an Equinix Data Center](https://pr.cullmantimes.com/article/Diraq-to-Deploy-a-Quantum-Computer-Inside-an-Equinix-Data-Center/6a95ec2b5b3d9368bc023f13)

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Cite as: TrendWatcher, "First Quantum-Resistant Bitcoin Transaction Mined on Mainnet", https://www.trendwatcher.in/article/0fc018c1-92ec-43c4-8e46-d97095e876f7
