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Quantum Computing & Cryptocurrency Statistics 2026

Citing these statistics? Attribution: Quantum & Cryptocurrency Statistics 2026 — SynergyX Research, synxcrypto.com/quantum-cryptocurrency-statistics-2026.php

Authoritative, quotable statistics on quantum threats to cryptocurrency.
Free to cite with attribution. Updated monthly.

๐Ÿ“… Last Updated: August 24, 2026 | ๐Ÿ“Š Total Statistics: 63 | ๐Ÿ“ License: CC BY 4.0 (Free to use with attribution)

๐Ÿ“š How to Cite This Data

All statistics on this page are free to use with attribution. Please cite as:

Source: SynergyX, "Quantum Computing & Cryptocurrency Statistics 2026" https://synxcrypto.com/quantum-cryptocurrency-statistics-2026.php
๐Ÿ–ฅ๏ธ

Quantum Computing Progress

~2,500
Physical qubits in the best public quantum hardware today - none fault-tolerant at scale
Source: Public vendor disclosures 2026
1,121
Qubits in IBM's Condor processor (December 2023)
Source: IBM 2023
100,000+
Physical qubit target for IBM Blue Jay in 2033 - over 2,000 logical qubits
Source: IBM Quantum Roadmap 2033
$15 billion
China's quantum computing investment (2021-2025)
Source: Various estimates 2025
$1.2 billion
US National Quantum Initiative funding
Source: US Government 2023
1,200-1,450
Logical qubits needed to break 256-bit ECDSA - the current benchmark, down from earlier estimates near 2,330
Source: Google Quantum AI, Ethereum Foundation & Stanford, March 2026 2026
<500,000
Physical qubits the same ECDSA-256 break fits inside
Source: Google Quantum AI, March 2026 2026
~26,000
Physical qubits for the same break on neutral-atom hardware over roughly 10 days
Source: Caltech/Oratomic analysis 2026
53
Active qubits in Google Sycamore (54 fabricated) for the 2019 supremacy demonstration
Source: Google/Nature 2019
200 seconds
Time for Google Sycamore to complete quantum supremacy calculation
Source: Google/Nature 2019
10,000 years
Classical time Google claimed for the same calculation - IBM disputed it at roughly 2.5 days
Source: Google/Nature; IBM rebuttal 2019
105
Qubits in Google Willow, the first chip to show below-threshold error correction (December 2024)
Source: Google Quantum AI 2024
<5 minutes
Willow benchmark runtime against roughly 10^25 classical years
Source: Google Quantum AI 2024
<1 million
Noisy qubits to factor RSA-2048 in under a week - down from 20 million qubits in 2019
Source: Gidney, May 2025 2025
50+
Countries with active quantum computing programs
Source: Various 2024
Minutes
Time for a CRQC to derive a Bitcoin private key from an exposed public key
Source: Google Quantum AI, March 2026 2026
๐Ÿ”“

Cryptocurrency Quantum Vulnerability

99%+
Cryptocurrencies using quantum-vulnerable signatures (ECDSA/EdDSA)
Source: SynergyX 2026
$2.5+ trillion
Total crypto market cap vulnerable to quantum attacks
Source: CoinMarketCap + Analysis 2026
6.04 million BTC
Bitcoin sitting in addresses with exposed public keys
Source: Glassnode, May 2026 2026
30.2%
Share of circulating Bitcoin supply with an exposed public key
Source: Glassnode, May 2026 2026
~$469 billion
Value of that exposed Bitcoin at current prices
Source: Glassnode, May 2026 2026
1.92 million BTC
Structurally exposed in P2PK outputs - the public key was never hidden
Source: Glassnode, May 2026 2026
4.12 million BTC
Operationally exposed through address reuse after spending
Source: Glassnode, May 2026 2026
~2.3 million BTC
Irreversibly at risk - the keys are lost, so no one can ever migrate these coins
Source: Glassnode, May 2026 2026
~3.7 million BTC
Still recoverable - holders who could migrate to quantum-safe addresses today
Source: Glassnode, May 2026 2026
~1.7 million BTC
Held in early P2PK addresses, including roughly 1.1 million attributed to Satoshi
Source: Blockchain analysis 2026
100%
Ethereum accounts with exposed public keys (all accounts)
Source: Ethereum design 2024
0
Top 50 cryptocurrencies with NIST-approved quantum resistance
Source: SynergyX 2026
โฐ

Quantum Threat Timeline

2029-2033
Arrival window for a cryptographically-relevant quantum computer, read off published hardware roadmaps rather than opinion polls
Source: IBM roadmap, Google Quantum AI, NSA CNSA 2.0 2026
2025
IBM Loon - error-correction components proven on chip
Source: IBM Roadmap 2025
2026
IBM Kookaburra - first module storing and processing encoded information
Source: IBM Roadmap 2026
2027
IBM Cockatoo - entangling two Kookaburra modules
Source: IBM Roadmap 2027
2029
IBM Starling - first large-scale fault-tolerant machine, ~200 logical qubits and 100 million gates
Source: IBM Roadmap 2029
2033
IBM Blue Jay - over 2,000 logical qubits on roughly 100,000 physical. This is the machine that clears the ECDSA-256 bar
Source: IBM Roadmap 2033
2030-2035
NSA CNSA 2.0 migration deadlines - the US government wants everything post-quantum before Blue Jay is finished
Source: NSA 2026
2035
Final deadline for complete PQC migration
Source: NIST / NSA CNSA 2.0 2026
10+ years
Data retention for HNDL attacks by nation-states
Source: Security estimates 2024
2024
Year NIST finalized post-quantum cryptography standards
Source: NIST 2024
๐Ÿ•ต๏ธ

Harvest Now, Decrypt Later (HNDL)

50+ exabytes
Estimated daily global internet traffic potentially harvested
Source: Industry estimates 2024
100%
Blockchain transactions permanently stored and accessible
Source: Blockchain design 2024
15+ years
Bitcoin blockchain history available for future quantum attack
Source: Bitcoin launch 2009 2024
5+
Known nation-states with quantum computing programs capable of HNDL
Source: Public reports 2024
Permanent
Duration public keys remain exposed once transaction is made
Source: Blockchain immutability 2024
๐Ÿ›ก๏ธ

Post-Quantum Cryptography Adoption

3
NIST post-quantum standards finalized (FIPS 203, 204, 205)
Source: NIST 2024
August 2024
Date NIST released final PQC standards
Source: NIST 2024
1
Cryptocurrencies implementing NIST-approved PQC (SynX)
Source: SynX 2026
Kyber-768
Key encapsulation mechanism used by SynX (FIPS 203 ML-KEM)
Source: SynX 2026
SPHINCS+-SHAKE-128s
Signature algorithm used by SynX (FIPS 205 SLH-DSA)
Source: SynX 2026
192-bit
Post-quantum security level of Kyber-768
Source: NIST 2024
256-bit
Security level of SPHINCS+-SHAKE-128s
Source: NIST 2024
๐Ÿ“Š

SynX Network Statistics

2026
SynX launch year - first NIST-compliant quantum-resistant crypto
Source: SynX 2026
5%-7.77%
Annual staking APR rewards
Source: SynX 2026
0
KYC requirements for wallet usage
Source: SynX 2026
100%
Transactions that are private by default
Source: SynX 2026
SerendipityX
Mining algorithm - memory-hard Argon2id work ordered as a sequential lattice, CPU-only
Source: SynX 2026
Variable
Block production interval - difficulty climbs continuously, so there is no fixed block clock for a mining farm to optimise against
Source: SynX 2026
Hybrid PoW+PoS
Synergy Sea consensus - miners produce blocks, staking validators settle sends sub-second
Source: SynX 2026
Argon2id
Memory-hard primitive behind both SerendipityX mining and wallet key derivation
Source: SynX 2026
๐Ÿ’ฐ

Quantum-Safe Crypto Market

$2.5 trillion+
Cryptocurrency market needing quantum migration
Source: CoinMarketCap 2026
$850 billion
Bitcoin market cap at quantum risk
Source: CoinMarketCap 2026
$350 billion
Ethereum market cap at quantum risk
Source: CoinMarketCap 2026
500 million+
Cryptocurrency users globally needing quantum protection
Source: Industry estimates 2024
10x
Projected growth of quantum-safe crypto market 2026-2030
Source: SynergyX 2026

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๐Ÿ“‹ Methodology & Sources

Our statistics are compiled from the following sources:

Statistics are updated monthly. If you find any inaccuracies, please contact us at research@synxcrypto.com.

๐Ÿ“– Related Resources