For 40 years, crypto security relied on a trick: it’s easy to sign with your private key, but impossible to reverse your public key back into a private key.
That trick dies with Shor’s algorithm.
Once your public key is exposed, a quantum computer can forge your signature. Not theory—math.
The solution?
Post-Quantum Signatures. NaoX implements ML-DSA-87 (FIPS 204 Level 5), the strongest NIST standard. It’s based on lattice problems in hundreds of dimensions, with no known quantum shortcut.
Yes, the signature is larger (4.6KB vs 64B). But NaoX verifies it natively in 38.5 microseconds. 26,000 per second per core. No friction for the user.
The difference with other L1s:
They secure the network.
NaoX secures every device behind the network with its decentralized mesh. It’s the only one tackling the root problem.
Others secure the network. We secure every device behind it. In a quantum world, that's a lot.
#Naoris #NaoX #PostQuantum #DePIN #QDay
That trick dies with Shor’s algorithm.
Once your public key is exposed, a quantum computer can forge your signature. Not theory—math.
The solution?
Post-Quantum Signatures. NaoX implements ML-DSA-87 (FIPS 204 Level 5), the strongest NIST standard. It’s based on lattice problems in hundreds of dimensions, with no known quantum shortcut.
Yes, the signature is larger (4.6KB vs 64B). But NaoX verifies it natively in 38.5 microseconds. 26,000 per second per core. No friction for the user.
The difference with other L1s:
They secure the network.
NaoX secures every device behind the network with its decentralized mesh. It’s the only one tackling the root problem.
Others secure the network. We secure every device behind it. In a quantum world, that's a lot.
#Naoris #NaoX #PostQuantum #DePIN #QDay
