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MH: Right. I think it doesn't affect us. We need to think about this, and we need to think about this particularly in a world where I -- and the world is going -- we are secure, we are safe. In the past, in the past 20 years of computer science, we've been secure absolutely. The things we use built in perfectly, is that their cryptographic algorithms are balanced and made randomly. So they're not mathematically true, but they're a perfect randomness. And this is not true anymore because now we can have keys that are created on a quantum computer, which is impossible to create in the physical world. And so there's no -- we don't need to worry about people's weaknesses. People's weaknesses are steel, and crypto is still steel, it's still a physical idea. And so, we don't need to worry about them. But it is important to drive home, while still maintaining that balance, that it is possible to create perfect randomness on a quantum computer. Because if you can't get perfectly randomness from nature, you do need to know if the keys that live on your network could be influenced from a classical hacker.
The ability to create perfectly random keys, completely unhackable, the ability to generate them is now possible, and it's not going to be possible on a classical computer indefinitely. So we need to know, too, if the keys that we possess, the ability that we have to generate keys from nature, if a new vulnerability develops, and we don't have access to the keys ourselves, it wouldn't be possible to protect those keys. They basically can't be protected. d2c66b5586
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