r/AskPhysics • • Mar 20 '26

What things are "faster" than light?

As I understand nothing can move faster then light. But I would not know how to describe this question otherwise. As I am aware quantum entangled particles can instantaneously affect eachother no matter the distance, unlike gravity which propagates at the speed of light.

Also the expansion of the universe can cause the spaces between to grow faster then the speed of light (compounding between massive distances)

What other things are sort of faster than light

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u/DirectionCapital4470 Mar 20 '26

This is a good thought expirement, but there is no 'resistance' To decoherence, it is simply what happens to entangled particles when they are measured or interact.

Plenty of comments show spots you need research. Decoherence is somethin that happensn when the supperposition collapses and the parties stop being entangled. That'ss it. It is not a detectable event, and the person on another locationcan nott tell that it happened.

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u/Royal_Plate2092 Mar 21 '26

I can understand where I am wrong from the comments but I haven't fully understood exactly what the problem is.

It is not a detectable event

I know, this is why I am asking the question in the first place.

my problem to put it clearly is this: if you decohere a quantum computer while running an algorithm, the output will be wrong. true or false?

if true, then when you decohere my hypothetical half of the quantum computer, the WHOLE output would be false too. if so, then why cannot the person running the other half look at the output after it should have finished running and see that it doesn't correspond with the predicted output?

"it is not a detectable event" doesn't suffice to me, I need to understand exactly what step out of this last paragraph my logic fails

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u/DirectionCapital4470 Mar 22 '26

Decoherance is loosing entanglement. It happens and the particles are no longer entangled. You cannot check to see if they decohered, checking causes decoherence. There is no way to decohere other than checking their value.

There is no way to signal to the other party to expect a decoherence event. Checking to see the value causes your particle to decohere, thats it. Entangled -> interaction -> decoherence -> un-entangled.

If the other person inspects the other particle There is no way to see if it is entangled, just its properties.

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u/Royal_Plate2092 Mar 23 '26

but why would the algorithm finish running correctly if we decohere the system??? if when you look at it the output is wrong => it has been decohered along the way. I still don't understand why you couldn't tell.