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> can disappear into nothing, leaving just the energy", but gravitons [1] can do the same thing.

I'm not convinced they can vanish, unlikely photons there is nothing that can stop a graviton, they are able to travel through all matter.

So given they have unlimited range, how would one vanish?

> A gravitational wave is made of a huge amount of gravitons

That is not established at all!! Not to mention it's mathematically identical to saying gravity is made up of gravitons, and we certainly have not established gravitons exist even for plain gravity.

After all a gravity wave is just a modulation in gravitational force, not some new entity.



Gravitons (if they exist) will interact with any particle with mass, so a big heavy wall should stop them. Since the interaction is extremely small, the wall must be extremely heavy, probably bigger than a galaxy, not just a normal wall.

>> A gravitational wave is made of a huge amount of gravitons

> That is not established at all!!

Completely agree. My conviction that they exist is based in many assumptions. In particular that we will someday have a quantum gravity theory that will be correct and that it will integrate nicely with the other physics theories. It's a good guess, but it's possible that we will not know the answer for hundreds of years.


> Gravitons (if they exist) will interact with any particle with mass

Yes. Except gravity actually interacts with any particle with energy, not just mass.

> so a big heavy wall should stop them

No. There is no way (as far as we know) to shield against gravity. Unlike charge, we don't even know of any way to attenuate it, never mind shield.




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