Earlier quoted context omitted.
The universe is expanding, at a rate which I believe is heading past the speed of light. This limits our ability to reach galaxies further away from us as they are speeding away faster than we could conceivably travel since our engines would of course be bound by the speed of light. Some more info: https://www.forbes.com/sites/startswithabang/2016/06/10/can-...
Why would some things be bound by the speed of light and not others? I always thought of this limitation as an all-or-nothing law.
If the universe is 13.8B years old, how can we see 46B light years away? (2018)
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Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#12Earlier quoted context omitted.
The universe is expanding, at a rate which I believe is heading past the speed of light. This limits our ability to reach galaxies further away from us as they are speeding away faster than we could conceivably travel since our engines would of course be bound by the speed of light. Some more info: https://www.forbes.com/sites/startswithabang/2016/06/10/can-...
Why would some things be bound by the speed of light and not others? I always thought of this limitation as an all-or-nothing law.
As an example if you shine a torch at a really far away rock the dot can move faster than c transversally when you wiggle the torch. But the actual light is going at c to the rock and back to you.
Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#13Earlier quoted context omitted.
The universe is expanding, at a rate which I believe is heading past the speed of light. This limits our ability to reach galaxies further away from us as they are speeding away faster than we could conceivably travel since our engines would of course be bound by the speed of light. Some more info: https://www.forbes.com/sites/startswithabang/2016/06/10/can-...
Why would some things be bound by the speed of light and not others? I always thought of this limitation as an all-or-nothing law.
Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#14Earlier quoted context omitted.
The universe is expanding, at a rate which I believe is heading past the speed of light. This limits our ability to reach galaxies further away from us as they are speeding away faster than we could conceivably travel since our engines would of course be bound by the speed of light. Some more info: https://www.forbes.com/sites/startswithabang/2016/06/10/can-...
Why would some things be bound by the speed of light and not others? I always thought of this limitation as an all-or-nothing law.
PS It is an open question how that does not lead to contradictions when you start considering energy density of the vacuum or the extremely small gravitational waves (which can in principle transmit information) created by the changes in the latter systems. But these effects are astronomically small and it is difficult to imagine even a thought experiment that can detect them.
Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#15Earlier quoted context omitted.
The universe is expanding, at a rate which I believe is heading past the speed of light. This limits our ability to reach galaxies further away from us as they are speeding away faster than we could conceivably travel since our engines would of course be bound by the speed of light. Some more info: https://www.forbes.com/sites/startswithabang/2016/06/10/can-...
Why would some things be bound by the speed of light and not others? I always thought of this limitation as an all-or-nothing law.
If you point a laser pointer device to moon from earth (assuming it's a really strong laser), rotating it for a few degrees on earth will result a light mark kms long on moon. The build up time for the mark will even exceed the speed of light if your hand is fast enough. This doesn't mean you broke the law. It just means multiple objects (in this case, each photon hitting the moon) created the illusion of a single object, moving really fast. Background light trying to reach us from the edge of the universe mimics a similar behavior with the added extra spacial dimension. Locations in space aren't objects. They are some points objects can leave marks on. Tracking their speed can always create faster than light situations if you pick a bunch of them conveniently.
Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#16It’s not that we can see that far, it’s that what we see has moved away from where it was when it produced the light we see now.
Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#17Earlier quoted context omitted.
The universe is expanding, at a rate which I believe is heading past the speed of light. This limits our ability to reach galaxies further away from us as they are speeding away faster than we could conceivably travel since our engines would of course be bound by the speed of light. Some more info: https://www.forbes.com/sites/startswithabang/2016/06/10/can-...
That’s the case for the galaxies furthest away from us. Closer galaxies are receding less quickly and Andromeda is actually coming towards us.
https://en.wikipedia.org/wiki/Andromeda%E2%80%93Milky_Way_co...
Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#18What does it mean: "if we left today we could only reach one third of it"? I couldn't find a the limiting factor... The stars would be dead before we arrived? My best guess. Of course, the qualification would be that we continue to be bound to the speed of light maximum.
Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#19Re: If the universe is 13.8B years old, how can we see 46B light years away? (2018)
#20Maybe I’m misunderstanding though.
EDIT: I guess you also have to take into account the expansion of the fabric of space as well and not just the movement of the galaxies. Still a bit difficult to grasp because I still intuitively want to say that those galaxies are traveling faster than the speed of light with the assistance of space expansion like the old Hollywood trick of actors running on a moving rug to fake superhuman speed. They’re still moving faster, just not on their own. I guess the key difference is that an actor on a sliding rug is moving through space faster even if their legs are moving at the same speed, but in the case of the galaxies, space itself is moving thus they’re not technically FTL because the speed of light is relative to its movement through space.