I desperately want to believe that this will somehow enable us to live in a Star-Trek future, even though I'm sure it won't. Would someone with some knowledge of physics care to break down the ramifications of this (if it's not some sort of measurement error)? Please?
Speed-of-light experiments yield baffling result at LHC
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Re: Speed-of-light experiments yield baffling result at LHC
#12Similar thing could be happening here.
Re: Speed-of-light experiments yield baffling result at LHC
#13If I calculated correctly, that's only about .0025% faster than c. Practical implications?
All this reminds me of the beginning of Mostly Harmless: "One of the problems has to do with the speed of light and the difficulties involved in trying to exceed it. You can't. Nothing travels faster than the speed of light with the possible exception of bad news, which obeys its own special laws. The Hingefreel people of Arkintoofle Minor did try to build spaceships that were powered by bad news but they didn't work particularly well and were so extremely unwelcome whenever they arrived anywhere that there wasn't really any point in being there."
I doubt the experiment will be repeated, but it sure would be awesome if it broke Einstein.
Re: Speed-of-light experiments yield baffling result at LHC
#14If I calculated correctly, that's only about .0025% faster than c. Practical implications?
Print out 90% of physics articles from the century. Get big trash can. Put printout in trash can.
Of course i'm exaggerating, but if the story is true, this is going to be big.
Speed of light is the main block for things like time travel and a hard limit on communication speed.
It doesn't matter that it is only 0.0025%, what matters is that it can be done(if it is confirmed). As a(very poor) analogy, the first CPUs were probably about 0.0025% the speed of the modern ones, yet look where we are today, in no small part thanks to them. The point is, if true, this may well open a whole new realm in physics, and who knows what we will find there.
Re: Speed-of-light experiments yield baffling result at LHC
#15If I calculated correctly, that's only about .0025% faster than c. Practical implications?
More likely, it's experimental error.
.0025% is meaningless compared to the scale of the earth, but over hundreds of light years it's huge.
Re: Speed-of-light experiments yield baffling result at LHC
#16It wouldn't break current theory, it would just mean that photons travel slower than "speed of light" and have non-zero rest mass. Constant c in relativity instead of speed of photons would just mean fastest speed possible.
Re: Speed-of-light experiments yield baffling result at LHC
#17Re: Speed-of-light experiments yield baffling result at LHC
#18If I calculated correctly, that's only about .0025% faster than c. Practical implications?
Using ion propulsion and gravitationally assisted slingshot trajectories, you'd get to Proxima Centauri about 173 days 12 hours sooner, which sounds pretty cool if you ignore that that's 173 days of a 19,000 year trip.
By nuclear pulse propulsion (EDIT: invented, but still theoretical, thanks adrianN) taking 85 years, you'd get there about 18 hours sooner.
Re: Speed-of-light experiments yield baffling result at LHC
#19There was an experiment where an impulse of light came out the other end of a material faster than light could have traveled through vacuum in the same space. The eventual explanation was as follows - imagine that your outgoing bunch of photons looks like this: :::... The first three photons are "invisible" because there is so few of them that they are below the equipment sensitivity. The second group of six particle…
I bet you there is a systematic error, but I don't think it's this one.
My general rule with physics is that if I can think of it, then a real physicist will laugh at it's triviality.
Re: Speed-of-light experiments yield baffling result at LHC
#20There was an experiment where an impulse of light came out the other end of a material faster than light could have traveled through vacuum in the same space. The eventual explanation was as follows - imagine that your outgoing bunch of photons looks like this: :::... The first three photons are "invisible" because there is so few of them that they are below the equipment sensitivity. The second group of six particle…
But it's pretty easy to check that everything is alright with group velocity. If there is zero neutrino production at t=0 (in the reactor's frame of reference), and then the production jumps up, there can be no doubt about the group velocity.
Bizarre effects relative to superluminal phase velocity only appear when you start generating particles before t=0 and you mess with the medium in between. Then the "superluminal" illusion is created by quanta created before t=0.
TLDR: I find it bizarre that seasoned professionals could be fooled by phase velocity or a similar effect.