Is Faster-Than-Light Travel or Communication Possible? (1997)
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Re: Is Faster-Than-Light Travel or Communication Possible? (1997)
#2We'd have to develop cables capable of preserving the entangled state of light particles, and a beam splitter that's more reliable. You could improve the bandwidth considerably by measuring the polarisation of the particle, even more if you could somehow encapsulate the entangled photon for a given period of time.
Re: Is Faster-Than-Light Travel or Communication Possible? (1997)
#3One way would be to fire an entangled photon down both ends of fibre optic cable in the middle. On the sending end you could observe/ ignore it, and on reviving end you'd observe it. We'd have to develop cables capable of preserving the entangled state of light particles, and a beam splitter that's more reliable. You could improve the bandwidth considerably by measuring the polarisation of the particle, even more if…
Re: Is Faster-Than-Light Travel or Communication Possible? (1997)
#4Re: Is Faster-Than-Light Travel or Communication Possible? (1997)
#5Is even near (but slower than) light travel possible? Doesn't your spaceship get destroyed the first time you hit some interstellar dust?
Re: Is Faster-Than-Light Travel or Communication Possible? (1997)
#6Re: Is Faster-Than-Light Travel or Communication Possible? (1997)
#7One way would be to fire an entangled photon down both ends of fibre optic cable in the middle. On the sending end you could observe/ ignore it, and on reviving end you'd observe it. We'd have to develop cables capable of preserving the entangled state of light particles, and a beam splitter that's more reliable. You could improve the bandwidth considerably by measuring the polarisation of the particle, even more if…
Re: Is Faster-Than-Light Travel or Communication Possible? (1997)
#8One way would be to fire an entangled photon down both ends of fibre optic cable in the middle. On the sending end you could observe/ ignore it, and on reviving end you'd observe it. We'd have to develop cables capable of preserving the entangled state of light particles, and a beam splitter that's more reliable. You could improve the bandwidth considerably by measuring the polarisation of the particle, even more if…
Re: Is Faster-Than-Light Travel or Communication Possible? (1997)
#9Earlier quoted context omitted.
You want a big block of ice in front of your ship.
Out of interest, why ice and not (say) steel?
You also don't want to stop particle radiation too quickly, or you get x-ray Bremsstrahlung. So something a little less dense than steel works better in practice.