CompuServe Thread

#Time-Dilation Prove

5 messages in this thread
#90783From: Richard Rae/SYSOPOct 23, 1987 9:54 PM
Sorry Nick, I'm testing a beta automated SIG program these days, and my last message scrolled and/or I can't get at it. Did I coin what? Rick
#90802From: Nick Sullivan/TransactorOct 23, 1987 11:17 PM
I was referring to "neutronium". From other replies, I gather it's a standard term, at least in the science fiction community… so if you _do_ have a copyright on it, Rick, you'd better speak up. 🙂 Nick
#90826From: Thomas HoladayOct 24, 1987 7:25 AM
Another exotic element is 'positronium,' which consists of a positron and electron orbiting each other. One romantic view of the death of the universe suggests that after all the protons have decayed, the last remaining positron time larger than the universe today; gradually approaching until they finally annihilate, leaving only photons and neutrinos to radiate B-L-I-S-H in cold infrared for eternity. Expect it around year 10^105, A.D.
#90849From: Nick Sullivan/TransactorOct 24, 1987 12:44 PM
Okay, Tom, I've got that marked on my calendar – I won't get taken by surprise. There seems to be a crucial phrase or two missing from your message; did you mean that the last positron and the last electron will be orbiting each other with an orbital diameter greater than that of the universe as it is today? Sounds like a thrilling place to be. Nick
#90853From: Thomas HoladayOct 24, 1987 2:19 PM
Yes, the last atom of positronium is expected to have a diameter greater than the universe today. A new meaning to the word 'vacuum.' A few swipes at the calculator suggests that if we call today's universe 36 billion light years across (4 * 10^9), and the last atom three-ish times that (10 * 10^9, or 10^10 lightyears), the photons carrying the mutual electromagnetic attraction of the positron and the electron will take precisely 10^10 years per one-way trip. Sounds like a long time, but in the time between the years 9*10^104 A.D. and 10*10^104 A.D., the photons will be able to make 5 * 10^93 round trips, which is ample to bring these two far wanderers together. Of course, if it turns out that protons don't decay, then it'll never happen. Science is like that, sometimes.