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Arman777 said:I was just referring to the flat universe by saying "stable"
Why do you think a flat universe is the only kind that can be "stable"?
Arman777 said:I was just referring to the flat universe by saying "stable"
timmdeeg said:I’m aware of that. Please see post #27.
PeterDonis said:Why do you think a flat universe is the only kind that can be "stable"?
timmdeeg said:I was assuming that you are discussing our universe (mentioning the flatness problem), not a arbitrary FRW model. Then if you drop the inflation which produces matter wherelse should matter density come from?
Arman777 said:for all Ω≠1 universe have two different possibilities.
##Ω<1## a universe with hyperbolic spatial geometryPeterDonis said:What are you referring to here?
Arman777 said:Ω<1a universe with hyperbolic spatial geometry
Ω>1 a universe with spherical spatial geometry
They are "stable" in their own type of spatial geometry.PeterDonis said:Ok. But why are these not "stable"?
Arman777 said:I don't think so. One of the crucial points in the inflation theory is that it solves flatness problem. Without the inflation Even there's CC I think the universe cannot be stable.
timmdeeg said:I was assuming that you are discussing our universe (mentioning the flatness problem), not a arbitrary FRW model.
We are quite sure that there exists repelling gravity which is usally called dark energy. But according to the data the latter could be also a CC. We don’t know the nature of this kind of gravity. And as was pointed out by others the inflation is independent of that. CC or dark energy to exist does not require inflation.Arman777 said:But now I am also thinking where the CC came from? Will it be there even there would be no inflation?
Is there any other dark energy theories other than CC? Is it a good idea to treat the CC a kind of repelling gravity?timmdeeg said:We are quite sure that there exists repelling gravity which is usally called dark energy. But according to the data the latter could be also a CC. We don’t know the nature of this kind of gravity. And as was pointed out by others the inflation is independent of that. CC or dark energy to exist does not require inflation.
I woudn’t call CC a dark energy theory. My advise is to google DE to see the difference. The observed accelerated expansion of our universe is due to something which is sometimes called a bit sloppy “repelling gravity”. You could have look to the 2. Friedmann equation and see what happens to the sign of the second derivative of the scale factor in case ##\Lambda## dominates ##(\rho+3p)##.Arman777 said:Is there any other dark energy theories other then CC ? Is it a good idea to treat the CC a kind of repelling gravity ?.
Inflation is independent of CC, please see my previous post. What is ST?Arman777 said:Inflation cannot be caused by CC but I am not sure. If CC is there inflation happens or not then CC becomes a natural instic properity of the space-time and nothing else.
In that case CC never can be zero. Since its a properity of ST.
Arman777 said:Inflation cannot be caused by CC but I am not sure.
Arman777 said:In that case CC never can be zero. Since its a properity of ST.
timmdeeg said:Inflation is independent of CC
Arman777 said:If CC is there, inflation happens or not, then CC becomes a natural instinct property of the space-time and nothing else.
In that case, CC never can be zero. Since its a property of ST.
PeterDonis said:What are you referring to here?
timmdeeg said:I was assuming that you are discussing our universe (mentioning the flatness problem), not a arbitrary FRW model. Then if you drop the inflation which produces matter wherelse should matter density come from?
timmdeeg said:According to the inflationary theories matter is produced at the end of inflation, see Reheating. So inflation is required and affects the production of matter.
By "matter forms when the temperature drops" are you referring to the broken symmetries that confer mass to the various elementary particles, or are you thinking about something more generic?nearc said:unless I'm very confused [which is often] i thought matter forms when the temperature drops. there might also be some need for expansion or even complicated cooling/heating but ultimately once things are cool enough and there is enough room matter can form? we tie matter formation into inflation as a nice gift wrapped package, but if there were some other way that allows the universe to cool and spread out matter should still form?
bapowell said:By "matter forms when the temperature drops" are you referring to the broken symmetries that confer mass to the various elementary particles, or are you thinking about something more generic?
We don't *need* inflation to create matter, since that would be a circular argument (i.e. what created the inflaton?) The novelty of reheating is that inflation effectively erases the energy density in the inflated region, and without it we get a cold, empty universe after inflation.
Also, I'll mention that the universe cools as it expands, whether inflation happened or not.
By whom?JMz said:It has been pointed out that we are in the midst of a new BB, due to the cc.
We do currently have a reason to believe that the CC is positive. Otherwise we couldn't explain why we observe that the universe expands accelerated.JMz said:BTW, there is no a priori reason that the cc (vacuum energy density) should be positive. We do not currently know of any reason it could not have been negative, in which case the expansion would eventually reverse regardless of how low the mass density was.
Who: By Neil de Grasse Tyson, as I recall. Not that it matters: We are in a period of exponential expansion with no apparent or near-term upper limit. This is just as much as Bang as the one 14 GY ago, and just as Big.timmdeeg said:By whom?
We do currently have a reason to believe that the CC is positive. Otherwise we couldn't explain why we observe that the universe expands accelerated.
No, our universe is in a period of accelerated expansion and will approach exponential expansion in the far future asymptotically. And no, this isn't "just as much as Bang ..."JMz said:We are in a period of exponential expansion with no apparent or near-term upper limit. This is just as much as Bang as the one 14 GY ago, and just as Big.
Yes, there is "no a priori reason that the cc ... should be positive". The sign of the CC is not determined by the theory.JMz said:cc: What part of "no a priori reason that the cc ... should be positive", and "[no] reason ... it could not have been negative" wasn't clear? Our current understanding of physics does not predict a necessarily positive value, or any particular value. We believe it's positive solely because the observations say it's positive, not because of GR. Unless you are aware of theoretical analysis that is broadly accepted in a cosmological context that I am unaware of...? (Always possible.)
You are continuing to miss the "a priori". It could have been negative, based on everything we knew before we had observations. But now we know it isn't.timmdeeg said:No, our universe is in a period of accelerated expansion and will approach exponential expansion in the far future asymptotically. And no, this isn't "just as much as Bang ..."
Yes, there is "no a priori reason that the cc ... should be positive". The sign of the CC is not determined by the theory.
You mentioned in #49 "We do not currently know of any reason it could not have been negative". This is not correct. We do not currently know of any reason it (the CC) could have been negative. Perhaps you have intended to say this because in #51 you confirm "We believe it's positive solely because the observations say it's positive". The observation is the reason.
JMz said:What should bang mean, if not very rapid expansion?
JMz said:We are in the hot, dense phase of the current expansion.
JMz said:if (as Alan Guth phrases it) the earlier inflaton scalar field eventually decayed into particles, are there quantum-physics reasons we should expect that the cc, which plays the same role, will do the same? (I suspect we would need the help of a quantum field theorist to answer that one.)