TY - JOUR
T1 - Preliminary stability analysis of a Friedman-Lemaitre-Robertson-Walker universe
AU - Yahalom, Asher
N1 - Publisher Copyright:
© Published under licence by IOP Publishing Ltd.
PY - 2017/6/1
Y1 - 2017/6/1
N2 - It is stated in many text books that the any metric appearing in general relativity should be locally Lorentzian i.e. of the type gμν = diag (1, -1, -1, -1) this is usually presented as an independent axiom of the theory, which cannot be deduced from other assumptions. The meaning of this assertion is that a specific coordinate (the temporal coordinate) is given a unique significance with respect to the other spatial coordinates. It was shown that the above assertion is a consequence of requirement that the metric of empty space should be linearly stable and need not be assumed. In this work we remove the empty space assumption and investigate the consequences of spatially uniform matter on the stability of a locally Lorentzian space-time that is the Friedman-Lemaitre-Robertson-Walker space-time. It is shown that a partial stability analysis restricts the type of allowable solutions to the Friedman-Lemaitre-Robertson-Walker space-time. In particular it is shown that an open section universe is stable while an Euclidean and a closed section universes are not in accordance with observation. It will be suggested that in the presence of matter an upper limit scale to the size of a locally Lorentzian universe exists which incidentally is about the size of the observable universe.
AB - It is stated in many text books that the any metric appearing in general relativity should be locally Lorentzian i.e. of the type gμν = diag (1, -1, -1, -1) this is usually presented as an independent axiom of the theory, which cannot be deduced from other assumptions. The meaning of this assertion is that a specific coordinate (the temporal coordinate) is given a unique significance with respect to the other spatial coordinates. It was shown that the above assertion is a consequence of requirement that the metric of empty space should be linearly stable and need not be assumed. In this work we remove the empty space assumption and investigate the consequences of spatially uniform matter on the stability of a locally Lorentzian space-time that is the Friedman-Lemaitre-Robertson-Walker space-time. It is shown that a partial stability analysis restricts the type of allowable solutions to the Friedman-Lemaitre-Robertson-Walker space-time. In particular it is shown that an open section universe is stable while an Euclidean and a closed section universes are not in accordance with observation. It will be suggested that in the presence of matter an upper limit scale to the size of a locally Lorentzian universe exists which incidentally is about the size of the observable universe.
UR - http://www.scopus.com/inward/record.url?scp=85021452271&partnerID=8YFLogxK
U2 - 10.1088/1742-6596/845/1/012009
DO - 10.1088/1742-6596/845/1/012009
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AN - SCOPUS:85021452271
SN - 1742-6588
VL - 845
JO - Journal of Physics: Conference Series
JF - Journal of Physics: Conference Series
IS - 1
M1 - 012009
T2 - 10th Biennial Conference on Classical and Quantum Relativistic Dynamics of Particles and Fields, IARD 2016
Y2 - 6 June 2016 through 9 June 2016
ER -