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Small scale structure of spacetime in presence of a minimal length
Published in Institute of Physics Publishing
2015
Volume: 600
   
Issue: 1
Abstract
I present some recent results which yields some specific consequences of having a minimal spacetime length L0 while maintaining Lorentz covariance. In particular: (i) the resultant description of geometry must be in terms of a non-local bi-tensor qab (P,p, L20) instead of the conventional metric tensor gab(p), (ii) qab and gab are related disformally through the Synge world function, (iii) the resultant non-local d'Alembartian yields Green's functions with a natural covariant short distance cut-off, (iv) the Ricci bi-scalar R(P,p, L20) corresponding to qab yields a local scalar S(P, L20) = R(P, P, L20) in the coincidence such that lim L → 0 S(P;L) ∝ Rabtatb where ta are arbitrary normalized vectors representing gauge degrees of freedom at each spacetime event; this limit turns out to be independent of the precise details of the short distance modification, (v) the Gibbons-Hawking-York surface term for qab yields a residual entropy for each spacetimeevent © Published under licence by IOP Publishing Ltd.
About the journal
JournalJournal of Physics: Conference Series
PublisherInstitute of Physics Publishing
ISSN17426588
Open AccessNo
Concepts (11)
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    Degrees of freedom (mechanics)
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    TENSORS
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    Covariant
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    LORENTZ COVARIANCES
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    METRIC TENSOR
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    MINIMAL LENGTHS
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    Nonlocal
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    RESIDUAL ENTROPY
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    SMALL-SCALE STRUCTURES
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    SPACETIME
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    Relativity