2015
DOI: 10.1103/physrevd.91.043511
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Light propagation in a homogeneous and anisotropic universe

Abstract: This article proposes a comprehensive analysis of light propagation in an anisotropic and spatially homogeneous Bianchi I universe. After recalling that null geodesics are easily determined in such a spacetime, we derive the expressions of the redshift and direction drifts of light sources; by solving analytically the Sachs equation, we then obtain an explicit expression of the Jacobi matrix describing the propagation of narrow light beams. As a by-product, we recover the old formula by Saunders for the angula… Show more

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Cited by 50 publications
(62 citation statements)
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References 68 publications
(105 reference statements)
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“…The equality between those two expressions for D A is not to be proven, as our GLC expression of the Jacobi matrix agrees with the one of ref. [45], which itself agrees with Saunders' formula (4.50).…”
Section: Angular Diameter Distancesupporting
confidence: 88%
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“…The equality between those two expressions for D A is not to be proven, as our GLC expression of the Jacobi matrix agrees with the one of ref. [45], which itself agrees with Saunders' formula (4.50).…”
Section: Angular Diameter Distancesupporting
confidence: 88%
“…2.4, we finally get the following semi-explicit expressions for the GLC quantities of the Bianchi I spacetime: 2), we conclude that the redshift in a Bianchi I universe reads 30) in agreement with ref. [45]. Introducing the inverse of [I i a ], denoted [I a i ] and defined by the relations 31) it is easy to show that the photoshift vector reads…”
Section: Glc Form Of the Bianchi I Metricmentioning
confidence: 99%
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