Probing the Dark Energy with Quasar Clustering

We show through Monte Carlo simulations that the Alcock-Paczyński test, as applied to quasar clustering, is a powerful tool to probe the cosmological density and equation of state parameters Omega(m0), Omega(x0), and w. By taking into account the effect of peculiar velocities upon the correlation fu...

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Veröffentlicht in:Physical review letters 2002-03, Vol.88 (9), p.091302-091302, Article 091302
Hauptverfasser: Calvão, M O, de Mello Neto, J R T, Waga, I
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Sprache:eng
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Zusammenfassung:We show through Monte Carlo simulations that the Alcock-Paczyński test, as applied to quasar clustering, is a powerful tool to probe the cosmological density and equation of state parameters Omega(m0), Omega(x0), and w. By taking into account the effect of peculiar velocities upon the correlation function we obtain for the Two-Degree Field QSO Redshift Survey the predicted confidence contours for the cosmological constant (w = -1) and spatially flat (Omega(m0)+Omega(x0) = 1) cases. For w = -1, the test is especially sensitive to the difference Omega(m0)-Omega(Lambda0), thus being ideal to combine with cosmic microwave background results. For the flat case, it is competitive with future supernova and galaxy number count tests, besides being complementary to them.
ISSN:1079-7114
0031-9007
1079-7114
DOI:10.1103/PhysRevLett.88.091302