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Discovery of a Supernova Explosion at Half the Age of the Universe and its Cosmological Implications

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TLDR
In this paper, the authors reported the discovery of a Type Ia supernova (SN 1997ap) at z = 0.83 at the Keck II 10m telescope.
Abstract
The ultimate fate of the universe, infinite expansion or a big crunch, can be determined by measuring the redshifts, apparent brightnesses, and intrinsic luminosities of very distant supernovae. Recent developments have provided tools that make such a program practicable: (1) Studies of relatively nearby Type Ia supernovae (SNe Ia) have shown that their intrinsic luminosities can be accurately determined; (2) New research techniques have made it possible to schedule the discovery and follow-up observations of distant supernovae, producing well over 50 very distant (z = 0.3 -- 0.7) SNe Ia to date. These distant supernovae provide a record of changes in the expansion rate over the past several billion years. By making precise measurements of supernovae at still greater distances, and thus extending this expansion history back far enough in time, we can distinguish the slowing caused by the gravitational attraction of the universe's mass density Omega_M from the effect of a possibly inflationary pressure caused by a cosmological constant Lambda. We report here the first such measurements, with our discovery of a Type Ia supernova (SN 1997ap) at z = 0.83. Measurements at the Keck II 10-m telescope make this the most distant spectroscopically confirmed supernova. Over two months of photometry of SN 1997ap with the Hubble Space Telescope and ground-based telescopes, when combined with previous measurements of nearer SNe Ia, suggests that we may live in a low mass-density universe. Further supernovae at comparable distances are currently scheduled for ground and space-based observations.

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Citations
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Journal ArticleDOI

Constraints on modified Chaplygin gas from large scale structure

TL;DR: In this article, the authors study cosmological models with modified Chaplygin gas (MCG) to determine observational constraints on its EoS parameters using the background and the growth tests data.
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Dynamical analysis for a scalar–tensor model with kinetic and nonminimal couplings

TL;DR: In this paper, the authors studied the autonomous system for a scalar-tensor model of dark energy with non-minimal coupling to curvature and nonminimal kinetic coupling to the Einstein tensor.
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A modified holographic Ricci dark energy model in f ( R , T ) theory of gravity

TL;DR: In this article, the Bianchi type-V cosmological model in the presence of modified Holographic Ricci Dark Energy was studied, where the relation between pressure and energy density was used to compute dynamical parameters.
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Transitioning Universe with hybrid scalar field in Bianchi I space-time

TL;DR: In this paper, the authors investigated a Bianchi type I transitioning universe in Brans-Dicke theory, where the authors assumed scalar field as π = π 0, π 1, ρ 2, π 3, φ 4, ρ 5, β 6, β 7, β 8, β 9, β 10, β 11, β 12, β 13, β 14, β 15, β 16, β 17, β 18, β 19, β 20, β 21, β 22, β 23, β 24, β
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Can observational growth rate data favour the clustering dark energy models

TL;DR: In this paper, the authors investigate the evolution of the cosmic growth index in clustering dark energy (CDE) scenarios on sub-horizon scales and show that the growth index strongly depends on the equation-of-state (EoS) parameter and on the clustering properties of the dark energy component.
References
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Journal ArticleDOI

The Absolute Magnitudes of Type IA Supernovae

TL;DR: In this paper, absolute magnitudes in the B, V, and I bands were derived for nine well-observed Type Ia supernovae, using host galaxy distances estimated via the surface brightness fluctuations or Tully-Fisher methods.
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The Cosmological constant

TL;DR: In this article, the cosmological constant problem is examined in the context of both astronomy and physics with reference to expansion dynamics, the age of the universe, distance measures, comoving density of objects, growth of linear perturbations, and gravitational lens probabilities.
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The photometric performance and calibration of wfpc2

TL;DR: In this paper, the photometric performance and calibration of the Wide Field Planetary Camera 2 (WFPC2) on the Hubble Space Telesopce (HST) were discussed, with particular attention given to charge transfer efficiency (CTE) effects, contamination effects in the ultraviolet (UV), and flat field accuracy and normalization.
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The Absolute Luminosities of the Calan/Tololo Type IA Supernovae

TL;DR: In this article, the absolute luminosities of 29 SNe Ia in the Calan/Tololo survey were examined and a relation between the peak luminosity of the SNe and the decline rate as measured by the light curve was found.
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