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Titlebook: Beyond ΛCDM; Exploring Alternativ Sownak Bose Book 2018 Springer Nature Switzerland AG 2018 Dark Matter.Dark Energy.Modified Gravity.Steril

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发表于 2025-3-21 19:52:53 | 显示全部楼层 |阅读模式
期刊全称Beyond ΛCDM
期刊简称Exploring Alternativ
影响因子2023Sownak Bose
视频video
发行地址Nominated as an outstanding PhD thesis by the University of Durham, England.Employs state-of-the-art, high-resolution cosmological simulations.Confronts the predictions of theoretical models with obse
学科分类Springer Theses
图书封面Titlebook: Beyond ΛCDM; Exploring Alternativ Sownak Bose Book 2018 Springer Nature Switzerland AG 2018 Dark Matter.Dark Energy.Modified Gravity.Steril
影响因子This book employs computer simulations of ‘artificial’ Universes to investigate the properties of two popular alternatives to the standard candidates for dark matter (DM) and dark energy (DE). It confronts the predictions of theoretical models with observations using a sophisticated semi-analytic model of galaxy formation. Understanding the nature of dark matter (DM) and dark energy (DE) are two of the most central problems in modern cosmology. While their important role in the evolution of the Universe has been well established—namely, that DM serves as the building blocks of galaxies, and that DE accelerates the expansion of the Universe—their true nature remains elusive. In the first half, the authors consider ‘sterile neutrino’ DM, motivated by recent claims that these particles may have finally been detected. Using sophisticated models of galaxy formation, the authors find that future observations of the high redshift Universe and faint dwarf galaxies in the Local Group can placestrong constraints on the sterile neutrino scenario. In the second half, the authors propose and test novel numerical algorithms for simulating Universes with a ‘modified’ theory of gravity, as an alte
Pindex Book 2018
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Substructure and Galaxy Formation in Warm Dark Matter Simulationset al. 2000, Bode et al. 2001, Viel et al. 2005, Knebe et al. 2008, Schneider et al. 2012, Lovell et al. 2012, Macció et al. 2013, Lovell et al. 2014, Reed et al. 2015, Colín et al. 2015, Yang et al. 2015, Bose et al. 2016, Horiuchi et al. 2016). In this chapter we use the . (.) high resolution .-bo
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Reionisation in Sterile Neutrino Cosmologiesicles are kinematically energetic at early times and thus free stream out of small-scale primordial perturbations, inducing a cut-off in the power spectrum of density fluctuations. On large scales unaffected by the free streaming cut-off, structure formation is very similar in CDM and sterile neutri
发表于 2025-3-22 11:40:47 | 显示全部楼层
Testing the Quasi-static Approximation in f(R) Gravity Simulations of the Universe. Einstein’s theory of General Relat6ivity (GR)has been the underlying gravity theory in the standard cosmological model of .CDM, the dark energy (.) and (cold) dark matter (CDM) components of which remain unresolved challenges to cosmologists.
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Conclusions and Future Workl is able to successfully fit and predict a vast range of phenomena in the Universe, such as the temperature fluctuations observed in the CMB, and the large-scale distribution of galaxies. The continuous development of sophisticated numerical and semi-analytic techniques have facilitated tests of th
发表于 2025-3-22 22:05:50 | 显示全部楼层
2190-5053 ns.Confronts the predictions of theoretical models with obseThis book employs computer simulations of ‘artificial’ Universes to investigate the properties of two popular alternatives to the standard candidates for dark matter (DM) and dark energy (DE). It confronts the predictions of theoretical mod
发表于 2025-3-23 02:34:50 | 显示全部楼层
False-Name-Proofness in Social Networks Reed et al. 2015, Colín et al. 2015, Yang et al. 2015, Bose et al. 2016, Horiuchi et al. 2016). In this chapter we use the . (.) high resolution .-body simulation to investigate the properties of subhaloes in a WDM model.
发表于 2025-3-23 06:19:06 | 显示全部楼层
Substructure and Galaxy Formation in Warm Dark Matter Simulations Reed et al. 2015, Colín et al. 2015, Yang et al. 2015, Bose et al. 2016, Horiuchi et al. 2016). In this chapter we use the . (.) high resolution .-body simulation to investigate the properties of subhaloes in a WDM model.
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