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Gravitational Signatures of Wave Dark Matter

Gravitational Signatures of Wave Dark Matter
Author: Delbert R. Fite
Publisher: Wajid Publishers
Total Pages: 0
Release: 2023-08-27
Genre: Science
ISBN: 9789795262176

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Over the course of almost a century, the evidence for the existence of dark matter (DM) has continued to grow. This evidence is supported by observations at various astronomical scales, ranging from galaxy-sized systems [1-3] to cluster [4-8] and cosmological scales [9,10]. Alternative theories to dark matter, such as modified gravity theories [11,12], have been proposed and studied, but they fail to explain all astronomical observations without invoking dark matter


Signatures of Dark Matter

Signatures of Dark Matter
Author: Edward Anthony Baltz
Publisher:
Total Pages: 490
Release: 2000
Genre:
ISBN:

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Asymmetric Dark Matter

Asymmetric Dark Matter
Author: Kathryn M. Zurek
Publisher:
Total Pages: 32
Release: 2014
Genre:
ISBN:

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Placing Limits on Experimental Signatures of Dark Matter Model Predictions

Placing Limits on Experimental Signatures of Dark Matter Model Predictions
Author: Arjun Sharma
Publisher:
Total Pages: 44
Release: 2018
Genre:
ISBN: 9780438370142

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In this work, we consider two different models of dark matter and set limits on results of experiments. One is a dynamic dark matter scenario where we put limits on parameters observable by experiments DAMA and XMASS through nuclear recoil of detector atoms (direct detection). The second is a case of dark matter annihilation into positrons and electrons and the signal this would produce on measured values of positron flux and ratio of electron to positron (indirect detection). The values of these quantities as measured by FERMI and PAMELA experiments are observed and an explanation using a dark matter annihilation is presented vs astrophysical sources of particles.


Probing Cosmic Dark Matter and Dark Energy with Weak Gravitational Lensing Statistics

Probing Cosmic Dark Matter and Dark Energy with Weak Gravitational Lensing Statistics
Author: Masato Shirasaki
Publisher: Springer
Total Pages: 144
Release: 2015-11-18
Genre: Science
ISBN: 9812877967

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In this book the applicability and the utility of two statistical approaches for understanding dark energy and dark matter with gravitational lensing measurement are introduced. For cosmological constraints on the nature of dark energy, morphological statistics called Minkowski functionals (MFs) to extract the non-Gaussian information of gravitational lensing are studied. Measuring lensing MFs from the Canada–France–Hawaii Telescope Lensing survey (CFHTLenS), the author clearly shows that MFs can be powerful statistics beyond the conventional approach with the two-point correlation function. Combined with the two-point correlation function, MFs can constrain the equation of state of dark energy with a precision level of approximately 3–4 % in upcoming surveys with sky coverage of 20,000 square degrees. On the topic of dark matter, the author studied the cross-correlation of gravitational lensing and the extragalactic gamma-ray background (EGB). Dark matter annihilation is among the potential contributors to the EGB. The cross-correlation is a powerful probe of signatures of dark matter annihilation, because both cosmic shear and gamma-ray emission originate directly from the same dark matter distribution in the universe. The first measurement of the cross-correlation using a real data set obtained from CFHTLenS and the Fermi Large Area Telescope was performed. Comparing the result with theoretical predictions, an independent constraint was placed on dark matter annihilation. Future lensing surveys will be useful to constrain on the canonical value of annihilation cross section for a wide range of mass of dark matter annihilation. Future lensing surveys will be useful to constrain on the canonical value of annihilation cross section for a wide range of mass of dark matter.


Particle Dark Matter

Particle Dark Matter
Author: Gianfranco Bertone
Publisher: Cambridge University Press
Total Pages: 763
Release: 2010-01-07
Genre: Science
ISBN: 0521763681

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Describes the dark matter problem in particle physics, astrophysics and cosmology for graduate students and researchers.