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We study the feebly interacting massive particle dark matter whose production processes are significantly affected by the phase evolution and the complicated thermal corrections to the vector boson. We calculate the freeze-in processes to…

高能物理 - 唯象学 · 物理学 2022-09-14 Ligong Bian , Yi-Lei Tang , Ruiyu Zhou

We investigate dark matter (DM) production in an early matter dominated era where a heavy long-lived particle decays to radiation and DM. In addition to DM annihilation into and thermal DM production from radiation, we include direct DM…

高能物理 - 唯象学 · 物理学 2018-03-15 Manuel Drees , Fazlollah Hajkarim

This project is aimed at studying the first-order phase transitions, that is presumed to have ensued in the early universe, and its consequences on the primordial gravitational waves. The effects of bubble nucleation, growth, and…

广义相对论与量子宇宙学 · 物理学 2026-03-12 Yashmitha Kumaran

The role of the dilaton field and its coupling to matter may result to a dilution of Dark Matter (DM) relic densities. This is to be contrasted with quintessence scenarios in which relic densities are augmented, due to modification of the…

高能物理 - 唯象学 · 物理学 2011-06-06 A. B. Lahanas

Hawking evaporation of primordial black holes (PBH) with masses ranging from $\sim 10^{-1}$ to $\sim 10^9$ g can generate the whole observed dark matter (DM) relic density. However, a second DM production mechanism, like freeze-out or…

宇宙学与河外天体物理 · 物理学 2021-03-17 Nicolás Bernal , Óscar Zapata

In this work, we investigate the effects of first-order phase transitions on the singlet fermionic dark matter in the scotogenic model. It is known that this dark matter candidate tends to conflict with the relevant constraints such as the…

高能物理 - 唯象学 · 物理学 2022-11-17 Hiroto Shibuya , Takashi Toma

In this article, we show that in the usual type-I seesaw framework, augmented solely by a neutrino portal interaction, the dark matter (DM) relic density can be created through freeze-in in a manner fully determined by the seesaw…

高能物理 - 唯象学 · 物理学 2021-10-26 Rupert Coy , Aritra Gupta , Thomas Hambye

We consider the possibility that along the thermal history of the Universe, dark matter (DM) would have been created from Standard Model particles, either through a kinetic mixing portal to an extra U(1) gauge field, or through the Higgs…

高能物理 - 唯象学 · 物理学 2015-06-03 Xiaoyong Chu , Thomas Hambye , Michel H. G. Tytgat

We propose a novel dark matter (DM) scenario based on a first-order phase transition in the early universe. If dark fermions acquire a huge mass gap between true and false vacua, they can barely penetrate into the new phase. Instead, they…

高能物理 - 唯象学 · 物理学 2020-10-28 Jeong-Pyong Hong , Sunghoon Jung , Ke-Pan Xie

The evaporation of primordial black holes (PBH) with masses ranging from $\sim 10^{-1}$ to $\sim 10^9$ g could have generated the whole observed dark matter (DM) relic density. It is typically assumed that after being produced, its…

高能物理 - 唯象学 · 物理学 2021-03-17 Nicolás Bernal , Óscar Zapata

In this talk, I explained how the observed dark matter (DM) relic abundance can be accounted for in models composed of three sectors (the DM, the Standard Model (SM) and a light mediator) connected to each other. This scenario is explored…

高能物理 - 唯象学 · 物理学 2021-05-18 Laurent Vanderheyden

Rotating primordial black holes (PBHs) in the early universe can emit particles through superradiance, a process particularly efficient when the particle's Compton wavelength is comparable to the PBH's gravitational radius. Superradiance…

宇宙学与河外天体物理 · 物理学 2025-10-01 Nayun Jia , Shou-Shan Bao , Chen Zhang , Hong Zhang , Xin Zhang

The cosmological abundance of dark matter can be significantly influenced by the temperature dependence of particle masses and vacuum expectation values. We illustrate this point in three simple freeze-in models. The first one, which we…

高能物理 - 唯象学 · 物理学 2019-07-08 Michael J. Baker , Moritz Breitbach , Joachim Kopp , Lukas Mittnacht

If the early universe is dominated by an energy density which evolves other than radiation-like the normal Hubble-temperature relation $H\propto T^2$ is broken and dark matter relic density calculations in this era can be significantly…

高能物理 - 唯象学 · 物理学 2025-11-06 Carlos Maldonado , James Unwin

We have obtained a generalization of the hydrodynamic theory of vacuum in the context of general relativity. While retaining the Lagrangian character of general relativity, the new theory provides a natural alternative to the view that the…

广义相对论与量子宇宙学 · 物理学 2011-01-27 S. G. Chefranov , E. A. Novikov

Most dark matter (DM) models set the DM relic density by some interaction with Standard Model particles. Such models generally assume the existence of Standard Model particles early on, with the DM relic density a later consequence of those…

高能物理 - 唯象学 · 物理学 2016-03-23 Lisa Randall , Jakub Scholtz , James Unwin

We perform a comprehensive study of models of dark matter (DM) in a Universe with a non-thermal cosmological history, i.e with a phase of pressure-less matter domination before the onset of big-bang nucleosynethesis (BBN). Such cosmological…

高能物理 - 唯象学 · 物理学 2016-04-06 Gordon L. Kane , Piyush Kumar , Brent D. Nelson , Bob Zheng

We outline a new production mechanism for dark matter that we dub "recycling": dark sector particles are kinematically trapped in the false vacuum during a dark phase transition; the false pockets collapse into primordial black holes…

高能物理 - 唯象学 · 物理学 2024-03-22 Thomas C. Gehrman , Barmak Shams Es Haghi , Kuver Sinha , Tao Xu

Despite the continuous evolution on the performance of refractory ceramic products, monolithic materials still require special attention during their processing steps as various phase transformations may take place during the curing, drying…

材料科学 · 物理学 2022-01-14 A. P. Luz , M. H. Moreira , M. A. L. Braulio , C. Parr , V. C. Pandolfelli

We study the strength of a first-order electroweak phase transition in the Inert Doublet Model (IDM), where particle dark matter (DM) is comprised of the lightest neutral inert Higgs boson. We improve over previous studies in the…

高能物理 - 唯象学 · 物理学 2015-07-22 Nikita Blinov , Stefano Profumo , Tim Stefaniak