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We study an extension of the Standard Model (SM) which could have two candidates for dark matter (DM) including a Dirac fermion and a vector dark matter (VDM) under a new $U(1)$ gauge group in the hidden sector. The model is classically…

High Energy Physics - Phenomenology · Physics 2024-05-14 Mojtaba Hosseini , Seyed Yaser Ayazi , Ahmad Mohamadnejad

The equation of state for a degenerate gas of fermions at zero temperature in the non-relativistic case is a polytrope, i.e. $p \sim\rho^{5/3}/m_F^{8/3}$. If dark matter is modeled by such a non-interacting fermion, this dependence in the…

High Energy Physics - Phenomenology · Physics 2025-12-04 J. Barranco , A. Bernal , D. Delepine

The standard paradigm of collisionless cold dark matter is in tension with measurements on large scales. In particular, the best fit values of the Hubble rate $H_0$ and the matter density perturbation $\sigma_8$ inferred from the cosmic…

Cosmology and Nongalactic Astrophysics · Physics 2017-08-10 Zackaria Chacko , Yanou Cui , Sungwoo Hong , Takemichi Okui , Yuhsin Tsai

We propose a gauge singlet scalar with mass around 1-100 TeV as a thermal heavy dark matter candidate along with a dilaton as a Higgs portal mediator in a dimensionless scalar extension of the Standard Model. We demonstrate analytically…

High Energy Physics - Phenomenology · Physics 2024-12-31 Parsa Ghorbani

We have conducted a revised analysis of the first-order phase transition that is associated with symmetry breaking in a classically scale-invariant model that has been extended with a new $SU(2)$ gauge group. By incorporating recent…

Cosmology and Nongalactic Astrophysics · Physics 2023-04-03 Alexandros Karam , Maciej Kierkla , Bogumiła Świeżewska

In this paper, we study a non-minimal gauged $U(1)_{L_{\mu}-L_{\tau}}$ model, where we add two complex singlet scalars, three right-handed Majorana neutrinos (RHN), and a vector-like dark fermion to the Standard Model (SM), all…

High Energy Physics - Phenomenology · Physics 2024-06-25 Sandhya Choubey , Sarif Khan , Marco Merchand , Sampsa Vihonen

We explore the possible phases of a condensed dark matter (DM) candidate taken to be in the form of a fermion with a Yukawa coupling to a scalar particle, at zero temperature but at finite density. This theory essentially depends on only…

High Energy Physics - Phenomenology · Physics 2022-12-21 Raghuveer Garani , Michel H. G. Tytgat , Jérôme Vandecasteele

We propose a new physics model which has a cold dark matter candidate and can explain the $b \to s \mu^+\mu^-$ anomaly at the same time. Our model includes a scalar quark $\widetilde{q}$ and a scalar lepton $\widetilde{\ell}$ which are…

High Energy Physics - Phenomenology · Physics 2018-11-12 Seungwon Baek , Chaehyun Yu

We propose a framework to account for neutrino masses at the two-loop level. This mechanism introduces new scalars and Majorana fermions to the Standard Model. It is assumed the existence of a global $\mathrm{U(1)\times \mathcal{Z}_2}$…

High Energy Physics - Phenomenology · Physics 2024-05-08 Cesar Bonilla , A. E. Cárcamo Hernández , João Gonçalves , Vishnudath K. N. , António P. Morais , Roman Pasechnik

We examine the finite-temperature deconfinement phase transition of (2+1)-dimensional SU(5) Yang-Mills theory via non-perturbative lattice simulations. Unsurprisingly, we find that the transition is of first order, however it appears to be…

High Energy Physics - Lattice · Physics 2009-11-11 Kieran Holland

We consider the possibility that dark matter is stabilised by a discrete $Z_2$ symmetry which arises from a subgroup of a $U(1)'$ gauge symmetry, spontaneously broken by integer charged scalars, and under which the chiral quarks and leptons…

High Energy Physics - Phenomenology · Physics 2022-01-05 Bowen Fu , Stephen F. King

We review an approach, developed over the past few years, to describe hadronic matter at finite density and temperature, whose underlying theoretical framework is the Skyrme model, an effective low energy theory rooted in large $N_c$ QCD.…

High Energy Physics - Phenomenology · Physics 2016-12-21 Byung-Yoon Park , Vicente Vento

We consider the possibility of a gravitational wave signal in an asymmetric dark matter model. In this model a generative sector produces both the baryon asymmetry and a dark matter asymmetry in a strong first-order phase transtion. Bubble…

High Energy Physics - Phenomenology · Physics 2017-11-27 Iason Baldes

This model assumes the baryons, radiation, three families of massless neutrinos, and cold dark matter were mutually thermalized before the baryon number was fixed, primeval curvature fluctuations were subdominant, and homogeneity was broken…

Astrophysics · Physics 2010-12-09 Wayne Hu , P. J. E. Peebles

We describe a unique gravitational wave signature for a class of models with a vast hierarchy between the symmetry breaking scales. The unusual shape of the signal is a result of the overlapping contributions to the stochastic gravitational…

High Energy Physics - Phenomenology · Physics 2021-01-04 Bartosz Fornal , Barmak Shams Es Haghi

We present a comprehensive discussion of the Stodolsky effect for dark matter (DM), and discuss two techniques to measure the effect and constrain the DM parameter space. The Stodolsky effect is the spin-dependent shift in the energy of a…

High Energy Physics - Phenomenology · Physics 2024-10-29 Guillaume Rostagni , Jack D. Shergold

We propose a $U(1)_{B-L}$ gauge extension to the SM, in which the dark sector is stabilized through a matter parity symmetry preserved after spontaneous symmetry breaking. The fermion spectrum includes three neutral right-handed fields with…

High Energy Physics - Phenomenology · Physics 2025-08-14 Yadir Garnica , América Morales , Carlos A. Vaquera-Araujo

This paper studies gravitational waves in a dark matter model composed of three types of particles with distinct spins, along with a scalar field $\phi$ that mediates interactions between Standard Model particles and dark matter. It…

High Energy Physics - Phenomenology · Physics 2025-11-11 Mohammad Hossein Rahimi Abkenar , Ahmad Mohamadnejad , Reza Sepahvand

Ordinary baryonic particles (such as protons and neutrons) account for only one-sixth of the total matter in the Universe. The remainder is a mysterious "dark matter" component, which does not interact via electromagnetism and thus neither…

It has been known that under-abundant dark matter density of an inert doublet can be replenished by an additional dark matter component, say, a fermion. We find that such a scenario can lead to the formation of stable Fermi-balls through…

High Energy Physics - Phenomenology · Physics 2025-01-03 Nabarun Chakrabarty , Indrani Chakraborty , Himadri Roy