4.7 Article

Cosmological simulations of two-component wave dark matter

Related references

Note: Only part of the references are listed.
Article Astronomy & Astrophysics

Spectroscopic confirmation of four metal-poor galaxies at z=10.3-13.2

Emma Curtis-Lake et al.

Summary: As part of the JWST Advanced Deep Extragalactic Survey (JADES), NIRSpec has confirmed spectroscopically four young and metal-poor galaxies at redshift 10.3-13.2, from an early epoch of galaxy formation. Spectroscopic confirmation and analysis of four galaxies unambiguously detected at redshift 10.3 <= z <= 13.2 demonstrate the rapid emergence of the first generations of galaxies at cosmic dawn.

NATURE ASTRONOMY (2023)

Article Astronomy & Astrophysics

Multifield ultralight dark matter

Mateja Gosenca et al.

Summary: Ultralight dark matter (ULDM) is usually assumed to be a single scalar field, but we explore the possibility that it consists of N light scalar fields with only gravitational interactions, which is more consistent with the underlying particle physics motivations for these scenarios. In multifield simulations, we find that the amplitude of the total density fluctuations inside a ULDM halo decreases as 1/sqrt(N) and the fields do not significantly correlate over cosmological timescales. Smoother halos heat stellar orbits less efficiently, weakening the observational constraints on the field mass.

PHYSICAL REVIEW D (2023)

Article Astronomy & Astrophysics

Solitons in the dark: First approach to non-linear structure formation with fuzzy dark matter

Mattia Mina et al.

Summary: In this study, we present the results of a cosmological simulation using the new code SCALAR to study the formation and evolution of fuzzy dark matter. Despite limitations on large-scale resolution, the study provides detailed analysis of the formation and evolution of central solitonic cores. The results indicate a shallower halo mass function in the low-mass end due to the quantum nature of the scalar field.

ASTRONOMY & ASTROPHYSICS (2022)

Article Astronomy & Astrophysics

The diversity of core-halo structure in the fuzzy dark matter model

Hei Yin Jowett Chan et al.

Summary: In the fuzzy dark matter model, there is a significant dispersion in the core-halo mass relation, increasing with halo mass. A new empirical equation for the core-halo mass relation is provided, with uncertainties encompassing previously found relations. Any observational constraints on particle mass using a tight one-to-one core-halo mass relation should consider an additional uncertainty of about 50%.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2022)

Review Multidisciplinary Sciences

Axion dark matter: What is it and why now?

Francesca Chadha-Day et al.

Summary: This article reviews the development of the axion as a candidate particle for dark matter. It describes the historical roots of the axion in the Standard Model of particle physics and the problem of charge-parity invariance of the strong nuclear force. It discusses the production of the axion as a dark matter candidate and its interactions with ordinary matter.

SCIENCE ADVANCES (2022)

Article Physics, Particles & Fields

Fuzzy Dark Matter candidates from string theory

Michele Cicoli et al.

Summary: This paper reassesses the possibility of generating fuzzy dark matter candidates in string theory through a detailed study of the masses and decay constants of different axion fields. It is found that obtaining a significant contribution to the observed dark matter abundance without tuning the axion initial misalignment angle is not a generic feature of 4D string models. The study identifies C-4-axions, C-2-axions, and thraxions as the best candidates to realize fuzzy dark matter in string theory.

JOURNAL OF HIGH ENERGY PHYSICS (2022)

Review Astronomy & Astrophysics

Cosmology intertwined: A review of the particle physics, astrophysics, and cosmology associated with the cosmological tensions and anomalies

Elcio Abdalla et al.

Summary: The paper discusses the limitations of the standard Lambda Cold Dark Matter (Lambda CDM) cosmological model and proposes new physics models to alleviate the tensions in various cosmological measurements. The authors emphasize the importance of considering a wide range of data and discuss the significance of upcoming experiments and space missions in addressing open questions in cosmology.

JOURNAL OF HIGH ENERGY ASTROPHYSICS (2022)

Article Astronomy & Astrophysics

Small-scale structure in vector dark matter

Mustafa A. Amin et al.

Summary: By simulating the small-scale structure of vector dark matter (VDM) and scalar dark matter (SDM), we found that the amount of wave interference, core-to-halo mass ratio, spin of the core, and shape of the central regions of dark matter halos can distinguish VDM and SDM. VDM has less wave interference, lower core-to-halo mass ratio, smoother transition of the central soliton, and more diffuse granules in the halo compared to SDM. This research is significant for distinguishing dark matter types through astrophysical and terrestrial observations.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2022)

Article Astronomy & Astrophysics

Dark photon stars: formation and role as dark matter substructure

Marco Gorghetto et al.

Summary: This study shows that vector bosons with mass produced during inflation may contribute to the observed dark matter density. The dark matter in this scenario has rich substructure, with quantum coherent solitons and fuzzy dark matter halos. These solitons have higher densities than the background dark matter and may survive until the present day. The presence of this substructure opens up new possibilities for the direct and indirect detection of dark matter.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2022)

Review Astronomy & Astrophysics

Baryonic solutions and challenges for cosmological models of dwarf galaxies

Laura Sales et al.

Summary: This Review discusses the challenges that galaxies and their dark-matter haloes pose to the dark energy plus cold dark matter (CDM) cosmological model, particularly in relation to dwarf galaxies, and the insights provided by recent cosmological numerical simulations. The discrepancies between observations and CDM predictions for low-mass dark-matter haloes are partially expected due to the lack of a model for galaxy formation. Improved galaxy-formation models and numerical accuracy are needed to resolve the remaining tensions and validate any actual problems with the CDM model.

NATURE ASTRONOMY (2022)

Article Astronomy & Astrophysics

Cosmological constraints on the multiscalar field dark matter model

L. O. Tellez-Tovar et al.

Summary: The paper provides cosmological constraints on the multiscalar field dark matter model and presents the results for different combinations of potentials. Through analyzing multiple data sources, constraints on the sampling parameters for both single-field and double-field cases are obtained.

PHYSICAL REVIEW D (2022)

Article Astronomy & Astrophysics

Excluding fuzzy dark matter with sizes and stellar kinematics of ultrafaint dwarf galaxies

Neal Dalal et al.

Summary: We use observations of ultrafaint dwarf galaxies to constrain the particle mass of ultralight dark matter. Based on simulations and measurements of UFDs, we derive a lower limit on the dark matter particle mass, which can potentially be strengthened in the future.

PHYSICAL REVIEW D (2022)

Article Astronomy & Astrophysics

Testing multiflavored ultralight dark matter models with SPARC

Lauren Street et al.

Summary: By comparing maximum likelihood estimates for different cold dark matter (CDM) models, this study finds that the Burkert and Einasto models perform better than other commonly used CDM models. For ultralight dark matter (ULDM) models, most galaxies prefer particle masses in the range of 10-23 eV < m < 10-20 eV. In double flavor models, galaxies tend to prefer approximately equal particle masses.

PHYSICAL REVIEW D (2022)

Article Astronomy & Astrophysics

Galactic rotation curves versus ultralight dark matter: A systematic comparison with SPARC data

Nitsan Bar et al.

Summary: This study presents observational constraints on the imprint of ultralight dark matter (ULDM) soliton cores in rotation-dominated galaxies. It disfavors the soliton-host halo relation found in numerical simulations in a broad range of ULDM particle masses. Combining these constraints with theoretical arguments, the study argues against ULDM comprising 100% of the cosmological dark matter in a specific mass range. The constraints explore the ULDM fraction down to less than 0.3 of the total dark matter.

PHYSICAL REVIEW D (2022)

Article Astronomy & Astrophysics

Resonant nonlinear pairs in the axiverse and their late-time direct and astrophysical signatures

David Cyncynates et al.

Summary: This paper investigates the resonant energy transfer phenomenon between axions in a string axiverse, showing that nonlinearities in the axion potential result in energy transfer from axions with larger decay constants to those with smaller decay constants. This resonance has important implications for the direct detection prospects and small-scale structure of axions.

PHYSICAL REVIEW D (2022)

Article Astronomy & Astrophysics

Scaling relations of fuzzy dark matter haloes - I. Individual systems in their cosmological environment

Matteo Nori et al.

Summary: By utilizing the N-body code AX-GADGET, the study investigates the evolution of FDM structures in a cosmological framework, revealing the significant impact of the dynamical state, morphology, and merger history of individual systems on the scaling relations between solitonic cores and host haloes properties.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2021)

Article Astronomy & Astrophysics

Novel constraints on the particle nature of dark matter from stellar streams

Nilanjan Banik et al.

Summary: This paper provides constraints on alternative dark matter scenarios based on tidal streams analysis, deriving lower limits for warm dark matter and ultra-light dark matter masses using data from streams and dwarf satellite counts.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2021)

Article Astronomy & Astrophysics

Two-scalar Bose-Einstein condensates: from stars to galaxies

Huai-Ke Guo et al.

Summary: The study focuses on the properties of Bose-Einstein Condensate (BEC) systems consisting of two scalars at stellar and galactic scales. It shows that a repulsive interaction between two scalars at stellar scales can stabilize the BEC system, leading to potential gravitational wave signals. At galactic scales, two-scalar BECs can address scaling problems.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2021)

Article Physics, Multidisciplinary

Constraints on Dark Matter Properties from Observations of Milky Way Satellite Galaxies

E. O. Nadler et al.

Summary: The study on Milky Way satellite galaxies provides strong cosmological constraints on various particle models of dark matter, supporting the cold, collisionless dark matter paradigm. Limits are reported on the mass of thermal relic warm dark matter, velocity-independent dark matter-proton scattering cross section, and the mass of fuzzy dark matter, complementing other observational and laboratory constraints on dark matter properties.

PHYSICAL REVIEW LETTERS (2021)

Article Physics, Multidisciplinary

Strong Bound on Canonical Ultralight Axion Dark Matter from the Lyman-Alpha Forest

Keir K. Rogers et al.

Summary: By using the Lyman-alpha forest to search for suppressed cosmic structure growth, we present a new lower limit on the ultralight axion (ULA) dark matter mass m(a): m(a) > 2 x 10(-20) eV. This study strongly disfavors the canonical ULA with mass within the range of 10(-22) eV to 10(-21) eV.

PHYSICAL REVIEW LETTERS (2021)

Article Astronomy & Astrophysics

Properties of ultralight bosons from heavy quasar spins via superradiance

Caner Uenal et al.

Summary: This study probes the mass and spin of accreting and jetted black holes in Active Galactic Nuclei (AGNs) by analyzing their electromagnetic spectra, revealing the direct implications of ultra-light particles on black hole spin and filling in gaps in parameter space. The findings provide upper limits on the formation of dark matter by ultra-light particles and suggest a new potential explanation for non-observation of superradiance.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2021)

Review Astronomy & Astrophysics

Wave Dark Matter

Lam Hui

Summary: This paper reviews the physics and phenomenology of wave dark matter, outlining its particle physics motivations and rich phenomenology. Wave interference in dark matter leads to unique structures like vortices and solitons, with potential implications for observed astronomical phenomena. Detection experiments and theoretical predictions for wave dark matter are discussed, highlighting the importance of understanding the stochastic nature of waves in interpreting constraints and measurements.

ANNUAL REVIEW OF ASTRONOMY AND ASTROPHYSICS, VOL 59 (2021)

Review Astronomy & Astrophysics

Ultra-light dark matter

Elisa G. M. Ferreira

Summary: Ultra-light dark matter, composed of bosons with masses ranging from 10(-24)eV < m < eV, has garnered attention for its ability to form a Bose-Einstein condensate or superfluid on galactic scales. Various models have been proposed, including fuzzy dark matter, self-interacting fuzzy dark matter, and DM superfluid, with the potential to reconcile the cold DM picture with small-scale behavior. These models present a rich phenomenology and are being tested using astrophysical and cosmological observations.

ASTRONOMY AND ASTROPHYSICS REVIEW (2021)

Article Astronomy & Astrophysics

On the Random Motion of Nuclear Objects in a Fuzzy Dark Matter Halo

Dhruba Dutta Chowdhury et al.

Summary: FDM halos consist of a central solitonic core surrounded by an envelope of interfering excited states, causing oscillation and confined random walk of the soliton. Low-mass objects may be expelled from the soliton within a few billion years, while more massive objects remain confined due to dynamical friction.

ASTROPHYSICAL JOURNAL (2021)

Article Astronomy & Astrophysics

Structure formation in large-volume cosmological simulations of fuzzy dark matter: impact of the non-linear dynamics

Simon May et al.

Summary: This study discusses the interest in ultralight bosonic particles of mass around 10(-22) eV/c(2) as a dark matter candidate, highlighting their potential impact on small-scale tensions in the standard cosmological model. By simulating fuzzy dark matter (FDM) dynamics with non-linear wave effects, the study reveals the suppression of power on small scales relative to cold dark matter (CDM) and the computational challenges associated with FDM equations. The simulations provide insights into the evolution of matter power spectrum and the halo mass function of FDM.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2021)

Article Astronomy & Astrophysics

Dark matter microhalos from simplified models

Nikita Blinov et al.

Summary: This study introduces simplified models to explain enhancements in the matter power spectrum at small scales and investigates their impact on dark matter substructure and gravitational observables. The models capture the characteristics of various early Universe scenarios and discuss the sensitivity of gravitational observables to the presence of bumps in the power spectrum.

PHYSICAL REVIEW D (2021)

Article Astronomy & Astrophysics

Evolution of perturbation and power spectrum in a two-component ultralight axionic universe

Yi-Hsiung Hsu et al.

Summary: The study investigates the evolution of cosmic perturbations in a two-component ultralight axionic universe, presenting the first spectral computation of perturbations in multicomponent universes. A particular case consisting of light extreme axions and free massive particles may lead to the formation of very high-redshift massive galaxies, potentially hosting massive early quasars. The computation retains information of perturbed velocities for individual axion components, offering a new avenue for setting up initial conditions for future axion dark matter simulations.

PHYSICAL REVIEW D (2021)

Article Astronomy & Astrophysics

Self-gravitating vector dark matter

Peter Adshead et al.

Summary: This study explores the nonrelativistic limit of a massive vector field, showing that the vector's spatial components behave as identical, noninteracting scalar fields. Various self-gravitating vector solitons in different geometries are found in the Newtonian limit, with gravitational properties depending on mass and particle mass. Ground-state vector solitons exhibit similarities to their scalar counterparts, and novel hedgehog vector soliton solutions are proposed, with weaker gravitational binding compared to the ground-state vector soliton. Additionally, the absence of spherically symmetric solitons with a divergence-free vector field is demonstrated.

PHYSICAL REVIEW D (2021)

Article Astronomy & Astrophysics

Soliton oscillations and revised constraints from Eridanus II of fuzzy dark matter

Barry T. Chiang et al.

Summary: The study demonstrates that soliton density oscillations persist even after significant tidal stripping of the outer halo. The central star cluster in Eridanus II has a characteristic timescale related to soliton density oscillations, but it significantly deviates from the timescale of the star cluster itself.

PHYSICAL REVIEW D (2021)

Article Astronomy & Astrophysics

Model-independent Constraints on Ultralight Dark Matter from the SPARC Data

Man Ho Chan et al.

Summary: In this study, a model-independent analysis using Spitzer Photometry and Accurate Rotation Curves data is conducted to constrain the mass range of Ultralight dark matter (ULDM). The results show that the ULDM proposal may not be able to alleviate the small-scale problems encountered in standard cold dark matter model. The most stringent constraint comes from the data of galaxy ESO563-G021, which excludes ULDM mass range m = (0.14-3.11) x 10^-22 eV.

ASTROPHYSICAL JOURNAL (2021)

Article Astronomy & Astrophysics

Oscillations and random walk of the soliton core in a fuzzy dark matter halo

Xinyu Li et al.

Summary: It has been found that a fuzzy dark matter halo consists of a soliton core and a density profile, with the soliton core showing temporal oscillations and random walk excursions that can be explained by wave interference. Analysis of numerical simulations reveals that these phenomena are mainly due to a suitable superposition of the ground state and excited states. This eigenmode analysis sheds light on the evolution of a satellite halo undergoing tidal disruption.

PHYSICAL REVIEW D (2021)

Article Astronomy & Astrophysics

Planck 2018 results: VI. Cosmological parameters

N. Aghanim et al.

ASTRONOMY & ASTROPHYSICS (2020)

Review Physics, Nuclear

Small-scale structure of fuzzy and axion-like dark matter

Jens C. Niemeyer

PROGRESS IN PARTICLE AND NUCLEAR PHYSICS (2020)

Article Astronomy & Astrophysics

Galaxy formation with BECDM II. Cosmic filaments and first galaxies

Philip Mocz et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2020)

Article Physics, Multidisciplinary

Soliton Random Walk and the Cluster-Stripping Problem in Ultralight Dark Matter

Hsi-Yu Schive et al.

PHYSICAL REVIEW LETTERS (2020)

Article Astronomy & Astrophysics

Merger of dark matter axion clumps and resonant photon emission

Mark P. Hertzberg et al.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2020)

Article Astronomy & Astrophysics

Galactic condensates composed of multiple axion species

Joshua Eby et al.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2020)

Article Astronomy & Astrophysics

Two-component axionic dark matter halos

Gennady P. Berman et al.

MODERN PHYSICS LETTERS A (2020)

Article Astronomy & Astrophysics

Multiple ultralight axionic wave dark matter and astronomical structures

Hoang Nhan Luu et al.

PHYSICS OF THE DARK UNIVERSE (2020)

Article Astronomy & Astrophysics

Ultra-light Dark Matter Is Incompatible with the Milky Way's Dwarf Satellites

Mohammadtaher Safarzadeh et al.

ASTROPHYSICAL JOURNAL (2020)

Article Astronomy & Astrophysics

Fuzzy Dark Matter and Dark Matter Halo Cores

A. Burkert

ASTROPHYSICAL JOURNAL (2020)

Article Astronomy & Astrophysics

Implications of Milky Way substructures for the nature of dark matter

Maria Benito et al.

PHYSICAL REVIEW D (2020)

Article Astronomy & Astrophysics

Subhalo mass function and ultralight bosonic dark matter

Katelin Schutz

PHYSICAL REVIEW D (2020)

Article Astronomy & Astrophysics

Testing the Prediction of Fuzzy Dark Matter Theory in the Milky Way Center

Zhi Li et al.

ASTROPHYSICAL JOURNAL (2020)

Article Astronomy & Astrophysics

The core-cusp problem revisited: ULDM vs. CDM

Emily Kendall et al.

PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA (2020)

Article Astronomy & Astrophysics

Testing extreme-axion wave-like dark matter using the BOSS Lyman-alpha forest data

Ka-Hou Leong et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2019)

Article Astronomy & Astrophysics

Dark matter heats up in dwarf galaxies

J. I. Read et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2019)

Article Astronomy & Astrophysics

Lyman α forest and non-linear structure characterization in Fuzzy Dark Matter cosmologies

Matteo Nori et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2019)

Review Astronomy & Astrophysics

Cosmological Simulation for Fuzzy Dark Matter Model

Jiajun Zhang et al.

FRONTIERS IN ASTRONOMY AND SPACE SCIENCES (2019)

Review Astronomy & Astrophysics

Brief Review on Scalar Field Dark Matter Models

L. Arturo Urena-Lopez

FRONTIERS IN ASTRONOMY AND SPACE SCIENCES (2019)

Article Astronomy & Astrophysics

Numerical and perturbative computations of the fuzzy dark matter model

Xinyu Li et al.

PHYSICAL REVIEW D (2019)

Article Astronomy & Astrophysics

AX-GADGET: a new code for cosmological simulations of Fuzzy Dark Matter and Axion models

Matteo Nori et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2018)

Article Astronomy & Astrophysics

GAMER-2: a GPU-accelerated adaptive mesh refinement code - accuracy, performance, and scalability

Hsi-Yu Schive et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2018)

Article Physics, Multidisciplinary

History of dark matter

Gianfranco Bertone et al.

REVIEWS OF MODERN PHYSICS (2018)

Article Astronomy & Astrophysics

Can light dark matter solve the core-cusp problem?

Heling Deng et al.

PHYSICAL REVIEW D (2018)

Article Astronomy & Astrophysics

Formation and structure of ultralight bosonic dark matter halos

Jan Veltmaat et al.

PHYSICAL REVIEW D (2018)

Article Astronomy & Astrophysics

The Importance of Quantum Pressure of Fuzzy Dark Matter on Ly alpha Forest

Jiajun Zhang et al.

ASTROPHYSICAL JOURNAL (2018)

Article Astronomy & Astrophysics

Substructure of fuzzy dark matter haloes

Xiaolong Du et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2017)

Article Astronomy & Astrophysics

Jeans analysis for dwarf spheroidal galaxies in wave dark matter

Shu-Rong Chen et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2017)

Article Astronomy & Astrophysics

Unbiased constraints on ultralight axion mass from dwarf spheroidal galaxies

Alma X. Gonzalez-Morales et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2017)

Article Astronomy & Astrophysics

Galaxy formation with BECDM - I. Turbulence and relaxation of idealized haloes

Philip Mocz et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2017)

Article Astronomy & Astrophysics

Constraining the mass of light bosonic dark matter using SDSS Lyman-α forest

Eric Armengaud et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2017)

Article Physics, Multidisciplinary

Current status of direct dark matter detection experiments

Jianglai Liu et al.

NATURE PHYSICS (2017)

Article Physics, Multidisciplinary

Dark Matter Results from 54-Ton-Day Exposure of PandaX-II Experiment

Xiangyi Cui et al.

PHYSICAL REVIEW LETTERS (2017)

Article Physics, Multidisciplinary

First Constraints on Fuzzy Dark Matter from Lyman-α Forest Data and Hydrodynamical Simulations

Vid Irsic et al.

PHYSICAL REVIEW LETTERS (2017)

Article Physics, Particles & Fields

Perturbations of ultralight vector field dark matter

J. A. R. Cembranos et al.

JOURNAL OF HIGH ENERGY PHYSICS (2017)

Article Astronomy & Astrophysics

Lyman-α constraints on ultralight scalar dark matter: Implications for the early and late universe

Takeshi Kobayashi et al.

PHYSICAL REVIEW D (2017)

Article Astronomy & Astrophysics

Newtonian analysis of multiscalar boson stars with large self-couplings

Nahomi Kan et al.

PHYSICAL REVIEW D (2017)

Article Astronomy & Astrophysics

Cosmological perturbations of extreme axion in the radiation era

Ui-Han Zhang et al.

PHYSICAL REVIEW D (2017)

Article Astronomy & Astrophysics

Black hole superradiance signatures of ultralight vectors

Masha Baryakhtar et al.

PHYSICAL REVIEW D (2017)

Article Astronomy & Astrophysics

Evolution of linear wave dark matter perturbations in the radiation-dominated era

Ui-Han Zhang et al.

PHYSICAL REVIEW D (2017)

Review Engineering, Aerospace

Dark matter, dark energy, and alternate models: A review

Kenath Arun et al.

ADVANCES IN SPACE RESEARCH (2017)

Article Astronomy & Astrophysics

Ultralight scalars as cosmological dark matter

Lam Hui et al.

PHYSICAL REVIEW D (2017)

Article Physics, Particles & Fields

Results on light dark matter particles with a low-threshold CRESST-II detector

G. Angloher et al.

EUROPEAN PHYSICAL JOURNAL C (2016)

Article Astronomy & Astrophysics

The APOSTLE simulations: solutions to the Local Group's cosmic puzzles

Till Sawala et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2016)

Article Astronomy & Astrophysics

Ultra-light dark matter in ultra-faint dwarf galaxies

Erminia Calabrese et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2016)

Review Physics, Multidisciplinary

Axion cosmology

David J. E. Marsh

PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS (2016)

Article Astronomy & Astrophysics

Beyond ΛCDM: Problems, solutions, and the road ahead

Philip Bull et al.

PHYSICS OF THE DARK UNIVERSE (2016)

Article Astronomy & Astrophysics

Large field excursions and approximate discrete symmetries from a clockwork axion

David E. Kaplan et al.

PHYSICAL REVIEW D (2016)

Article Astronomy & Astrophysics

CONTRASTING GALAXY FORMATION FROM QUANTUM WAVE DARK MATTER, ψDM, WITH ΛCDM, USING PLANCK AND HUBBLE DATA

Hsi-Yu Schive et al.

ASTROPHYSICAL JOURNAL (2016)

Article Astronomy & Astrophysics

Cosmological particle-in-cell simulations with ultralight axion dark matter

Jan Veltmaat et al.

PHYSICAL REVIEW D (2016)

Article Astronomy & Astrophysics

Simulations of solitonic core mergers in ultralight axion dark matter cosmologies

Bodo Schwabe et al.

PHYSICAL REVIEW D (2016)

Article Astronomy & Astrophysics

Limits on dark matter annihilation signals from the Fermi LAT 4-year measurement of the isotropic gamma-ray background

M. Ackermann et al.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2015)

Article Astronomy & Astrophysics

The impact of baryonic physics on the structure of dark matter haloes: the view from the FIRE cosmological simulations

T. K. Chan et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2015)

Article Astronomy & Astrophysics

Axion dark matter, solitons and the cusp-core problem

David J. E. Marsh et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2015)

Article Multidisciplinary Sciences

Cold dark matter: Controversies on small scales

David H. Weinberg et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2015)

Article Physics, Multidisciplinary

Cosmic structure as the quantum interference of a coherent dark wave

Hsi-Yu Schive et al.

NATURE PHYSICS (2014)

Article Astronomy & Astrophysics

Cosmological constraints on Bose-Einstein-condensed scalar field dark matter

Bohua Li et al.

PHYSICAL REVIEW D (2014)

Article Physics, Multidisciplinary

Understanding the Core-Halo Relation of Quantum Wave Dark Matter from 3D Simulations

Hsi-Yu Schive et al.

PHYSICAL REVIEW LETTERS (2014)

Article Physics, Particles & Fields

Final model independent result of DAMA/LIBRA-phase1

R. Bernabei et al.

EUROPEAN PHYSICAL JOURNAL C (2013)

Article Astronomy & Astrophysics

WISPy cold dark matter

Paola Arias et al.

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS (2012)

Article Physics, Particles & Fields

The type IIB string axiverse and its low-energy phenomenology

Michele Cicoli et al.

JOURNAL OF HIGH ENERGY PHYSICS (2012)

Article Astronomy & Astrophysics

yt: A MULTI-CODE ANALYSIS TOOLKIT FOR ASTROPHYSICAL SIMULATION DATA

Matthew J. Turk et al.

ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES (2011)

Article Astronomy & Astrophysics

Multi-scale initial conditions for cosmological simulations

Oliver Hahn et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2011)

Article Astronomy & Astrophysics

Dark light, dark matter, and the misalignment mechanism

Ann E. Nelson et al.

PHYSICAL REVIEW D (2011)

Article Astronomy & Astrophysics

Too big to fail? The puzzling darkness of massive Milky Way subhaloes

Michael Boylan-Kolchin et al.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2011)

Review Astronomy & Astrophysics

Dark Matter Candidates from Particle Physics and Methods of Detection

Jonathan L. Feng

ANNUAL REVIEW OF ASTRONOMY AND ASTROPHYSICS, VOL 48 (2010)

Article Astronomy & Astrophysics

String axiverse

Asimina Arvanitaki et al.

PHYSICAL REVIEW D (2010)

Review Astronomy & Astrophysics

The Core-Cusp Problem

W. J. G. de Blok

ADVANCES IN ASTRONOMY (2010)

Article Astronomy & Astrophysics

HIGH-RESOLUTION SIMULATION ON STRUCTURE FORMATION WITH EXTREMELY LIGHT BOSONIC DARK MATTER

Tak-Pong Woo et al.

ASTROPHYSICAL JOURNAL (2009)

Article Astronomy & Astrophysics

Can a vector field be responsible for the curvature perturbation in the Universe?

Konstantinos Dimopoulos

PHYSICAL REVIEW D (2006)

Article Physics, Particles & Fields

Axions in string theory

Peter Svrcek et al.

JOURNAL OF HIGH ENERGY PHYSICS (2006)

Article Physics, Multidisciplinary

Fuzzy cold dark matter: The wave properties of ultralight particles

W Hu et al.

PHYSICAL REVIEW LETTERS (2000)