We propose a unified framework that reconciles the stunning success of MOND on galactic scales with the triumph of the ΛCDM model on cosmological scales. This is achieved through the physics of superfluidity. Dark matter consists of self-interacting axion-like particles that thermalize and condense to form a superfluid in galaxies, with ∼mK critical temperature. The superfluid phonons mediate a MOND acceleration on baryonic matter. Our framework naturally distinguishes between galaxies (where MOND is successful) and galaxy clusters (where MOND is not): dark matter has a higher temperature in clusters, and hence is in a mixture of superfluid and normal phase. The rich and well-studied physics of superfluidity leads to a number of striking ob...
International audienceRecently, a new form of dark matter has been suggested to naturally reproduce ...
We provide a holographic dual description of Milgrom's scaling associated with galactic rotation cur...
The origin of MOND acceleration and deep-MOND from acceleration fluctuation and energy cascade in da...
Context. The mass discrepancy in the Universe has not been solved by the cold dark matter (CDM) or t...
Observations of galaxies suggest a one-to-one analytic relation between the inferred gravity of dark...
We present a novel theory of a unified dark sector, where late-time cosmic acceleration emerges from...
We propose a connection between global physics and local galactic dynamics via quantum gravity. The ...
The primary aim of this thesis is to explore new theories of dark matter (DM) that reproduce the MOd...
MOND is an empirically motivated theory using modified gravity to reproduce many astronomical observ...
Context. We make rotation curve fits to test the superfluid dark matter model. Aims. In addition to ...
The putative effects of dark matter are most easily explained by a collisionless fluid on cosmologic...
We propose a connection between global physics and local galactic dynamics via quantum gravity. The ...
Aims. We intend to understand cosmological structure formation within the framework of superfluid mo...
We have performed a cosmological numerical simulation of primordial baryonic gas collapsing onto a 3...
AbstractWe provide a holographic dual description of Milgrom's scaling associated with galactic rota...
International audienceRecently, a new form of dark matter has been suggested to naturally reproduce ...
We provide a holographic dual description of Milgrom's scaling associated with galactic rotation cur...
The origin of MOND acceleration and deep-MOND from acceleration fluctuation and energy cascade in da...
Context. The mass discrepancy in the Universe has not been solved by the cold dark matter (CDM) or t...
Observations of galaxies suggest a one-to-one analytic relation between the inferred gravity of dark...
We present a novel theory of a unified dark sector, where late-time cosmic acceleration emerges from...
We propose a connection between global physics and local galactic dynamics via quantum gravity. The ...
The primary aim of this thesis is to explore new theories of dark matter (DM) that reproduce the MOd...
MOND is an empirically motivated theory using modified gravity to reproduce many astronomical observ...
Context. We make rotation curve fits to test the superfluid dark matter model. Aims. In addition to ...
The putative effects of dark matter are most easily explained by a collisionless fluid on cosmologic...
We propose a connection between global physics and local galactic dynamics via quantum gravity. The ...
Aims. We intend to understand cosmological structure formation within the framework of superfluid mo...
We have performed a cosmological numerical simulation of primordial baryonic gas collapsing onto a 3...
AbstractWe provide a holographic dual description of Milgrom's scaling associated with galactic rota...
International audienceRecently, a new form of dark matter has been suggested to naturally reproduce ...
We provide a holographic dual description of Milgrom's scaling associated with galactic rotation cur...
The origin of MOND acceleration and deep-MOND from acceleration fluctuation and energy cascade in da...