We make rotation curve fits to test the superfluid dark matter model. In addition to verifying that the resulting fits match the rotation curve data reasonably well, we aim to evaluate how satisfactory they are with respect to two criteria, namely, how reasonable the resulting stellar mass-to-light ratios are and whether the fits end up in the regime of superfluid dark matter where the model resembles modified Newtonian dynamics (MOND). We fitted the superfluid dark matter model to the rotation curves of 169 galaxies in the SPARC sample. We found that the mass-to-light ratios obtained with superfluid dark matter are generally acceptable in terms of stellar populations. However, the best-fit mass-to-light ratios have an unnatural dependence ...
Astrophysical data analysis of the weak-field predictions support the claim that modified gravity (M...
I show that the lensing masses of the Sloan Lens Advanced Camera Surveys sample of strong gravitatio...
Strict criteria are applied to the sample of spiral galaxies with measured rotation curves in order ...
Context. We make rotation curve fits to test the superfluid dark matter model. Aims. In addition to ...
Superfluid dark matter (SFDM) is a model that promises to reproduce the successes of both particle d...
This article explores the agreement between the predictions of modified Newtonian dynamics (MOND) an...
We present modified Newtonian dynamics (MOND) fits to 15 rotation curves of low surface brightness (...
We present modified Newtonian dynamics (MOND) fits to 15 rotation curves of low surface brightness (...
We present an analysis of 12 high-resolution galactic rotation curves from The HI Nearby Galaxy Surv...
MONDian dark matter (MDM) is a new form of dark matter quantum that naturally accounts for Milgrom's...
A better understanding of the formation of mass structures in the Universe can be obtained by determ...
I consider the observed rotation curves of 12 gas-dominated low-surface-brightness galaxies-objects ...
The degeneracy between disc and halo contributions in spiral galaxy rotation curves makes it difficu...
Dwarf and low surface brightness (LSB) galaxies are ideal objects to test modified Newtonian dynamic...
Astrophysical data analysis of the weak-field predictions support the claim that modified gravity (M...
I show that the lensing masses of the Sloan Lens Advanced Camera Surveys sample of strong gravitatio...
Strict criteria are applied to the sample of spiral galaxies with measured rotation curves in order ...
Context. We make rotation curve fits to test the superfluid dark matter model. Aims. In addition to ...
Superfluid dark matter (SFDM) is a model that promises to reproduce the successes of both particle d...
This article explores the agreement between the predictions of modified Newtonian dynamics (MOND) an...
We present modified Newtonian dynamics (MOND) fits to 15 rotation curves of low surface brightness (...
We present modified Newtonian dynamics (MOND) fits to 15 rotation curves of low surface brightness (...
We present an analysis of 12 high-resolution galactic rotation curves from The HI Nearby Galaxy Surv...
MONDian dark matter (MDM) is a new form of dark matter quantum that naturally accounts for Milgrom's...
A better understanding of the formation of mass structures in the Universe can be obtained by determ...
I consider the observed rotation curves of 12 gas-dominated low-surface-brightness galaxies-objects ...
The degeneracy between disc and halo contributions in spiral galaxy rotation curves makes it difficu...
Dwarf and low surface brightness (LSB) galaxies are ideal objects to test modified Newtonian dynamic...
Astrophysical data analysis of the weak-field predictions support the claim that modified gravity (M...
I show that the lensing masses of the Sloan Lens Advanced Camera Surveys sample of strong gravitatio...
Strict criteria are applied to the sample of spiral galaxies with measured rotation curves in order ...