Modern astronomical data on galaxy and cosmological scales have revealed powerfully the existence of certain dark sectors of fundamental physics, i.e., existence of particles and fields outside the standard models and inaccessible by current experiments. Various approaches are taken to modify/extend the standard models. Generic theories introduce multiple de-coupled fields A, B, C, each responsible for the effects of DM (cold supersymmetric particles), DE (Dark Energy) effect, and MG (Modified Gravity) effect respectively. Some theories use adopt vanilla combinations like AB, BC, or CA, and assume A, B, C belong to decoupled sectors of physics. MOND-like MG and Cold DM are often taken as antagnising frameworks, e.g. in the muddled debate ar...
Dark Matter is rooted in the underlying topology of fractal spacetime above the electroweak scale an...
We develop a new method to predict the density associated with weak-lensing maps of (un)relaxed clus...
Concepts of dark matter (DM) and dark energy (DE) are introduced. As for other anomalies we describe...
The Standard Model (SM) of particle physics has achieved remarkable success as a result of several d...
Observations of galaxies suggest a one-to-one analytic relation between the inferred gravity of dark...
Observations of galaxies suggest a one-to-one analytic relation between the inferred gravity of dar...
I briefly review our current understanding of dark matter and dark energy. The first part of this pa...
The standard model of cosmology suggests the existence of two components, “dark matter” and “dark en...
The standard model of cosmology suggests the existence of two components, “dark matter” and “dark en...
Dark Matter is rooted in the underlying topology of fractal spacetime above the electroweak scale an...
The standard model of cosmology is based on two unknown dark components that are uncoupled from each...
The standard model of cosmology is based on two unknown dark components that are uncoupled from each...
The standard model of cosmology is based on two unknown dark components that are uncoupled from each...
We develop a new method to predict the density associated with weak-lensing maps of (un) relaxed clu...
We fit the weak lensing map of the bullet merging galaxy cluster 1E 0657-56 in a class of gravity th...
Dark Matter is rooted in the underlying topology of fractal spacetime above the electroweak scale an...
We develop a new method to predict the density associated with weak-lensing maps of (un)relaxed clus...
Concepts of dark matter (DM) and dark energy (DE) are introduced. As for other anomalies we describe...
The Standard Model (SM) of particle physics has achieved remarkable success as a result of several d...
Observations of galaxies suggest a one-to-one analytic relation between the inferred gravity of dark...
Observations of galaxies suggest a one-to-one analytic relation between the inferred gravity of dar...
I briefly review our current understanding of dark matter and dark energy. The first part of this pa...
The standard model of cosmology suggests the existence of two components, “dark matter” and “dark en...
The standard model of cosmology suggests the existence of two components, “dark matter” and “dark en...
Dark Matter is rooted in the underlying topology of fractal spacetime above the electroweak scale an...
The standard model of cosmology is based on two unknown dark components that are uncoupled from each...
The standard model of cosmology is based on two unknown dark components that are uncoupled from each...
The standard model of cosmology is based on two unknown dark components that are uncoupled from each...
We develop a new method to predict the density associated with weak-lensing maps of (un) relaxed clu...
We fit the weak lensing map of the bullet merging galaxy cluster 1E 0657-56 in a class of gravity th...
Dark Matter is rooted in the underlying topology of fractal spacetime above the electroweak scale an...
We develop a new method to predict the density associated with weak-lensing maps of (un)relaxed clus...
Concepts of dark matter (DM) and dark energy (DE) are introduced. As for other anomalies we describe...