This paper describes the concept and the beginning of an experimental investigation of whether it is possible to directly detect dark energy density on earth using atom interferometry. The concept is to null out the gravitational force using a double interfermometer. This research provides a non-astronomical path for research on dark energy. The application of this method to other hypothetical weak forces and fields is also discussed. In the final section I discuss the advantages of carrying out a dark energy density search in a satellite in earth orbit where an even more sensitive search can be achieved
Matter-wave interferometry is ideal for detecting small forces, being able to sense changes of accel...
In this brief paper, we show that atom interferometer experiments such as MAGIS, AION and AEDGE do n...
Dark energy is one of the mysteries of modern science. It is unlike any known form of matter or ener...
We review the tantalising prospect that the first evidence for the dark energy driving the observed ...
We describe the theory and first experimental work on our concept for searching on earth for the pre...
Theories of dark energy require a screening mechanism to explain why the associated scalar fields do...
The accelerated expansion of the universe motivates a wide class of scalar field theories that modif...
The majority of astronomers and physicists accept the reality of dark energy and also believe that i...
If dark energy, which drives the accelerated expansion of the universe, consists of a light scalar f...
We examine the prospects for the next generation of surveys aimed at elucidating the nature of dark ...
The physical origin of the dark energy, which is postulated to cause the accelerated expansion rate ...
We discuss the use of atom interferometry as a tool to search for dark matter (DM) composed of viria...
AbstractA dark energy experiment is proposed, based on the dark energy research funded by the U.S. D...
There is now an enormously rich variety of experimental techniques being brought to bear on experime...
Direct detection experiments for dark matter are increasingly ruling out large parameter spaces. How...
Matter-wave interferometry is ideal for detecting small forces, being able to sense changes of accel...
In this brief paper, we show that atom interferometer experiments such as MAGIS, AION and AEDGE do n...
Dark energy is one of the mysteries of modern science. It is unlike any known form of matter or ener...
We review the tantalising prospect that the first evidence for the dark energy driving the observed ...
We describe the theory and first experimental work on our concept for searching on earth for the pre...
Theories of dark energy require a screening mechanism to explain why the associated scalar fields do...
The accelerated expansion of the universe motivates a wide class of scalar field theories that modif...
The majority of astronomers and physicists accept the reality of dark energy and also believe that i...
If dark energy, which drives the accelerated expansion of the universe, consists of a light scalar f...
We examine the prospects for the next generation of surveys aimed at elucidating the nature of dark ...
The physical origin of the dark energy, which is postulated to cause the accelerated expansion rate ...
We discuss the use of atom interferometry as a tool to search for dark matter (DM) composed of viria...
AbstractA dark energy experiment is proposed, based on the dark energy research funded by the U.S. D...
There is now an enormously rich variety of experimental techniques being brought to bear on experime...
Direct detection experiments for dark matter are increasingly ruling out large parameter spaces. How...
Matter-wave interferometry is ideal for detecting small forces, being able to sense changes of accel...
In this brief paper, we show that atom interferometer experiments such as MAGIS, AION and AEDGE do n...
Dark energy is one of the mysteries of modern science. It is unlike any known form of matter or ener...