Theories of dark energy require a screening mechanism to explain why the associated scalar fields do not mediate observable long range fifth forces. The archetype of this is the chameleon field. Here we show that individual atoms are too small to screen the chameleon field inside a large high-vacuum chamber, and therefore can detect the field with high sensitivity. We derive new limits on the chameleon parameters from existing experiments, and show that most of the remaining chameleon parameter space is readily accessible using atom interferometry
Dynamically screened scalar field theories form an attractive collection of models that were introdu...
International audienceAtomic interferometry can be used to probe dark energy models coupled to matte...
AbstractChameleons can play a role in the recent acceleration of the expansion of the Universe. We p...
Theories of dark energy require a screening mechanism to explain why the associated scalar fields do...
We review the tantalising prospect that the first evidence for the dark energy driving the observed ...
Light scalar fields coupled to matter are a common consequence of theories of dark energy and attemp...
If dark energy, which drives the accelerated expansion of the universe, consists of a light scalar f...
The accelerated expansion of the universe motivates a wide class of scalar field theories that modif...
We apply the new constraints from atom-interferometry searches for screening mechanisms to the symme...
We discuss the use of atom interferometry as a tool to search for dark matter (DM) composed of viria...
A light scalar field framework of dark energy, sometimes referred to as quintessence, introduces a f...
Direct detection experiments for dark matter are increasingly ruling out large parameter spaces. How...
Scalar fields with a"chameleon" property, in which the effective particle mass is a functi...
7 pages, 4 figuresInternational audienceWe present phase shift measurements for neutron matter waves...
Dynamically screened scalar field theories form an attractive collection of models that were introdu...
International audienceAtomic interferometry can be used to probe dark energy models coupled to matte...
AbstractChameleons can play a role in the recent acceleration of the expansion of the Universe. We p...
Theories of dark energy require a screening mechanism to explain why the associated scalar fields do...
We review the tantalising prospect that the first evidence for the dark energy driving the observed ...
Light scalar fields coupled to matter are a common consequence of theories of dark energy and attemp...
If dark energy, which drives the accelerated expansion of the universe, consists of a light scalar f...
The accelerated expansion of the universe motivates a wide class of scalar field theories that modif...
We apply the new constraints from atom-interferometry searches for screening mechanisms to the symme...
We discuss the use of atom interferometry as a tool to search for dark matter (DM) composed of viria...
A light scalar field framework of dark energy, sometimes referred to as quintessence, introduces a f...
Direct detection experiments for dark matter are increasingly ruling out large parameter spaces. How...
Scalar fields with a"chameleon" property, in which the effective particle mass is a functi...
7 pages, 4 figuresInternational audienceWe present phase shift measurements for neutron matter waves...
Dynamically screened scalar field theories form an attractive collection of models that were introdu...
International audienceAtomic interferometry can be used to probe dark energy models coupled to matte...
AbstractChameleons can play a role in the recent acceleration of the expansion of the Universe. We p...