We consider possible violations of the equivalence principle through the exchange of a light “dilaton-like” scalar field. Using recent work on the quark-mass dependence of nuclear binding, we find that the dilaton-quark-mass coupling induces significant equivalence-principle-violating effects varying like the inverse cubic root of the atomic number—A-1/3. We provide a general parametrization of the scalar couplings, but argue that two parameters are likely to dominate the equivalence-principle phenomenology. We indicate the implications of this framework for comparing the sensitivities of current and planned experimental tests of the equivalence principle
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...
We consider possible violations of the equivalence principle through the exchange of a light ‘dilato...
We consider possible violations of the equivalence principle through the exchange of a light ‘dilato...
We consider possible violations of the equivalence principle through the exchange of a light ‘dilato...
We consider possible violations of the equivalence principle through the exchange of a light ‘dilato...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
The existence of a light or massive scalar field with a coupling to matter weaker than gravitational...
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...
We consider possible violations of the equivalence principle through the exchange of a light ‘dilato...
We consider possible violations of the equivalence principle through the exchange of a light ‘dilato...
We consider possible violations of the equivalence principle through the exchange of a light ‘dilato...
We consider possible violations of the equivalence principle through the exchange of a light ‘dilato...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
Light scalar particles with couplings of sub-gravitational strength, which can generically be called...
The existence of a light or massive scalar field with a coupling to matter weaker than gravitational...
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...
International audienceThe existence of a light or massive scalar field with a coupling to matter wea...