International audienceLorentz symmetry violations can be parametrized by an effective field theory framework that contains both General Relativity and the Standard Model of particle physics, called the Standard-Model Extension or SME. We consider in this work only the pure gravitational sector of the minimal SME. We present new constraints on the SME coefficients obtained from lunar laser ranging, very long baseline interferometry, and planetary motions
International audienceThe standard-model extension (SME) is an effective field theory framework aimi...
International audienceWe present new constraints on Lorentz symmetry (LS) violations with lunar lase...
International audienceWe present new constraints on Lorentz symmetry (LS) violations with lunar lase...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
Lorentz symmetry violations can be parametrized by an effective field theory framework that contains...
Lorentz symmetry violations can be parametrized by an effective field theory framework that contains...
Lorentz symmetry violations can be parametrized by an effective field theory framework that contains...
International audienceThe standard-model extension (SME) is an effective field theory framework aimi...
International audienceThe standard-model extension (SME) is an effective field theory framework aimi...
International audienceThe standard-model extension (SME) is an effective field theory framework aimi...
International audienceWe present new constraints on Lorentz symmetry (LS) violations with lunar lase...
International audienceWe present new constraints on Lorentz symmetry (LS) violations with lunar lase...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
International audienceLorentz symmetry violations can be parametrized by an effective field theory f...
Lorentz symmetry violations can be parametrized by an effective field theory framework that contains...
Lorentz symmetry violations can be parametrized by an effective field theory framework that contains...
Lorentz symmetry violations can be parametrized by an effective field theory framework that contains...
International audienceThe standard-model extension (SME) is an effective field theory framework aimi...
International audienceThe standard-model extension (SME) is an effective field theory framework aimi...
International audienceThe standard-model extension (SME) is an effective field theory framework aimi...
International audienceWe present new constraints on Lorentz symmetry (LS) violations with lunar lase...
International audienceWe present new constraints on Lorentz symmetry (LS) violations with lunar lase...