We present constraints on violations of Lorentz invariance based on archival lunar laser-ranging (LLR) data. LLR measures the Earth-Moon separation by timing the round-trip travel of light between the two bodies and is currently accurate to the equivalent of a few centimeters (parts in 1011 of the total distance). By analyzing this LLR data under the standard-model extension (SME) framework, we derived six observational constraints on dimensionless SME parameters that describe potential Lorentz violation. We found no evidence for Lorentz violation at the 10-6 to 10-11 level in these parameters. This work constitutes the first LLR constraints on SME parameters
General Relativity (GR) and the standard model of particle physics provide a comprehensive descripti...
General Relativity (GR) and the standard model of particle physics provide a comprehensive descripti...
International audienceGeneral Relativity (GR) and the standard model of particle physics provide a c...
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 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 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 audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
International audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
International audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
International audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
International audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
General Relativity (GR) and the standard model of particle physics provide a comprehensive descripti...
General Relativity (GR) and the standard model of particle physics provide a comprehensive descripti...
International audienceGeneral Relativity (GR) and the standard model of particle physics provide a c...
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 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 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 audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
International audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
International audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
International audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
International audienceThe possibility for Lorentz and CPT breaking, which is motivated by unificatio...
General Relativity (GR) and the standard model of particle physics provide a comprehensive descripti...
General Relativity (GR) and the standard model of particle physics provide a comprehensive descripti...
International audienceGeneral Relativity (GR) and the standard model of particle physics provide a c...