Lunar laser ranging: the millimeter challenge
arXiv:1309.6294 · doi:10.1088/0034-4885/76/7/076901
Abstract
Lunar laser ranging has provided many of the best tests of gravitation since the first Apollo astronauts landed on the Moon. The march to higher precision continues to this day, now entering the millimeter regime, and promising continued improvement in scientific results. This review introduces key aspects of the technique, details the motivations, observables, and results for a variety of science objectives, summarizes the current state of the art, highlights new developments in the field, describes the modeling challenges, and looks to the future of the enterprise.
45 page review article; 20 figures
References in corpus (8)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Gravity Probe B: Final Results of a Space Experiment to Test General Relativity
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- Signals for Lorentz Violation in Post-Newtonian Gravity
- Testing for Lorentz Violation: Constraints on Standard-Model Extension Parameters via Lunar Laser Ranging
- The Gravitomagnetic Influence on Gyroscopes and on the Lunar Orbit
- Comment on "The gravitomagnetic influence on gyroscopes and on the lunar orbit"
- Effects of thermal gradients on total internal reflection corner cubes
Cited by in corpus (48)
- Cosmological Tests of Modified Gravity
- General Relativity and Cosmology: Unsolved Questions and Future Directions
- The Novel Probes Project -- Tests of Gravity on Astrophysical Scales
- The new lunar ephemeris INPOP17a and its application to fundamental physics
- Gravitational Anomalies in the Solar System?
- Testing Lorentz symmetry with Lunar Laser Ranging
- Asteroids for Hz gravitational-wave detection
- Bridging the Hz gap in the gravitational-wave landscape with binary resonance
- Lunar laser ranging in infrfared at hte Grasse laser station
- Lorentz Symmetry Violations from Matter-Gravity Couplings with Lunar Laser Ranging
- Determining parameters of Moon's orbital and rotational motion from LLR observations using GRAIL and IERS-recommended models
- Detecting stochastic gravitational waves with binary resonance
- Observational constraint on the radius and oblateness of the lunar core-mantle boundary
- The minimally extended Varying Speed of Light (meVSL)
- Asteroseismic constraints on the cosmic-time variation of the gravitational constant from an ancient main-sequence star
- Tidal insights into rocky and icy bodies: An introduction and overview
- Close encounters of the primordial kind: a new observable for primordial black holes as dark matter
- Laser and Radio Tracking for Planetary Science Missions - A Comparison
- A Closer Earth and the Faint Young Sun Paradox: Modification of the Laws of Gravitation, or Sun/Earth Mass Losses?
- Lunar Eclipse Observations Reveal Anomalous Thermal Performance of Apollo Reflectors
- Fundamental limitations to high-precision tests of the universality of free fall by dropping atoms
- Novel constraints on fifth forces and ultralight dark sector with asteroidal data
- Space-Time Reference with an Optical Link
- Constraints on a possible variation of the fine structure constant from galaxy cluster data
- Role of lunar laser ranging in realization of terrestrial, lunar, and ephemeris reference frames
- Equivalence Principle in Chameleon Models
- Covariant Equations of Motion of Extended Bodies with Arbitrary Mass and Spin Multipoles
- An absolute calibration system for millimeter-accuracy APOLLO measurements
- LION :Laser Interferometer On the mooN
- Interstellar communication. X. The colors of optical SETI
- The local dark sector. Probing gravitation's low-acceleration frontier and dark matter in the Solar System neighborhood
- Impact of non-tidal station loading in LLR
- Deep space experiment to measure
- General expansion of time transfer functions in optical spacetime
- Time delay in the quadrupole field of a body at rest in 2PN approximation
- Lunar Laser Ranging with High-Power CW Lasers
- Interstellar communication. XI. Short pulse duration limits of optical SETI
- On the foundations of general relativistic celestial mechanics
- Detecting sublunar-mass primordial black holes with the Earth-Moon binary system
- Analysis of the Effect of Tilted Corner Cube Reflector Arrays on Lunar Laser Ranging
- APOLLO clock performance and normal point corrections
- Earth rotation parameter estimation from LLR and impact of non-tidal station loading
- Thick shell regime in the chameleon two-body problem
- Probing Supermassive Black Hole Binaries with Orbital Resonances of Laser-Ranged Satellite
- A clear case for dust obscuration of the lunar retroreflectors
- Mapping the Weak-Field Limit of Scalar-Gauss-Bonnet Gravity
- Constraining a stochastic variation of the gravitational coupling with binary systems
- Gravitational waves as waveguides