Lunisolar perturbation — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The orbit that has to be paid for every year
A geostationary satellite is not in equilibrium in any direction. The Sun and Moon tilt its plane by 0.85 degrees a year, the Earth's equatorial ellipticity makes two longitudes stable and two unstable, and the end of a satellite's life is the end of its propellant.
An unstable point that costs less to hold than a stable orbit
A spacecraft at the Sun–Earth L₂ point sits on an equilibrium that throws it away, doubling any error every sixteen days. It holds station for a few metres per second a year — a twentieth of what a geostationary satellite pays to stay on an orbit that is stable. The difference is what is being paid for — an instability caught small costs a navigation budget, and a steady torque costs a force budget.
Named alongside it
The objects these essays reach for when they reach for this one.
Station-keepingCollinear pointsΔvE-folding timeEnd of lifeGeostationary orbitGraveyard orbitHalo orbitHill sphereInclination driftInvariant manifoldLagrange points