Adaptive-optics sky coverage is the fraction of targets for which a sufficiently bright nearby guide star allows useful correction. Anisoplanatism limits the offset, and photon statistics limit the sensing speed. A laser guide star improves coverage but does not remove all low-order and finite-distance limitations.
Adaptive-optics sky coverage is limited by the need for a guide star bright enough to measure the wavefront error on the atmospheric evolution time. A faint guide gives noisy measurements; a guide too far from the target samples a different turbulent column. That angular mismatch is anisoplanatism, with useful separation characterized by the isoplanatic angle. Thus a conventional single-guide system cannot provide equally good correction at every target position.
A laser guide star supplies an artificial bright reference and improves coverage. However, its finite-distance beam does not sample the full stellar turbulence column, and conventional laser systems need a natural reference for absolute image motion. The required reference brightness, angular separation, and desired correction quality therefore still constrain observations.