
PZ Tel - System
Simulates PZ Tel, a Sun-like G-type star of 1.36 solar masses, and PZ Tel b, a 27.0-Jupiter-mass companion, with an orbital period of 120 years, at 27.0 AU from its star, on an eccentric orbit (e ≈ 0.52).
Browse every interactive 3D gravity simulation — from NASA exoplanet systems and JPL Horizons Solar System models to n-body choreographies, spacecraft trajectories, and hypothetical what-if experiments. All run on Newtonian n-body physics.

Simulates PZ Tel, a Sun-like G-type star of 1.36 solar masses, and PZ Tel b, a 27.0-Jupiter-mass companion, with an orbital period of 120 years, at 27.0 AU from its star, on an eccentric orbit (e ≈ 0.52).

Simulates five equal masses tracing a pentagram as they orbit one another. The five-pointed star is a periodic n-body solution: the system repeats after one complete cycle.

Simulates the Sun, Earth, and Venus to show the pentagram Venus traces relative to Earth every eight years from their near 13:8 orbital resonance.

Simulates hypothetical Planet Nine with Neptune and detached objects such as Sedna and 2012 VP113, testing whether a distant 5–10 Earth-mass body can shepherd their orbits.

Simulates Pluto, Charon, Styx, Nix, Kerberos, and Hydra as a binary dwarf-planet system whose barycenter lies outside Pluto, with a 6.4-day mutual orbit.

Simulates Pr0201, a Sun-like F-type star of 1.24 solar masses, and Pr0201 b, a 0.54-Jupiter-mass companion, with an orbital period of 4.4 days, at 0.060 AU from its star.

Simulates Pr0211, a Sun-like G-type star of 0.94 solar masses, and Pr0211 b, a 1.88-Jupiter-mass companion, with an orbital period of 2.1 days, at 0.032 AU from its star.

Simulates Proxima Centauri, the nearest star to the Sun. Proxima b is an Earth-mass world in the habitable zone, only 4.2 light-years away. The host is a flare-active red dwarf in Alpha Centauri.

Simulates Qatar-1, an orange K-type dwarf of 0.84 solar masses, and Qatar-1 b, a 1.29-Jupiter-mass companion, with an orbital period of 1.4 days, at 0.023 AU from its star, and an equilibrium temperature near 1,418 K.

Simulates Qatar-10, a Sun-like F-type star of 1.16 solar masses, and Qatar-10 b, a 0.74-Jupiter-mass companion, with an orbital period of 1.6 days, at 0.029 AU from its star, and an equilibrium temperature near 1,955 K.

Simulates Qatar-2, an orange K-type dwarf of 0.74 solar masses, and Qatar-2 b, a 2.49-Jupiter-mass companion, with an orbital period of 1.3 days, at 0.022 AU from its star, and an equilibrium temperature near 1,344 K.

Simulates Qatar-3, a Sun-like G-type star of 1.15 solar masses, and Qatar-3 b, a 4.31-Jupiter-mass companion, with an orbital period of 2.5 days, at 0.038 AU from its star, and an equilibrium temperature near 1,681 K.

Simulates Qatar-4, an orange K-type dwarf of 0.90 solar masses, and Qatar-4 b, a 6.10-Jupiter-mass companion, with an orbital period of 1.8 days, at 0.028 AU from its star, and an equilibrium temperature near 1,385 K.

Simulates Qatar-5, a Sun-like G-type star of 1.13 solar masses, and Qatar-5 b, a 4.32-Jupiter-mass companion, with an orbital period of 2.9 days, at 0.041 AU from its star, and an equilibrium temperature near 1,415 K.

Simulates Qatar-6, an orange K-type dwarf of 0.82 solar masses, and Qatar-6 b, a 0.67-Jupiter-mass companion, with an orbital period of 3.5 days, at 0.042 AU from its star, and an equilibrium temperature near 1,006 K.

Simulates Qatar-7, a Sun-like F-type star of 1.41 solar masses, and Qatar-7 b, a 1.88-Jupiter-mass companion, with an orbital period of 2.0 days, at 0.035 AU from its star, and an equilibrium temperature near 2,053 K.

Simulates Qatar-8, a Sun-like G-type star of 1.03 solar masses, and Qatar-8 b, a 0.37-Jupiter-mass companion, with an orbital period of 3.7 days, at 0.047 AU from its star, and an equilibrium temperature near 1,457 K.

Simulates Qatar-9, an orange K-type dwarf of 0.72 solar masses, and Qatar-9 b, a 1.19-Jupiter-mass companion, with an orbital period of 1.5 days, at 0.023 AU from its star, and an equilibrium temperature near 1,134 K.