
HATS-52 - System
Simulates HATS-52, a Sun-like F-type star of 1.11 solar masses, and HATS-52 b, a 2.24-Jupiter-mass companion, with an orbital period of 1.4 days, at 0.025 AU from its star, and an equilibrium temperature near 1,834 K.
Exoplanets
Systems with a single confirmed planet. Most are hot Jupiters or super-Earths on short-period orbits; others are distant giants found by radial velocity. A clean two-body laboratory for Keplerian motion around a real star.

Simulates HATS-52, a Sun-like F-type star of 1.11 solar masses, and HATS-52 b, a 2.24-Jupiter-mass companion, with an orbital period of 1.4 days, at 0.025 AU from its star, and an equilibrium temperature near 1,834 K.

Simulates HATS-53, a Sun-like G-type star of 0.96 solar masses, and HATS-53 b, a 0.59-Jupiter-mass companion, with an orbital period of 3.9 days, at 0.048 AU from its star, and an equilibrium temperature near 1,312 K.

Simulates HATS-54, a Sun-like G-type star of 1.05 solar masses, and HATS-54 b, a 0.75-Jupiter-mass companion, with an orbital period of 2.5 days, at 0.037 AU from its star, and an equilibrium temperature near 1,429 K.

Simulates HATS-55, a Sun-like F-type star of 1.20 solar masses, and HATS-55 b, a 0.92-Jupiter-mass companion, with an orbital period of 4.2 days, at 0.054 AU from its star, and an equilibrium temperature near 1,367 K.

Simulates HATS-56, a Sun-like F-type star of 1.57 solar masses, and HATS-56 b, a 0.60-Jupiter-mass companion, with an orbital period of 4.3 days, at 0.060 AU from its star, and an equilibrium temperature near 1,902 K.

Simulates HATS-57, a Sun-like G-type star of 1.03 solar masses, and HATS-57 b, a 3.15-Jupiter-mass companion, with an orbital period of 2.4 days, at 0.035 AU from its star, and an equilibrium temperature near 1,413 K.

Simulates HATS-58 A, a Sun-like F-type star of 1.46 solar masses, and HATS-58 A b, a 1.03-Jupiter-mass companion, with an orbital period of 4.2 days, at 0.058 AU from its star, and an equilibrium temperature near 1,721.

Simulates HATS-6, a cool M-dwarf of 0.57 solar masses, and HATS-6 b, a 0.32-Jupiter-mass companion, with an orbital period of 3.3 days, at 0.036 AU from its star, and an equilibrium temperature near 713 K.

Simulates HATS-60, a Sun-like G-type star of 1.10 solar masses, and HATS-60 b, a 0.66-Jupiter-mass companion, with an orbital period of 3.6 days, at 0.047 AU from its star, and an equilibrium temperature near 1,528 K.

Simulates HATS-61, a Sun-like G-type star of 1.08 solar masses, and HATS-61 b, a 3.40-Jupiter-mass companion, with an orbital period of 7.8 days, at 0.079 AU from its star, and an equilibrium temperature near 1,226 K.

Simulates HATS-62, a Sun-like G-type star of 0.90 solar masses, and HATS-62 b, a 0.18-Jupiter-mass companion, with an orbital period of 3.3 days, at 0.042 AU from its star, and an equilibrium temperature near 1,237 K.

Simulates HATS-63, a Sun-like G-type star of 0.93 solar masses, and HATS-63 b, a 0.96-Jupiter-mass companion, with an orbital period of 3.1 days, at 0.040 AU from its star, and an equilibrium temperature near 1,398 K.

Simulates HATS-64, a Sun-like F-type star of 1.56 solar masses, and HATS-64 b, a 0.96-Jupiter-mass companion, with an orbital period of 4.9 days, at 0.066 AU from its star, and an equilibrium temperature near 1,793 K.

Simulates HATS-65, a Sun-like F-type star of 1.26 solar masses, and HATS-65 b, a 0.82-Jupiter-mass companion, with an orbital period of 3.1 days, at 0.045 AU from its star, and an equilibrium temperature near 1,634 K.

Simulates HATS-66, a Sun-like F-type star of 1.41 solar masses, and HATS-66 b, a 5.33-Jupiter-mass companion, with an orbital period of 3.1 days, at 0.047 AU from its star, and an equilibrium temperature near 1,998 K.

Simulates HATS-67, a Sun-like F-type star of 1.44 solar masses, and HATS-67 b, a 1.45-Jupiter-mass companion, with an orbital period of 1.6 days, at 0.030 AU from its star, and an equilibrium temperature near 2,193 K.

Simulates HATS-68, a Sun-like F-type star of 1.35 solar masses, and HATS-68 b, a 1.29-Jupiter-mass companion, with an orbital period of 3.6 days, at 0.051 AU from its star, and an equilibrium temperature near 1,741 K.

Simulates HATS-69, an orange K-type dwarf of 0.89 solar masses, and HATS-69 b, a 0.58-Jupiter-mass companion, with an orbital period of 2.2 days, at 0.032 AU from its star, and an equilibrium temperature near 1,296 K.