Illustration of a star with several orbiting exoplanets of different sizes, one transiting in front of the star

Exoplanet Archive

Search and filter every confirmed exoplanet in NASA's Exoplanet Archive — refreshed daily from the source. Sort by distance, radius, or mass to explore what's out there.

Host star statistics: how many stars, planets per system →  ·  How each one was found: the 11 detection methods →

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4709 planets found — page 43 of 95.

Planet Host star Method Year Radius (R⊕) Mass (M⊕) Distance (pc)
K2-72 b K2-72 Transit 2016 1.08 — 66.4
K2-72 c K2-72 Transit 2016 1.16 — 66.4
K2-72 d K2-72 Transit 2016 1.01 — 66.4
K2-72 e K2-72 Transit 2016 1.29 — 66.4
K2-73 b K2-73 Transit 2016 2.58 9.20 269.2
K2-74 b K2-74 Transit 2016 2.31 — 377.8
K2-75 b K2-75 Transit 2016 2.67 — 561.9
K2-75 c K2-75 Transit 2016 2.77 — 561.9
K2-77 b K2-77 Transit 2016 2.50 — 141.7
K2-79 b K2-79 Transit 2016 4.15 5.90 256.0
K2-8 c K2-8 Transit 2016 2.41 — 403.5
K2-80 b K2-80 Transit 2016 2.01 — 200.8
K2-80 c K2-80 Transit 2016 1.47 — 200.8
K2-81 b K2-81 Transit 2016 1.97 — 252.3
K2-83 b K2-83 Transit 2016 1.24 — 125.5
K2-83 c K2-83 Transit 2016 1.48 — 125.5
K2-84 b K2-84 Transit 2016 2.41 — 284.9
K2-84 c K2-84 Transit 2016 2.03 — 284.9
K2-85 b K2-85 Transit 2016 1.40 3.20 97.2
K2-86 b K2-86 Transit 2016 1.96 — 258.7
K2-87 b K2-87 Transit 2016 7.60 — 491.2
K2-88 b K2-88 Transit 2016 1.23 — 110.6
K2-89 b K2-89 Transit 2016 0.61 — 86.0
K2-90 b K2-90 Transit 2016 2.60 — 134.2
K2-90 c K2-90 Transit 2016 1.30 — 134.2
K2-91 b K2-91 Transit 2016 1.10 — 62.6
K2-95 b K2-95 Transit 2016 3.31 — 179.9
K2-97 b K2-97 Transit 2016 13.45 174.49 878.4
K2-98 b K2-98 Transit 2016 5.07 34.01 518.6
K2-99 b K2-99 Transit 2016 11.88 276.51 519.2
KELT-10 b KELT-10 Transit 2016 15.68 215.81 188.4
KELT-14 b KELT-14 Transit 2016 19.54 408.09 250.1
KELT-15 b KELT-15 Transit 2016 19.50 416.36 324.7
KELT-17 b KELT-17 Transit 2016 17.09 416.36 226.5
KELT-4 A b KELT-4 A Transit 2016 19.04 286.68 218.1
Kepler-1000 b Kepler-1000 Transit 2016 4.76 — 1115.6
Kepler-1001 b Kepler-1001 Transit 2016 3.15 — 929.0
Kepler-1002 b Kepler-1002 Transit 2016 1.71 — 408.3
Kepler-1003 b Kepler-1003 Transit 2016 1.78 — 941.9
Kepler-1004 b Kepler-1004 Transit 2016 6.28 — 1152.7
Kepler-1005 b Kepler-1005 Transit 2016 1.50 — 567.8
Kepler-1006 b Kepler-1006 Transit 2016 1.54 — —
Kepler-1007 b Kepler-1007 Transit 2016 1.44 — —
Kepler-1008 b Kepler-1008 Transit 2016 1.28 — 282.6
Kepler-1009 b Kepler-1009 Transit 2016 2.17 — 355.0
Kepler-1010 b Kepler-1010 Transit 2016 2.32 — 579.3
Kepler-1011 b Kepler-1011 Transit 2016 2.87 — 736.8
Kepler-1012 b Kepler-1012 Transit 2016 1.29 — 411.1
Kepler-1013 b Kepler-1013 Transit 2016 2.15 — 422.2
Kepler-1014 b Kepler-1014 Transit 2016 2.39 — 624.8
← Previous Page 43 of 95 Next →

ℹ️ About this data
  • Sourced from NASA's Exoplanet Archive (Caltech/IPAC), refreshed daily. Only confirmed planets are included — candidates awaiting confirmation aren't in this list.
  • A blank field means that measurement hasn't been published for that planet — not every planet has a known mass, for instance, especially ones found only by the transit method (which measures radius directly, but needs a separate technique like radial velocity to get mass).
📏 Units and symbols legend
Symbol Means In metric
R⊕Earth radii — planet size relative to Earth (Earth = 1)1 R⊕ ≈ 6,371 km
M⊕Earth masses — planet mass relative to Earth (Earth = 1)1 M⊕ ≈ 5.972 × 10²⁴ kg
R☉Solar radii — host star size relative to the Sun (Sun = 1)1 R☉ ≈ 696,000 km
M☉Solar masses — host star mass relative to the Sun (Sun = 1)1 M☉ ≈ 1.989 × 10³⁰ kg
KKelvin — temperature (star surface or planet equilibrium)°C = K − 273.15 (shown alongside on each planet's page)
pcParsecs — distance from Earth1 pc ≈ 3.086 × 10¹³ km ≈ 3.26 light-years
daysOrbital period — time for one full orbit around the host star, always in Earth days regardless of the planetEarth's own orbital period is 365.25 days — divide by that to get Earth years
RA / DecRight ascension / declination — the star's position on the skyBoth in degrees — the sky's equivalent of longitude/latitude
EccentricityHow elongated the orbit isUnitless: 0 = perfect circle, closer to 1 = more elongated ellipse

Astronomy uses Earth/Sun/Jupiter as yardsticks instead of kg or km because the numbers involved (10²⁴–10³⁰) are unwieldy otherwise — for scale, a gas giant like Jupiter is about 11 R⊕ and 318 M⊕.

💻 Show API usage example (cURL)
curl -sS "https://devops.majbase.com/exoplanets/api?q=kepler&method=Transit&sort=distance&page=1"

Returns {"rows": [...], "total", "page", "pages"}, or {"error": "..."} if temporarily unavailable. All query params are optional.