Aquila
2340 OBJECTSAquila is an eagle flying up the Milky Way, headed by Altair — the twelfth-brightest star, 16.7 light years away, and spinning so fast that it is measurably flattened. Altair, Deneb and Vega form the Summer Triangle. The constellation lies along a rich stretch of the galactic plane and is crossed by the Great Rift, a lane of dust that splits the Milky Way lengthwise.
Aquila holds 2340 catalogued objects: 1688 stars, 388 neutron stars, 200 galaxies, 30 exoplanets, 17 star clusters, 11 nebulae, 4 unclassified, 2 black holes.
STARS · 1688NEUTRON STARS · 388GALAXIES · 200EXOPLANETS · 30STAR CLUSTERS · 17NEBULAE · 11UNCLASSIFIED · 4BLACK HOLES · 2
[
THE FAMOUS ONES
] 4 ENTRIES[
BRIGHTEST OBJECTS
] 12 SHOWNNAME
CLASS
MASS
DISTANCE
MAG
CONSTELLATION
Altair★
A7Vn white main-sequence star
—
16.73 ly
0.76 V
Aquila
Tarazed
K3II orange bright giant
—
394.9 ly
2.72 V
Aquila
Okab
A0IV-Vnn white subgiant
—
83.03 ly
2.99 V
Aquila
65 θ Aql
B9.5III blue-white giant
—
286.4 ly
3.24 V
Aquila
30 δ Aql
F1IV-V(n) yellow-white subgiant
—
50.64 ly
3.36 V
Aquila
16 λ Aql
B8.5V blue-white main-sequence star
—
123.7 ly
3.43 V
Aquila
Alshain
G8IV yellow subgiant
—
44.68 ly
3.71 V
Aquila
55 η Aql
F6Iab+B9.8V yellow-white supergiant
—
1382 ly
3.87 V
Aquila
12 Aql
K1III orange giant
—
143.9 ly
4.02 V
Aquila
13 ε Aql
K1-IIICN0.5 orange giant
—
154.9 ly
4.02 V
Aquila
71 Aql
G7.5IIIa yellow giant
—
337.3 ly
4.31 V
Aquila
41 ι Aql
B5III blue-white giant
~4.70 M☉
391.1 ly
4.36 V
Aquila
[
COMMON QUESTIONS
] 8 ANSWERED- Where in the sky is Aquila?
- Its boundary is centred near right ascension 19h 32m, declination +4.3°. It stands at its highest around midnight in mid-July, which puts it in the evening sky for the two months after that and behind the Sun half a year later.
- Can I see it from where I live?
- Every part of Aquila clears the horizon from latitudes between 65° S and 73° N. Outside that band some or all of the region never rises at all, whatever the time of year — a constellation is fixed on the sky, and it is your latitude that decides how much of the sky you get.
- What is the brightest thing in it?
- The brightest catalogued object in Aquila is Altair, at apparent magnitude 0.76 (V). That is apparent brightness — how it looks from Earth — so it mixes how much light a thing gives off with how far away it is, and the brightest object in a region is rarely the most interesting one.
- How are the stars in it named?
- The brightest carry Greek letters, assigned roughly in order of brightness — by Johann Bayer in 1603, and for the deep southern constellations by Nicolas-Louis de Lacaille in the 1750s — followed by the Latin genitive of the constellation's name. Fainter naked-eye stars north of about −30° take a number from John Flamsteed's catalogue, which never covered the far south, and fainter still a designation from whichever survey recorded them.
- What exactly are the boundaries?
- Lines of constant right ascension and declination, drawn by Eugène Delporte for the IAU in 1930 and referred to the sky as it stood in 1875. Precession has tilted the sky against them since, which is why the boundaries on a modern chart are very slightly askew.
- Are the stars in Aquila actually near each other?
- Almost never. The stars in a constellation lie at wildly different distances and are not related to one another in any way — the pattern is a line of sight from one particular planet. Two stars that look adjacent can be a hundred times further apart than either is from the Sun.
- What is the difference between a constellation and an asterism?
- A constellation is one of the 88 regions the IAU recognises, with a fixed boundary and an official name. An asterism is any memorable pattern that is not one — the Plough inside Ursa Major, the Summer Triangle drawn across three constellations, the Great Square shared between two.
- Why are the names in Latin?
- Because the list was assembled in Latin. Fifty of the 88 descend from Ptolemy's second-century catalogue of forty-eight — his ship Argo was later cut into three — and the rest were coined between the sixteenth and eighteenth centuries to fill the southern sky and the gaps. The genitive form is what star names use: Alpha Orionis means the alpha star of Orion.