The Moving Sky: How Star Charts Map a Curved Sky

The Moving Sky Above Our Head

Every star chart begins with the impossible task of fitting the curved dome of the sky onto flat paper. Our night sky has no edges, no corners, no single place to be cut open, so there is no solution that does not distort one part or another. The trouble isn’t the sky’s size, it’s its curvature: a curved surface and a flat sheet simply cannot be matched without something giving way.

However, for thousands of years, people have found ways around this issue. This hub is about those ways. Our resources examine the star chart projection that flattens the dome with the least possible distortion, explain stellar coordinate systems, and explore how early cultures used the night sky as a calendar. To see the trade-off for yourself, drag the sphere in the projection explorer and watch how the math decides where each star lands.

The Wandering North Star

Watch the wanders of the North Star through epochs of time.

The North Star

Why the Stars Aren’t Where Your Ancestors Saw Them. The North Star won’t always be north. Earth wobbles and skies turn.

Sidereal vs. Tropical

Two valid ways to fix a star’s position, one tied to the seasons and one to the stars, and the slowly widening gap between them.

Lahiri Ayanamsa

Modern Indian astronomy needed one exact number to separate the two zodiacs. This is how it was chosen.

Wandering Planets

The five wandering lights the ancients tracked by eye, and how to find tonight’s planets in your own sky.

✦  Astronomy Picture of the Day  ✦

Seeing Titan

March 31, 2023
Shrouded in a thick atmosphere, Saturn's largest moon Titan really is hard to see. Small particles suspended in the upper atmosphere cause an almost impenetrable haze, strongly scattering light at visible wavelengths and hiding Titan's surface features from prying eyes. But Titan's surface is better imaged at infrared wavelengths where scattering is weaker and atmospheric absorption is reduced. Arrayed around this visible light image (center) of Titan are some of the clearest global infrared views of the tantalizing moon so far. In false color, the six panels present a consistent processing of 13 years of infrared image data from the Visual and Infrared Mapping Spectrometer (VIMS) on board the Cassini spacecraft orbiting Saturn from 2004 to 2017. They offer a stunning comparison with Cassini's visible light view. NASA's revolutionary rotorcraft mission to Titan is due to launch in 2027.