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Showing posts with label maximum usable power. Show all posts
Showing posts with label maximum usable power. Show all posts

Saturday, 15 February 2014

Why do I see stars only as points of light even when using my highest power eyepiece?

The ability to see details on an object ultimately depends on how far away it is and how big it is. Stars are so very far away that they will never show a real disk or ball shape in a telescope.

Planets, the Moon, and the Sun are much closer and will show discernible disks and details even at low or medium powers in most telescopes. Nebulae and galaxies are also very far away, but are so enormous they will also show details in many telescopes.

What you will see looking at stars at high magnifications (assuming a steady atmosphere that will allow this) is an optical pattern known as the diffraction pattern. It’s a bull’s-eye with a bright central area or disk surrounded by one or more concentric rings. It is not the actual disk of the star you are seeing. The diffraction pattern is due to the way the telescope’s circular lens or mirror acts on light from a pinpoint source like a star.

How much magnification can I use, and how much is too much?

Telescope magnification is actually a relationship between two independent optical systems – the telescope itself and the eyepiece you are using. To determine power, divide the focal length of the telescope (in mm) by the focal length of the eyepiece (in mm). By exchanging an eyepiece of one focal length for another, you can increase or decrease the power of the telescope. For example, a 25 mm eyepiece used on a 1250 mm focal-length telescope would yield a power of 50x (1250/25 = 50) and a 10 mm eyepiece used on the same instrument would yield a power of 125x (1250/10 = 125). Since eyepieces are interchangeable, a telescope can be used at a variety of powers.

There are practical limits of magnification for telescopes. These are determined by the laws of optics and the nature of the human eye. As a rule of thumb, the maximum usable power is equal to 50-60 times the aperture of the telescope (in inches) under ideal conditions. Powers higher than this usually shows a dim, lower contrast image. For example, the maximum power on a 127 mm telescope (5” aperture) is in the range 250x - 300x. As power increases, the sharpness and detail seen will be diminished. The higher powers are mainly used for lunar, planetary, and binary star observations.

Most of your observations will be done with lower powers (6 to 25 times the aperture of the telescope in inches). With these powers, the images will be much brighter and crisper, providing more enjoyment and satisfaction with the wider fields of view.

A good way to increase magnification is to use a Barlow lens. A Barlow lens rated at 2x can be used with your existing eyepiece and it will double the magnification of any existing eyepiece.

I have a refractor telescope with 900mm focal length and 60mm objective lens. Why can't I get a clear image when I try to use a 2x Barlow lens with a 6mm eyepiece?

This is because you’ve exceeded the practical limits of magnification for your telescope. The practical limits of magnification of a telescope are determined by the laws of optics and the nature of the human eye. 

As a rule of thumb, the maximum usable power is equal to 50x-60x the aperture of the telescope (in inches) under ideal conditions. Powers higher than this usually give you a dim, lower contrast image. For example, the maximum power on a 60 mm telescope (2.4 in aperture) is in the range 120x-142x. The higher powers are mainly used for lunar, planetary, and binary star observations. As power increases, the sharpness and detail seen will be diminished.

The combination of the 6 mm eyepiece, 2x Barlow, and 900 mm focal length gives 300x. This is well beyond the maximum usable power of the scope.

The Earth's atmosphere also plays an important part in limiting the maximum magnification you can use. Instabilities in the atmosphere such as heat radiating from the ground and surrounding buildings, high altitude winds, and other weather conditions can cause the image to blur. This "bad seeing" can drastically distort your image. This also explains why bright stars appear to twinkle. The best time to use high magnification is on nights when the stars do not appear to twinkle very much.