We have spoken so far only of systems of two associated suns, but
many systems exist in which three or more sun-like bodies are in
revolution about a common center of gravity. Frequently two fairly
close suns are in revolution about a common center of gravity, in a
period, say, of fifty or sixty years, while a third sun revolves at
a comparatively great distance about the center of gravity of itself
and the first pair in a period of several hundred years. Or possibly
the third sun also possesses a close attendant and the two pairs
revolve in a period of great length about a common center of gravity.
Such, for instance, are the systems of _Zeta Cancri_ and _Epsilon
Lyræ_. In the former system the closer components revolve rapidly
about their center of gravity in a period of about sixty years, while
the remote companion shows irregularities in its motion that indicate
that it is revolving about a dark body in a period of seventeen and
a half years, while the two together are revolving very slowly in a
period of six or seven centuries, about a common center of gravity
with the first pair in a retrograde direction.
The wider pair of _Epsilon Lyræ_ is a naked-eye double for it can
be seen as a double star by a keen eye, while even a three-inch
telescope will separate each of the components into a double star. So
extensive is this system that the periods of revolution of the closer
components occupy several centuries, one pair appearing to revolve
about twice as rapidly as the other, while the period of revolution
of the two pairs about a common center is probably a matter of
thousands of years. The gap that separates the two pairs may be so
great that light requires months to cross it.
These multiple systems are by no means exceptional. They are to be
found in profusion among the brilliant _Orion_ stars. They have been
referred to as "knots" of stars and it has been suggested that they
may have originated as local condensations in one vast nebulous
tract. A system of only two components appears to be the exception
rather than the rule, groups of several connected suns being more
numerous than single pairs.
In all of these double and multiple systems there exists the
possibility of minute satellites, such as our own earth, in
attendance upon some one component of the system. Such tiny bodies
shining only by reflected light from a nearby brilliant sun would be
hopelessly invisible in the most powerful telescope.
We can only assume that it is far more reasonable to believe in than
to disprove the existence of such satellites.
Our own solar system, then, represents neither in its mechanical nor
physical features, the only possibilities for the maintenance of
life; it can neither be considered a unique form, nor even the most
generally prevalent form in the universe.
XXX
ASTRONOMICAL DISTANCES
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account