Showing posts with label galaxies. Show all posts
Showing posts with label galaxies. Show all posts

August 5 - Quasar Breakthrough

  Posted on August 5, 2022     

This is an update of my post published on August 5, 2011:



In the late 1950s, astronomers discovered radio sources in the sky that had no visible counterpart. By 1960 hundreds of these radio sources, which seemed starlike in size, had been detected—and as astronomers searched the skies for one that could be seen as well, one was finally spotted. It looked like a faint blue star, but the spectrum obtained had completely unknown emission lines. The quasi-stellar radio sources remained a big mystery.

Quasar is an acronym for “quasi-stellar.” The term was invented by Chinese-born American astrophysicist Hong-Yee Chiu.


It was on this day in 1962 that another faint “star” was identified as the quasar 3C 273. This quasar's spectrum was also very odd—and scientists realized that it was really just a normal spectrum red-shifted so far that it was hard to recognize.

Wow—what does all that mean?

Well, the electromagnetic spectrum is like a rainbow of energy that is emitted from something. Your body and planet Earth emit infrared radiation—heatand much hotter objects such as stars emit more energetic radiation, including visible light. A spectrum from a star such as our sun looks a rainbow because there are elements emitting various different colors of light.





Each element, when heated, emits its own characteristic spectrum, and the most common element in the universe, hydrogen, emits four specific, known spectral lines. What scientists realized as they studied quasars' spectra is that they were seeing familiar hydrogen spectral lines, with the expected spacing between the lines, but the lines were moved way over to the red end of the spectrum. That's what we call a red-shift.


A red-shift means the light source is moving away from us, the viewers. (And a blue-shift occurs when the light source is moving toward us.) 


This is similar to the way sound seems to change pitch depending on whether the source is moving toward or away from the listener. Have you ever heard a passing fire truck running its siren or train sounding its whistle? The sound dramatically drops from higher to lower pitch the moment the vehicle's sound source passes you. The faster the firetruck or train is going, the bigger the difference in the sound. 

And this sort of shift (also called the Doppler effect) happens in visible light (or other electromagnetic radiation) as stars or galaxies move toward or away from us.

Almost all galaxies are moving away from us. You've heard of the Big Bang, right? Well, the galaxies are all flying apart from one another, and we can tell the distance of a particular galaxy by seeing how much the light it produces is red-shifted—the farther away, the quicker it seems to be moving away, and the more red-shifted the spectral lines.

(This info may be easier to understand in a video. Try this one.)

Scientists are now quite sure that the mysterious quasars are the very energetic centers of very, very distant galaxies. These compact regions surround the galaxies' supermassive black holes.

With our space telescopes (the famous Hubble, and the newly famous James Webb), we are able to see galaxies that are farther and farther away. It's pretty amazing to point a telescope at a black patch of sky and then - after collecting light for a while - to see this:


(The objects with starburst lines radiating outwards
are the few nearby stars in this view. The non-starburst
objects are faraway galaxies, and the little red arcs are
galaxies so far away that their shapes are distorted.
They are from the early universe!)


December 15 - Simon Marius “Discovers” the Andromeda Galaxy

  Posted on December 15, 2021


This is an update of my post published on December 15, 2010:







When we say that someone has discovered something, we tend to think that person was the very first to observe that thing. We must always, always remember to add “that we know of,” because we usually go by discoveries and observations that are recorded in some way or passed on to other people. Obviously, a lot of people see things that they don't write down or otherwise record!

In the case of Simon Marius's “discovery” of the Andromeda Galaxy, in 1612, there are a few problems:

  1. Simon Marius didn't have any knowledge of this, but medieval Persian astronomers had seen this galaxy centuries ago, and it had been described by Al Sufi as early as 964 A.D. (648 years earlier!). We can say that Marius independently RE-discovered Andromeda, and he was the first person to observe it through a telescope. That we know of.

  1. Simon Marius didn't know that what he was seeing was a separate galaxy. He called it the “nebula in the girdle of Andromeda.” A nebula is a cloud of dust and gas, and until Edwin Hubble discovered that there were other galaxies outside of our Milky Way Galaxy, around 1922, a smudgy patch of light in space was called a nebula.

    (Andromeda is a constellation that supposedly pictures a legendary princess wearing a gown and girdle.)


    Andromeda, lying down









  
Who is this Simon Marius fellow?

He was an astronomer from Bavaria, which is now a part of Germany. In addition to re-discovering the Andromeda Galaxy, he named the first four Jovian moons, Io, Europa, Ganymede, and Callisto. 

(Jovian means “belonging to, or having to do with, Jupiter.”)




Quick quiz:

As I said above, a nebula is a cloud of dust and gas in space. A galaxy, on the other hand, is a huge group of stars, star systems, dust and gas bound together by gravity, often shaped like a spiral or an ovoid. The nebula we see are by in large INSIDE our own galaxy, and of course the other galaxies are outside our own.
Which of the items below are nebulae, and which are galaxies?

 

1

2

3

4

5



By the way...


There are a LOT of galaxies in the universe. Scientists estimate that there might be as many as 200 billion galaxies, each with millions to trillions of stars. Every smudge of light you see in this photo is a galaxy:





ANSWERS: 
1. galaxy
2. galaxy
3. nebula
4. nebula
5. galaxy


Did you know...?

  • The Andromeda Galaxy is the nearest large galaxy to our own Milky Way Galaxy, and like our galaxy it is shaped in a spiral. Together with one other spiral galaxy and more than 30 other galaxies, many of them dwarf galaxies, these galaxies make up our Local Group.



  • As I said, the Andromeda Galaxy is pretty nearby (as galaxies go)—but it's going to get a whole lot closer. We can measure that the galaxy is approaching us at about 120 kilometers per second. Scientists believe that the Andromeda and Milky Way Galaxies may end up colliding! (But don't worry, it won't happen for another 3 to 5 billion years.)


What does a galaxy collision look like?
Beautiful!



 

What does it sound like?
It's silent, like all collisions in space. There is no air to be compressed into “sound waves.”

 

What will happen if the expected collision does happen? Will the galaxies explode and be destroyed? Will all the stars smash into each other and annihilate each other?
No. Pretty much everything will be fine. Galaxies are mostly empty space, with the huge distances between stars dwarfing the size of the stars, so it is unlikely that objects inside the galaxies will actually hit one another. If the collision happens, the galaxies will likely merge into one larger galaxy.
The Milky Way galaxy is colliding with (and “eating” or absorbing) a dwarf galaxies even as I type this, and it done so many times in the past as well.



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