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Galactic Center

space Maturity 7-9

Our galaxy has a middle.

CentreMilkyWayMap.png
CentreMilkyWayMap.png
It is a very bright place. A big black hole lives there. It helps hold the stars. It is a busy spot in space.
Galactic Cntr full cropped.jpg
Galactic Cntr full cropped.jpg
Do you like to look at stars?

41 words

Our galaxy has a middle.

CentreMilkyWayMap.png
CentreMilkyWayMap.png

It is a very bright place. A giant black hole lives there. It is called Sagittarius A*.

EHT Saggitarius A black hole.tif
EHT Saggitarius A black hole.tif

This black hole is very heavy. It is as heavy as millions of suns. It sits in a crowded spot. There are 10 million stars near it.

Dust in space can hide this area. It blocks the light we see. Scientists use special tools to look through it. They can see the stars and gas.

This center is a busy place. It is the heart of our home in space.

Galactic Cntr full cropped.jpg
Galactic Cntr full cropped.jpg

102 words

Our galaxy has a very busy heart. This place is called the Galactic Center.

CentreMilkyWayMap.png
CentreMilkyWayMap.png
It sits in the direction of the Sagittarius stars. It is a very bright spot in the sky.

A giant object lives at the very middle. This is a supermassive black hole. Scientists call it Sagittarius A*.

EHT Saggitarius A black hole.tif
EHT Saggitarius A black hole.tif
It is very heavy. It has the mass of about 4 million suns. Gas falls toward it. This can make the area glow with power.

Space is full of dust. This dust blocks our view. We cannot see the center with normal light. Instead, we use infrared light. This is a type of light that can pass through dust.

Infrared-visible light comparison of VISTA’s gigapixel view of the centre of the Milky Way.ogv
Infrared-visible light comparison of VISTA’s gigapixel view of the centre of the Milky Way.ogv
We also use radio waves to study it.

Many stars live near the center. There are 10 million stars in a small area. Most are old red giant stars. But there are also many young, massive stars. These stars formed about 1 million years ago.

Milky Way Galaxy and a meteor.jpg
Milky Way Galaxy and a meteor.jpg
Scientists think they might form in a disk of gas around the black hole.

195 words

The Milky Way has a busy heart called the Galactic Center.

CentreMilkyWayMap.png
CentreMilkyWayMap.png
This place is the barycenter, which is the center of mass for our whole galaxy. It sits in the direction of the constellations Sagittarius, Ophiuchus, and Scorpius. The center is a very bright part of our sky. It is located near the star Lambda Scorpii and the Butterfly Cluster. This region is also home to the massive galactic bulge.
Simulation of the X-shaped bulge of the Milky Way.ogv
Simulation of the X-shaped bulge of the Milky Way.ogv
Many people find this area fascinating because it holds so much energy.

A huge object lives at the very center of this region. It is a supermassive black hole named Sagittarius A*.

EHT Saggitarius A black hole.tif
EHT Saggitarius A black hole.tif
This black hole has a mass of about 4 million suns. Gas falls toward the black hole in a way called accretion. As this gas falls, it can release energy and power a bright radio source. In 2015, NASA saw an X-ray flare that was 400 times brighter than usual. This might have happened because an asteroid broke apart near the hole. The radio source itself is about 44 million kilometers wide. This is slightly smaller than the distance from Mercury to our Sun.

Finding the center was a hard job for many years. In 1755, Immanuel Kant thought a large star lived at the center. Later, in 1918, Harlow Shapley thought the center was near Sagittarius. However, dark clouds of dust blocked the view for optical telescopes. In the 1940s, Walter Baade used the Hooker Telescope to find a gap. This gap is called Baade's Window because it lets us see through the dust.

Infrared-visible light comparison of VISTA’s gigapixel view of the centre of the Milky Way.ogv
Infrared-visible light comparison of VISTA’s gigapixel view of the centre of the Milky Way.ogv
In 1954, a team led by Joseph Lade Pawsey studied radio waves there. They found the intense point-source that we now call Sagittarius A.

There are many amazing facts about the stars in this area. About 10 million stars live within one parsec of the center.

Milky Way Galaxy and a meteor.jpg
Milky Way Galaxy and a meteor.jpg
Most of these are old red giant stars. However, there are also over 100 massive young stars like Wolf-Rayet stars. These stars formed about 1 million years ago in a gas disk. Scientists also found two huge structures called Fermi bubbles. These bubbles of plasma reach 25,000 light years above and below the core. They were discovered by a team led by Douglas Finkbeiner. In July 2022, researchers even found prebiotic molecules near the center.

Studying the center is like trying to look through a thick fog. Interstellar dust blocks visible and ultraviolet light. To see through it, astronomers use infrared light and radio waves.

Galactic zero longitude.png
Galactic zero longitude.png
These tools allow us to see the stars and the black hole clearly. We can also see the distance to the center using standard candles. These are special stars used to measure how far away things are. Estimates show the center is about 26,000 light years away. Knowing about the center helps us understand how our whole galaxy works.

503 words

The Galactic Center is the barycenter of the Milky Way galaxy. This means it is the center of mass for our entire galaxy. It also serves as a corresponding point on the rotational axis. This region is incredibly bright and sits in the direction of the constellations Sagittarius, Ophiuchus, and Scorpius.

CentreMilkyWayMap.png
CentreMilkyWayMap.png
Visually, it is located near the Butterfly Cluster or the star Lambda Scorpii. The center is part of a much wider central region known as the galactic bulge.
Simulation of the X-shaped bulge of the Milky Way.ogv
Simulation of the X-shaped bulge of the Milky Way.ogv
This area is essential for understanding how our galaxy rotates and functions.

At the very heart of the center lies a supermassive black hole. Astronomers call this object Sagittarius A*. It has a mass of approximately 4 million solar masses. This means it is as heavy as 4 million suns. The black hole is surrounded by a bright radio source. This source comes from a bright spot near the event horizon.

EHT Saggitarius A black hole.tif
EHT Saggitarius A black hole.tif
As gas falls toward the black hole through a process called accretion, it releases immense energy. This energy powers the radio source. In 2008, researchers measured the diameter of the radio source to be 44 million kilometers. This is slightly less than the distance from Mercury to the Sun.

Studying the Galactic Center is difficult because of interstellar dust. This dust blocks visible, ultraviolet, and soft X-ray light. To see through the dust, scientists use infrared, radio, and gamma ray wavelengths.

Infrared-visible light comparison of VISTA’s gigapixel view of the centre of the Milky Way.ogv
Infrared-visible light comparison of VISTA’s gigapixel view of the centre of the Milky Way.ogv
For example, the VISTA telescope uses infrared light to peer through opaque dust filaments. Astronomers also use "standard candles" to measure distance. These are specific types of stars, like RR Lyrae variables or red-clump stars, used to calculate how far away the center is. Current estimates place the distance within a specific range, though exact figures are still being refined.

Finding the center took many years of discovery. In 1755, Immanuel Kant suggested a large star sat at the center. In 1918, Harlow Shapley noticed globular clusters seemed centered near Sagittarius. However, dark molecular clouds blocked his view. In the 1940s, Walter Baade found a gap in the dust using the Hooker Telescope. This gap is known as Baade's Window.

Galactic zero longitude.png
Galactic zero longitude.png
Later, in 1954, a team led by Joseph Lade Pawsey used radio astronomy to study a powerful belt of emission. They identified an intense point-source near the center and named it Sagittarius A. In 1958, the International Astronomical Union adopted this position as the true zero coordinate for galactic longitude.

The stellar population near the center is quite diverse. There are about 10 million stars within one parsec of Sagittarius A*. Most of these are old red giant stars. However, there is also a group of over 100 massive stars, including Wolf-Rayet stars.

Milky Way Galaxy and a meteor.jpg
Milky Way Galaxy and a meteor.jpg
These young stars are a surprise because tidal forces should prevent them from forming. Scientists believe they may have formed within a massive gas accretion disk. Interestingly, the density of old stars does not increase near the black hole as expected. Instead, there is a "hole" or core where the density falls inward near the center.

Beyond the stars, the galaxy has massive structures called Fermi bubbles. These are two large elliptical lobes of energetic plasma. They extend about 25,000 light years above and below the Galactic Center. They emit gamma rays and X-rays. A team led by Douglas Finkbeiner discovered them, and they later won the Bruno Rossi Prize. These bubbles are connected to the core by plasma structures called chimneys. Computer simulations from 2022 suggest the Sagittarius A* black hole caused these bubbles. They represent a massive release of energy from the galactic core.

The Galactic Center is also a place of chemical interest. In July 2022, astronomers found massive amounts of prebiotic molecules there. Some of these molecules are associated with RNA. This discovery shows that the building blocks of life exist even in this extreme environment. Looking forward, scientists predict a "starburst" event. In about 200 million years, a ring of gas may trigger rapid star formation. This could happen at a rate 100 times faster than what we see today. Such an event might also create galactic relativistic jets as matter falls into the black hole.

721 words
🖼️ Images & Media (7)
File:Galactic Cntr full cropped.jpg
Galactic Cntr full cropped.jpg
File:Galactic_zero_longitude.png
Galactic_zero_longitude.png
File:CentreMilkyWayMap.png
CentreMilkyWayMap.png
Infrared-visible light comparison of...
Simulation of the X-shaped bulge of the...
EHT Saggitarius A black hole.tif
File:Milky Way Galaxy and a meteor.jpg
Milky Way Galaxy and a meteor.jpg
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