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Heliosphere

space Maturity 7-9

The Sun makes a big bubble.

PIA12375.jpg
PIA12375.jpg
This bubble is in space. It keeps us safe from bad rays. It is like a shield for us. Can you see the Sun's bubble?
The Sun as seen in January 1st 2015.jpg
The Sun as seen in January 1st 2015.jpg

40 words

The Sun makes a giant bubble in space.

PIA12375.jpg
PIA12375.jpg

The Sun sends out a wind of tiny bits. This wind pushes out into space. It makes the bubble grow.

The Sun as seen in January 1st 2015.jpg
The Sun as seen in January 1st 2015.jpg

This bubble acts like a shield. It keeps us safe from bad rays. It stops many things from the stars.

The bubble looks like a comet. One side is round. The other side has a long tail.

Two small ships flew far away. They went past the edge of the bubble. Now they are in deep space.

Transitional regions.jpg
Transitional regions.jpg

96 words

The Sun makes a giant bubble in space. This bubble is called the heliosphere.

PIA12375.jpg
PIA12375.jpg
It is made by the solar wind. This is a stream of tiny bits from the Sun. The wind pushes out in all directions. This keeps the bubble inflated.
The Sun as seen in January 1st 2015.jpg
The Sun as seen in January 1st 2015.jpg

The heliosphere acts like a shield. It protects our Solar System from cosmic radiation. This radiation comes from deep space. The bubble is not a perfect circle. It looks like a comet. One side is round. The other side has a long tail called the heliotail.

Transitional regions.jpg
Transitional regions.jpg

There are parts to this bubble. First, the solar wind hits a wall called the termination shock. At this spot, the wind slows down fast. Next is the heliosheath. This is a thick area between the shock and the edge. It is filled with magnetic bubbles. Finally, there is the heliopause. This is the very edge of the bubble. It is where the Sun's wind meets the space between stars. Two ships, Voyager 1 and Voyager 2, flew through these parts. They are now in interstellar space.

Heliosphere-washbasin.svg
Heliosphere-washbasin.svg

188 words

The heliosphere is a giant, bubble-like region of space surrounding our Sun.

PIA12375.jpg
PIA12375.jpg
It is formed by the Sun's own magnetic field and its outer atmosphere. This vast structure acts as a shield for our entire Solar System. It protects us from much of the cosmic ionizing radiation found in deep space. However, it cannot stop uncharged gamma rays from passing through. The heliosphere is not a perfect sphere, but rather a moving cavity in the interstellar medium.
The Sun as seen in January 1st 2015.jpg
The Sun as seen in January 1st 2015.jpg

This bubble stays inflated by a constant stream called the solar wind. The solar wind is made of plasma, which is a collection of charged particles.

Heliospheric-current-sheet.gif
Heliospheric-current-sheet.gif
These particles stream away from the Sun at very high speeds. As the wind travels outward, it eventually hits the pressure of the interstellar medium. This encounter creates a boundary called the termination shock. At this point, the solar wind slows down from supersonic speeds to subsonic speeds.
Heliosphere-washbasin.svg
Heliosphere-washbasin.svg
Following this shock is the heliosheath, a thick and turbulent transition zone.

Scientists have studied these distant reaches for many years. The name "heliosphere" was likely first used by Alexander J. Dessler in 1967. Today, the study of this region is known as heliophysics. This field includes the study of space weather and the space climate. Researchers use many tools to understand how the Sun affects its surroundings. They look at how the solar wind carries magnetic fields through space. This helps us understand the complex way the Sun interacts with the galaxy.

NASA Heliophysics Division fleet as of July 2024.png
NASA Heliophysics Division fleet as of July 2024.png

Spacecraft have provided us with amazing data from the very edge of our system. The Voyager 1 spacecraft reached the heliopause on 25 August 2012. At this boundary, it measured a sudden forty-fold increase in plasma density. Voyager 2 later crossed the heliopause on 5 November 2018. These missions showed that the heliosheath is a "foamy" region filled with magnetic bubbles.

Teilchendichte Voyagersonden.jpg
Teilchendichte Voyagersonden.jpg
The termination shock is believed to be between 75 and 90 astronomical units from the Sun. These numbers help us map the massive scale of our solar bubble.

Understanding the heliosphere helps us see how our home sits in the galaxy. The shape of the bubble is like a comet with a long heliotail. This tail can stretch for several thousands of astronomical units behind the Sun.

Transitional regions.jpg
Transitional regions.jpg
The shape changes based on how the Sun moves through the interstellar medium. It can even change over millions of years if a supernova occurs nearby. This shows that our Solar System is part of a much larger, moving environment. Everything we know about space weather connects back to this giant shield.

447 words

The heliosphere is a vast, bubble-like region of space surrounding our Sun.

PIA12375.jpg
PIA12375.jpg
It acts as the Sun's magnetosphere and its outermost atmospheric layer. This structure is essentially a cavity formed within the interstellar medium, which is the matter that fills the space between stars. The heliosphere is vital because it serves as a shield for our Solar System. It protects us from significant amounts of cosmic ionizing radiation. However, this shield cannot stop uncharged gamma rays from passing through.
The Sun as seen in January 1st 2015.jpg
The Sun as seen in January 1st 2015.jpg

This massive bubble is continuously inflated by the solar wind. The solar wind is a stream of plasma consisting of ionized atoms from the solar corona.

Heliospheric-current-sheet.gif
Heliospheric-current-sheet.gif
These particles and magnetic fields stream outward from the Sun in all directions. Because the Sun rotates approximately every 25 days, the magnetic field becomes wrapped into a spiral. This creates a structure called the heliospheric current sheet. This sheet is a ripple that marks the boundary between magnetic regions of opposite polarity. Some scientists describe it as looking like a ballerina's skirt. It may be the largest structure in our Solar System.

The shape of the heliosphere is not a perfect sphere. Instead, it resembles a comet with a long, trailing tail called the heliotail.

Transitional regions.jpg
Transitional regions.jpg
This shape is determined by the solar wind, the interstellar medium, and the Sun's motion through the galaxy. The plasma moving "upstream" against the Sun's motion is compressed into a nearly spherical shape. This occurs at a distance of about 100 astronomical units (AU). Conversely, the plasma moving "downstream" flows out for much longer distances. This creates a tail that can stretch for several thousands of AUs. In 2020, researcher Merav Opher suggested the shape might actually be a crescent, like a deflated croissant.

As the solar wind travels outward, it eventually encounters the pressure of the interstellar medium. This interaction happens in several distinct stages. First, the supersonic solar wind reaches the termination shock.

Heliosphere-washbasin.svg
Heliosphere-washbasin.svg
At this point, the wind's motion slows abruptly from supersonic to subsonic speeds. This shock causes the plasma to compress and heat up. The termination shock is believed to be located between 75 and 90 AU from the Sun. Beyond this shock lies the heliosheath. This is a broad transitional region where the wind becomes slow and turbulent.

The heliosheath is a complex and active zone. Scientists have discovered it is not a smooth region. Instead, it is a "foamy zone" filled with magnetic bubbles.

Teilchendichte Voyagersonden.jpg
Teilchendichte Voyagersonden.jpg
These sausage-shaped bubbles are about 1 AU wide. They are created by magnetic reconnection between different sectors of the solar magnetic field. At about 113 AU, Voyager 1 found a stagnation region where the solar wind slowed to zero. In this area, the magnetic field intensity doubled. High-energy electrons from the galaxy also increased 100-fold. Shortly after, the spacecraft entered a region called the "magnetic highway."

The outermost edge of the heliosphere is the heliopause. This is the theoretical boundary where the solar wind is stopped by the interstellar medium. At the heliopause, the pressures of the solar wind and the interstellar medium reach a balance. Crossing this boundary marks the transition into interstellar space. Voyager 1 encountered the heliopause on 25 August 2012. It measured a sudden forty-fold increase in plasma density. Voyager 2 traversed this boundary later on 5 November 2018. These missions provided the first direct evidence of the edge of our solar bubble.

The study of these processes is known as heliophysics. This field includes the study of space weather and space climate. The heliosphere can change significantly over millions of years. This can happen due to extrasolar effects like nearby supernovas. It can also happen if the Sun moves through different densities of the interstellar medium. Evidence suggests that three million years ago, the heliosphere may have shrunk. This could have exposed Earth to the interstellar medium. Such changes might have impacted Earth's past climate and human evolution.

NASA Heliophysics Division fleet as of July 2024.png
NASA Heliophysics Division fleet as of July 2024.png

667 words
🖼️ Images & Media (11)
File:The Sun as seen in January 1st 2015.jpg
The Sun as seen in January 1st 2015.jpg
File:Heliospheric-current-sheet.gif
Heliospheric-current-sheet.gif
File:Heliosphere-washbasin.svg
Heliosphere-washbasin.svg
File:Transitional regions.jpg
Transitional regions.jpg
File:PIA12375.jpg
PIA12375.jpg
File:STEREO ENAs HI.jpg
STEREO ENAs HI.jpg
File:IBEXmagneticfieldinfluence.jpg
IBEXmagneticfieldinfluence.jpg
File:NASA Heliophysics Division fleet as of July 2024.png
NASA Heliophysics Division fleet as of...
File:IBEX all sky map.jpg
IBEX all sky map.jpg
File:Teilchendichte Voyagersonden.jpg
Teilchendichte Voyagersonden.jpg
File:Voyager speed and distance from Sun.svg
Voyager speed and distance from Sun.svg
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