cluster at the earth’s bow shock

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CLUSTER AT THE EARTH’S BOW SHOCK André Balogh Imperial College, London or how Cluster saw this important boundary of the the Earth’s space environment in a completely new light at Christmas 2000

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CLUSTER AT THE EARTH’S BOW SHOCK. or how Cluster saw this important boundary of the the Earth’s space environment in a completely new light at Christmas 2000. André Balogh Imperial College, London. - PowerPoint PPT Presentation

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Page 1: CLUSTER AT THE EARTH’S BOW SHOCK

CLUSTER AT THE EARTH’S BOW SHOCK

André Balogh

Imperial College, London

or how Cluster saw this important boundary of the the Earth’s space environment in a completely new light at Christmas 2000

Page 2: CLUSTER AT THE EARTH’S BOW SHOCK

the bow shock

The magnetosphere is a complex system. But let us look at a simple view of the way it interacts with the solar wind. The subject of this presentation is …

It is our first line of defence against solar storms buffeting the Earth’s space environment

Page 3: CLUSTER AT THE EARTH’S BOW SHOCK

Schlieren image of a shock wave in Mach 9 flow taken in the Imperial College Department of Aeronautics No 2 hypersonic gun tunnel facility

Shock waves

BOWSHOCK

MAGNETOSPHERE

MAGNETOSHEATH

SOLARWIND

A schematic view of the interaction of the solar wind with the magnetosphere.

The magnetosheath is the region between the bow shock and the magnetosphere where the solar wind, slowed down at the shock, flows around the magnetosphere.

Page 4: CLUSTER AT THE EARTH’S BOW SHOCK

The bow shock depends on the direction of the magnetic field carried in the solar wind

Perpendicular shock: short, sharp jump, simple structure

Parallel shock: the shock front forms, breaks up, then re-forms; complex, fast varying structures

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02:06 02:21 02:36

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SOLARWIND

Page 5: CLUSTER AT THE EARTH’S BOW SHOCK

For the study of the bow shock, Cluster’s four-spacecraft observations are essential:

•To determine the formation, structure and motion of the bow shock in response to different solar wind and interplanetary magnetic field conditions

•To determine the physical processes acting in this collisionless shock wave, applicable to shock waves in general

Page 6: CLUSTER AT THE EARTH’S BOW SHOCK

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On 24-25 December 2000, the four Cluster spacecraft were near the apogee of their orbit, near the position of the bow shock

Spacecraft 1, 3 and 4 were in a plane perpendicular to the direction of the Sun, while spacecraft 2 was about 1000 km sunward of the other three.

apogee

perigee

Earth

bowshock

Page 7: CLUSTER AT THE EARTH’S BOW SHOCK

In the following, we demonstrate the capability of the Cluster mission. Comparisons between the observations made at the four spacecraft reveals the dynamics of the bow shock in a completely new light.

The measurements shown were made by the magnetometer (FGM) on Cluster.

Magnetometer sensors

Page 8: CLUSTER AT THE EARTH’S BOW SHOCK

12:00 18:00 24:00 06:00 12:00

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Cluster FGM

24 December 25 December

As conditions in the solar wind fluctuated, the bow shock crossed and re-crossed over the four spacecraft, immersing them repeatedly either in the solar wind or the magnetosheath

Solar wind

Magnetosheath

Page 9: CLUSTER AT THE EARTH’S BOW SHOCK

Some of the shock crossings were relatively simple, such as the example below. The bow shock, initially Earthward of the four spacecraft, moved slowly across them until all four were in the magnetosheath.

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Cluster 1Cluster 2Cluster 3Cluster 4

FGM Cluster 25 December 2000

Spacecraft 2 was crossed last. We can easily estimate the speed of the shock wave as ~ 5 to 6 km/s

Page 10: CLUSTER AT THE EARTH’S BOW SHOCK

At a later time, the bow shock was first hovering very close to spacecraft 2 (06:50 to 07:03), then moved sunward of all four spacecraft (07:03 to 07:12). Later it stayed between spacecraft 2 and the other three spacecraft.

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06:48 06:54 07:00 07:06 07:12 07:18 07:24

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Cluster 1Cluster 2Cluster 3Cluster 4

FGM Cluster 25 December 2000

Page 11: CLUSTER AT THE EARTH’S BOW SHOCK

Later still, about 08:20, the magnetic field in the solar wind turned from being parallel to the shock surface to perpendicular to it. These conditions changed the nature of the bow shock and made it to form unstable, oscillating transitions between the solar wind and the magnetosheath.

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08:12 08:18 08:24 08:30 08:36 08:42

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Cluster 1Cluster 2Cluster 3Cluster 4

FGM Cluster 25 December 2000

Once again, comparing the bow shock signatures at the four spacecraft allows the nature of the shock and its structures to be studied for the first time.

Page 12: CLUSTER AT THE EARTH’S BOW SHOCK

Conclusions

• Even the initial observations on Cluster demonstrate an unprecedented capability to study the structures and dynamics of the Earth’s magnetosphere:– For example, the bow shock has a complex, dynamic, three-

dimensional structure, subject to rapid changes in response to changing solar wind conditions (expected, but never seen before !)

• The coordinated analysis of observations made by the Cluster instruments is the best ever means to understand the Earth’s magnetosphere and the way it responds to changing conditions from the Sun.