Title: Solar Image Processing: A Multiscale View
1Solar Image Processing A Multiscale View
UCLA - IPAM (January 28, 2004)
2Outline
- My motivations - where I got interested in
multiscale methods. - A gallery of data.
- A standard analysis - that surprised me.
- My approach - an attempt at something better.
- Some other problems.
3Outline
- My motivations - where I got interested in
multiscale methods. - A gallery of data.
- A standard analysis - that surprised me.
- My approach - an attempt at something better.
- Some other problems.
4The high energy sun.
20 Jan 2000 Solar Flare BATSE and COMPTEL (yellow)
1-30 MeV image and 100 keV /1-30 MeV lightcurves
5The EUV/radio sun.
Flare in EUV 171 Å pass band
Flare in radio
6Outline
- My motivations - where I got interested in
multiscale methods. - A gallery of data.
- A standard analysis - that surprised me.
- My approach - an attempt at something better.
- A suggestion by J. Starck
- Some other problems.
7From the photosphere to the corona.
8The visible sun.
9Sunspot evolution.
10Swedish Vacuum Telescope.
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12Solar flare quake.
13Solar oscillations.
14Oscillations in the MDI high-res. f.o.v.
15Helioseismology.
16Sub-surface structure.
17Backside imaging.
18Longitudinal Magnetic field
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20304 Å Sun
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24195 Å Sun
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26195 Å difference image of an EIT wave
27Solar flare in UV cont. and 2 EUV passbands seen
by TRACE
28Filament eruptions in TRACE 171 Å passband
29Magnetic loops in TRACE 171 Å passband
30A flare in TRACE 1600 Å cont. and 171 Å pass band
31Solar tornados
32Largest flare ever recorded in 171 Å pass band.
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34The outer corona seen in white-light by LASCO
C2 2-15 solar radii
35LASCO C3 7-30 solar radii
36Active sun seen in LASCO C3
37Outline
- My motivations - where I got interested in
multiscale methods. - A gallery of data.
- A standard analysis - that surprised me.
- My approach - an attempt at something better.
- Some other problems.
38TRACE 195 A
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40Images at the time of the first brightening in
the TRACE movie. (Gallagher 2003)
Top panels TRACE 195 Å difference images created
by subtracting each image from a frame taken at
004230 UT. Bottom panels LASCO C2 and C3
images showing the similar morphology of the
eruption as it propagates away from the solar
surface. (Gallagher 2003)
41A Standard Analysis
42Outline
- My motivations - where I got interested in
multiscale methods. - A gallery of data.
- A standard analysis - that surprised me.
- My approach - an attempt at something better.
- Some other problems.
43scale 2
scale 4
scale 8
scale 16
44A set of edges from 004634 UT to 010158 UT at
2 scales
- The top image shows the 30 multiscale edges at
scale 8 (green) and 16 (red) over the image at
004634 UT. - The bottom images zoom in on the fronts.
45Following a front in TRACE.
46Outline
- My motivations - where I got interested in
multiscale methods. - A gallery of data.
- A standard analysis - that surprised me.
- My approach - an attempt at something better.
- Some other problems.
47high-energy solar flare imaging
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49Sunspot Classification
Multifractal measure ? Shapelets ?
50EIT Calibration calibration lamp for flat field
and filter grid.
Wavelets, Ridgelets, and Curvelets representation?
51EIT 284 Å images
Cosmic Rays, Bright Points, Coronal Holes.
52Large increase in data volume.
- 1 passband x 136 images x (1 Mb) 136 Mb
- 4 passbands x 1440 images x (16.6 Mbs) 95.6 Gbs
Data from just EUV imaging
Data from the entire spacecraft increases from 1
Gbyte/day to 1 Tbyte/day
53The sun in STEREO
Tomography in space, reconstructing a 3-D view
with two spacecraft