Preamble (please read)

There are a wide range of tools available to access AIA data and images. They were designed to suit users with a wide variety of needs. This page guides a user through the AIA data system based on their needs and interests. First and foremost, a user should understand why a versatile data system is necessary. An AIA full-resolution image has 4096x4096 pixels, and AIA has [#Channels | ten different AIA wave bands, or channels]. A single full-resolution JPEG can be up to 10 MB in size (a single uncompressed science data file can be dozens of MB) and the AIA performs these observations continuously at a rate of approximately 1 image per second. With previous solar missions, it was not unusual for a user to request a few hours of data. In the case of the AIA, this request would amount to over half a terabyte of data. Even one hour of images at a single wavelength is on the order of 10 GB in size.

It is clear that a simple data access system is not suitable for the AIA. We have devised a number of tools so that the user can access specific data sets as quickly as possible.

Please note: This guide does not contain the full range of tools and resources available to AIA data users. The user has a great deal of flexibility, and there is no single "correct" way to identify, obtain, and analyze AIA data. It is hoped that this guide will help the user get started with AIA data, and that users will familiarize themselves with the additional resources over time.

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Determining which data you want

I need to browse through some data before I can decide what data I'd like to request.

You can browse full-disk movies of the Sun in all of the AIA wavelengths on the SDO Browse Data page. These movies are lower resolution (512x512 or 1024x1024) and are much lower cadence (15 minutes). There are also daily 1024x1024 movies for each AIA wavelength.

I'd like a more detailed look instead of just a "browse."

Helioviewer is a versatile tool that allows the user to view images and movies from multiple data sources, zoom in on specific regions and view zoomed-in movies, and overlay the images in multiple layers to compare features and structure. Helioviewer also has the capability to track a region, meaning that the viewing box moves with the Sun's rotation. The result can be saved as a link and accessed at a later date.

A full-resolution AIA image is 4096x4096 pixels, and standard displays are not able to show anything near that size. Helioviewer allows the user to choose between viewing the whole Sun in (much) lower resolution, or viewing a subfield at better or even full resolution.

A desktop version, called JHelioviewer, can be downloaded onto your computer. The user is able to create movies and export them in MPEG or Quicktime format.

I'm looking for a specific feature, event or phenomenon but I haven't determined the date/times of the images I need.

Most of the features or events a user would need have already been assembled in the Heliophysics Events Knowledgebase. The HEK is a comprehensive catalog of many items, including Active Regions, CMEs, Coronal Dimmings, Coronal Holes, Coronal Jets, Coronal Waves, Emerging Fluxs, Filaments, Filament Eruptions, Filament Activations, Flares, Loops, Oscillations, Sigmoids, SpraySurges, Sunspots, and Plages (complete list here). It also contains data, images and movies that have already been assembled for a given event, as well as comments and annotations entered by other users.

Prior to using the HEK, it is highly recommended that you view the brief HEK tutorial to familiarize yourself with all of the features and options.

I know the start time and end time of the event or phenomenon I'd like to study, but I don't know which wavelength(s).

The AIA has seven EUV channels and three UV-Visible channels. These channels correspond to different characteristic temperatures and different regions of the solar atmosphere, ranging from 5000 degrees to over 10 million degrees. To see what each of the wavelengths look like and view a recent movie, go to helioviewer or the SDO Browse Data page. However, browsing the Heliophysics Events Knowledgebase is probably the best way to determine which wavelength(s) are most appropriate for your topic of interest.

Accessing the data

I want images and/or a movie, and I don't need the full science data files.

I need FITS data files, and I think I know the time range and wavelengths of the images I want.

I need FITS data files, I know the time range and wavelengths of the images I want, but the available data volume is overwhelming. Case 1: Using subfields/cutouts

I need FITS data files, I know the time range and wavelengths of the images I want, but the available volume is overwhelming. Case 2: Decreasing the temporal or spatial resolution

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Analyzing the data

Well, well, well. So what have we here?

What analysis tools are available?

Section III.c: What are the limitations of the data?

Section III.d: I'm ready to publish. Who do I acknowledge?

Appendix I: IDL and the SolarSoft software tree

Appendix I.a: What is IDL?

Appendix I.b: What is SolarSoft?

Appendix I.c: I have IDL, but I don't have the SolarSoft software tree on my computer.

Appendix I.d: I have the SolarSoft software tree on my computer, but I'm not sure if I have the appropriate software packages installed.

Appendix II: Identifying and retrieving data using the Virtual Solar Observatory's IDL interface

Appendix II.a: Searching the VSO catalog using vso_search.pro

Appendix II.b: Retrieving data with vso_get.pro

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