HRRL OTR Test Feb 16th 2011

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Objectives

1.) Check alignment of the OTR target and beam line with the linac's central axis. If it is misaligned we will work on an alignment plan to be executed after the Wednesday beam test.

2.) Take OTR images, check image focus and light output.

3.) Determine which quad to use for emittance measurements. Establish a quad current scan range.

Steps

Practise Turning HRRL On

Make document of the whole process, write a Standard Operation Process (SOP).

Turn RF off, Try to see Image with filament on

If we can see filament spot on the OTR target, try to focus our image system.

Turn RF On

Turn RF on look at the images, take pictures of the image upload them to the wiki.


Experiment

First Fusing

Image on OTR target

Lights RF image
on off HRRL Emit Lens Sys Feb 16th 2011 Run 1.jpg
on (different contrast) off HRRL Emit Lens Sys Feb 16th 2011 Run 2.jpg
off off HRRL Emit Lens Sys Feb 16th 2011 Run 3.jpg
on on (27 Hz) HRRL Emit Lens Sys Feb 16th 2011 Run 5.jpg

RF:25-205, Peak Current50mA, Pulse Width_200ns (fwhm)

HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 1.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 2.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 3.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 4.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 5.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 6.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 7.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 8.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 9.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 10.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 11.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 12.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 13.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 14.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 15.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 16.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 17.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25-205 Current 50mApeak PulseWidth 200ns fwhm 18.jpg

RF:25, Peak Current60mA, Pulse Width_200ns (fwhm)

HRRL Emit Lens Sys Feb 16th 2011 Run RF25 Current 60mApeak PulseWidth 200ns fwhm 1.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25 Current 60mApeak PulseWidth 200ns fwhm 2.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25 Current 60mApeak PulseWidth 200ns fwhm 3.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25 Current 60mApeak PulseWidth 200ns fwhm 4.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25 Current 60mApeak PulseWidth 200ns fwhm 5.jpg HRRL Emit Lens Sys Feb 16th 2011 Run RF25 Current 60mApeak PulseWidth 200ns fwhm 6.jpg

Determine the smallest energy, beam current, pulse width, and rep rate for a visible image.


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