396 lines
17 KiB
Text
396 lines
17 KiB
Text
<?xml version='1.0' encoding='UTF-8'?>
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<heimer-mind-map alz-format-version="2" application-version="4.3.0">
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<style>
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<color r="221" b="221" g="221"/>
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<edge-color r="17" b="17" g="17"/>
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<grid-color r="153" b="153" g="153"/>
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<arrow-size>20000</arrow-size>
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<edge-width>1000</edge-width>
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<font-family italic="0" overline="0" underline="0" bold="0" strike-out="0" weight="50">Sans Serif</font-family>
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<text-size>14000</text-size>
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<corner-radius>5000</corner-radius>
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</style>
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<graph>
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<node h="75000" i="0" x="-640000" y="-136000" w="200000">
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<text>Year 1</text>
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<color r="255" b="255" g="255"/>
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<text-color r="17" b="17" g="17"/>
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</node>
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<node h="75000" i="49" x="1272000" y="-520000" w="200000">
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<text>Theory</text>
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<color r="247" b="118" g="228"/>
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<text-color r="17" b="17" g="17"/>
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</node>
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<node h="75000" i="27" x="1304000" y="800000" w="446000">
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<text>check influnce of collective effect, simulation with
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and without, in accelerator but also in matter</text>
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<color r="109" b="193" g="247"/>
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<text-color r="17" b="17" g="17"/>
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</node>
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<node h="120000" i="28" x="656000" y="360000" w="728000">
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<text>- Investigate if link between starting distribution and output beam structure exists,
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by starting with custom, artificial test structures and simulate resulting structure at
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output, can the transformation be calculated without using particle tracking.
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(input of knowledge of accelerator optics/model is okay)</text>
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<color r="109" b="193" g="247"/>
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<text-color r="17" b="17" g="17"/>
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</node>
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<node h="120000" i="26" x="1288000" y="624000" w="672000">
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<text>simulation of the beam dynamics for this particle distribution on its trajectory
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to the target, based on existing simulation tools and models,
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e.g. transport/covariance matrices combined with average
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scattering angles based on existing beam-matter interaction descriptions</text>
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<color r="109" b="193" g="247"/>
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<text-color r="17" b="17" g="17"/>
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</node>
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<node h="75000" i="43" x="1152000" y="80000" w="363000">
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<text>- and/or electrons from Lpaccelerator…</text>
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<color r="255" b="255" g="255"/>
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<text-color r="17" b="17" g="17"/>
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</node>
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<node h="166000" i="18" x="-824000" y="-392000" w="288000">
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<text>literature research of models
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and methods to propagate
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structured radiation beams
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though air and matter, starting
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from e.g. GEANT4, BDSIM,
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EGSnrc (with BEAMnrc), ...</text>
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<color r="247" b="118" g="228"/>
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<text-color r="17" b="17" g="17"/>
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</node>
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<node h="75000" i="1" x="-384000" y="-136000" w="200000">
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<text>year 2</text>
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<color r="255" b="255" g="255"/>
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<text-color r="17" b="17" g="17"/>
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</node>
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<node h="166000" i="8" x="2304000" y="-128000" w="707000">
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<text>Phd student
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based on previous results work on algorithm/method to adjust starting
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distribution in such a way that the a certain “requested” distribution on target
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is achieved by pre-compensating(??) the expected effects of transport
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through accelerator and matter….
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