File list

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This special page shows all uploaded files. By default the last uploaded files are shown at top of the list.

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File list

descDate Name User Size Description Versions
14:12, 19 August 2022Setup.png (file)JeremyOcampo183 KB 1
06:12, 1 April 2021F_TOPAS_scoringinphantom.png (file)JacintaYap49 KB (Dose deposition in a 40x40x40mm^3 water phantom)1
06:02, 1 April 2021A_dosemonitorsB.png (file)JacintaYap60 KB (Dose monitors, back view)1
06:01, 1 April 2021A_dosemonitorsF.png (file)JacintaYap94 KB (Dose monitors, front view)1
06:00, 1 April 2021A_TOPAS_nozzle.png (file)JacintaYap42 KB (Nozzle and phantom)1
05:59, 1 April 2021A_TOPAS_Dosimetrybox.png (file)JacintaYap48 KB (Dosimetry box)1
05:59, 1 April 2021A_TOPAS_ModBox.png (file)JacintaYap68 KB (Modulation box, rotating wheel)1
05:58, 1 April 2021A_TOPAS_ScatteringTube_collimator.png (file)JacintaYap23 KB (Scattering tube with double tungsten foils)1
05:53, 1 April 2021F_TOPAS_source_tube_run.jpg (file)JacintaYap41 KB (Particle beam origin at source plane and start of scattering tube)1
05:30, 1 April 2021F_TOPAS_film_beamline.png (file)JacintaYap27 KB (Scoring within EBT3 film volumes for transverse beam distributions)1
04:42, 1 April 2021F_TOPAS_matchBP.png (file)JacintaYap79 KB (Matched Bragg peak and LETd curve scored in a water phantom.)1
04:33, 1 April 2021A_CCC_dim_spreadsheet_topas.png (file)JacintaYap182 KB (Component positions in TOPAS relative to treatment line coordinates)2
04:14, 1 April 2021A_CCC_treatmentline_drawing.pdf (file)JacintaYap116 KB (Schematic of all component dimensions, generated from Autodesk fusion)1
04:05, 1 April 2021F_parameterfilechain.png (file)JacintaYap162 KB (Model parameter file chain hierarchy)1
04:03, 1 April 2021F_TOPAS_topview_labelled.png (file)JacintaYap42 KB (Beamline birds eye view, major components labelled)1
04:02, 1 April 2021F_CAD_treatmentline.png (file)JacintaYap137 KB (Treatment line in CAD)1
04:00, 1 April 2021F_TOPASbeamline.png (file)JacintaYap47 KB (CCC beamline TOPAS visualisation)1
11:01, 1 June 2019Scintillator_stack.png (file)JamesGolbourn1 KB (Schematic of a scintillator stack. The proton beam propagates perpendicular to the stack. The light produced by the stack is proportional to the energy of the beam, and the last scintillator where light is produced is related to the range of the beam. The stacks are separated by an air gap with the separation being the resolution of the range.)1
13:59, 25 October 2017Momentum.png (file)JamesChappell71 KB 1
13:58, 25 October 2017Position.png (file)JamesChappell68 KB 1
16:18, 14 July 2017Dose_monitor_doc.pdf (file)MatthieuHentz48 KB (Annotated PDF of the position of components in the dose monitors.)1
16:15, 14 July 2017Dosimetry_box.pdf (file)MatthieuHentz874 KB (Annotated PDF of the components along with their positions in the dosimetry box. )1
17:23, 10 July 2017Lon_energy_deposition_bragg.png (file)MatthieuHentz190 KB (Longitudinal energy deposition profile in the detector showing a pronounced Bragg peak at 30.8 mm.)1
13:28, 10 July 2017Lat_energy_deposition_bragg.png (file)MatthieuHentz219 KB (Adjusted dimensions)2
00:09, 10 July 2017Tube_doc.pdf (file)MatthieuHentz700 KB (Annotated schematics of the dual scattering tube.)1
23:58, 9 July 2017Beamline_doc.pdf (file)MatthieuHentz1.59 MB (Schematic of the beamline showing all its components and their positions relative to the source.)1
19:50, 9 July 2017Tiles_400.jpg (file)MatthieuHentz1.89 MB (Beam profile, projection of profile onto x-axis, emittance and energy spectrum 400 mm along the beamline.)1
16:29, 6 July 2017Beamline_500_sim_perspective.png (file)MatthieuHentz1,014 KB (Beamline visualised in DAWN v3.90b. The first tube and second box are visualised using the wireframe setting so that their inner components are visible. This simulation contains 500 primary protons. Protons are shown in blue, electrons are red, positrons are cyan, gamma rays are green, neutrons are yellow.)1
16:05, 6 July 2017Dose_monitor_exploded.png (file)MatthieuHentz59 KB (An exploded view of a dose monitor as used in the dosimetry box. It consists of a set of aluminised mylar foils wedged between layers of perspex to hold them in place. The guard ring is used to create a sealed volume of air between the foils. The aluminium layers face towards the centre of the dose monitor such that the assembly acts as a drift chamber when a potential difference is applied.)1
15:53, 6 July 2017Second_box.png (file)MatthieuHentz634 KB (A visualisation of the dosimetry box. The box is made of aluminium and contains a brass collimator, two dose monitors and cross wires. The brass nozzle is fixed to the end of the box.)1
15:28, 6 July 2017First_tube_500_sim.png (file)MatthieuHentz1.19 MB (Increased font size of annotations)3
13:00, 6 July 2017Beamline_perspective.png (file)MatthieuHentz342 KB (Cropped the image)3
12:24, 6 July 2017Beamline_top_down.png (file)MatthieuHentz119 KB (A top-down view of the beamline showing all its components: (a) first aluminium tube, (b) first aluminium box, (c) iron block, (d) second aluminium tube, (e) second aluminium box (dosimetry box), (f) shielding made of borated plastic, (g) brass nozzle, (h) water volume.)1
12:03, 6 July 2017TreatmentRoomSchematic.png (file)MatthieuHentz37 KB (Included origin.)5
15:53, 5 July 2017Background-sources-of-radiation.png (file)SimonJolly17 KB (Natural sources of radiation. Originally obtained from: (05/07/2017).)1
15:31, 4 July 2017Background-DNA-replication.png (file)SimonJolly6 KB (DNA replication)1
13:38, 4 July 2017Background-hallmarks-of-cancer.jpg (file)SimonJolly813 KB (The six hallmarks of cancer. Originally downloaded from: Originally published at: Originally described in: Hanahan D, Weinberg RA. The Hallmarks of Cancer. Cell 2000;100:57–70. doi:10.1016/S0092-8674(00)81683-9)1
15:30, 26 September 2016ProtonKineticEnergy.png (file)RoisinStephens164 KB (Clatterbridge simulation - Histogram of kinetic energy at a particular point along the beamline. Spatial and kinetic energy distribution of proton beam)1
15:23, 26 September 2016NeutronKineticEnergy.png (file)RoisinStephens211 KB (Clatterbridge simulation - Histogram of energy of neutrons produced within the water volume.)1
15:08, 26 September 2016NeutronFluxBeamline.png (file)RoisinStephens253 KB 4
11:27, 26 September 2016ProtonFluxWaterVolume.png (file)RoisinStephens185 KB (Clatterbridge simulation - Flux (per cm squared) of protons through the water volume)1
11:00, 26 September 2016ProtonFluxBeamlinePlot.png (file)RoisinStephens94 KB (Clatter bridge simulation - proton flux (per cm squared) along beamline)1
10:41, 26 September 2016StoppingDistance.png (file)RoisinStephens221 KB (Clatterbridge simulation - stopping distance of 62.5 MeV protons in water)1
20:00, 30 August 2016Cumulative_energy_deposition_in_water.png (file)RoisinStephens32 KB 1
00:32, 30 August 2016Visualisation.png (file)RoisinStephens84 KB (Over-head view of visualisation with particle tracks shown.)1
00:00, 30 August 2016WaterEnergyDeposition.png (file)RoisinStephens21 KB 1
15:22, 12 May 2016ProtonSB_SOBP.png (file)SimonJolly5 KB 1
15:22, 12 May 2016ProtonSB_g4_03.gif (file)SimonJolly154 KB 1
15:21, 12 May 2016ProtonSB_g4_02.gif (file)SimonJolly142 KB 1
15:21, 12 May 2016ProtonSB_g4_01.gif (file)SimonJolly143 KB 1

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