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<!DOCTYPE html>
< html >
< head >
< title > Heliosmatics< / title >
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< meta name = "description" content = "HELIOSmatics was first built by Ben P. Kay in MS Excel around 2010. Later, it was modified by Ryan Tang. Now, it migrates to web." >
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< script src = "https://cdn.plot.ly/plotly-2.16.1.min.js" > < / script >
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< / head >
< style >
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body{
font-family: Arial, Helvetica, sans-serif;
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.column{
float : left;
width: 650px;
padding: 0px;
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display: table;
clear: both;
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.plotStyle{
width:650px;
height:600px;
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.slider{
width : 400px;
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.plotSlider{
width: 400px;
}
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background-color:#F7CF3C;
border-style:none;
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@media screen and (max-width: 1000px) {
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.column {
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width: 200px;
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img {
height: 50px;
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< / style >
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< body bgcolor = "#6DB33E" >
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< h1 > HELIOSmatics< / h1 >
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< h1 id = 'reactionName' style = "color: #1363A7" > 24F(d,p)25F@10MeV/u< / h1 >
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< table >
< tr >
< td style = "text-align:right" > Beam (A):< / td >
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< td > < Input type = "text" style = "width:60px" value = "24F" id = "beam" enterkeyhint = "done" / > < / td >
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< td style = "text-align:right" > Beam Ex:< / td >
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< td > < Input type = "text" style = "width:60px" value = "0" id = "beamEx" enterkeyhint = "done" / > < / td >
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< td > MeV< / td >
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< td id = 'beamSp' > < / td >
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< / tr >
< tr >
< td style = "text-align:right" > Target (a):< / td >
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< td > < Input type = "text" style = "width:60px" value = "d" id = "target" enterkeyhint = "done" / > < / td >
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< / tr >
< tr >
< td style = "text-align:right" > Light (b):< / td >
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< td > < Input type = "text" style = "width:60px" value = "p" id = "light" enterkeyhint = "done" / > < / td >
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< td style = "text-align:right" > Q-value:< / td >
< td id = 'Q-value' > 2.057< / td >
< td > MeV< / td >
< / tr >
< tr >
< td style = "text-align:right" > Heavy (B):< / td >
< td id = 'heavyName' > 25F< / td >
< / tr >
< / table >
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< p style = "font: 12px" id = 'heavySp' > < / p >
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< p > < / p >
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< table >
< tr >
< td >
< input type = "radio" name = "SSType" id = 'HELIOS' value = "HELIOS" / > HELIOS
< / td >
< td >
< input type = "radio" name = "SSType" id = 'SOLARIS' value = "SOLARIS" checked = "checked" / > SOLARIS
< / td >
< td >
< input type = "radio" name = "SSType" id = 'ISS' value = "ISS" / > ISS
< / td >
< / tr >
< / table >
< p > < / p >
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< table >
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< tr >
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< td style = "text-align:right" > B-field (abs.):< / td >
< td > < Input type = "text" style = "width:60px" value = "2" id = 'BField' enterkeyhint = "done" / > < / td >
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< td > T< / td >
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< td > < Input type = "range" min = "0" max = "6" step = "0.05" value = "2" class = "slider" id = 'BRange' / > < / td >
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< / tr >
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< tr >
< td style = "text-align:right" > Beam Energy:< / td >
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< td > < Input type = "text" style = "width:60px" value = "10" id = 'KEA' enterkeyhint = "done" / > < / td >
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< td > MeV/u< / td >
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< td > < Input type = "range" min = "0" max = "20" step = "0.1" value = "10" class = "slider" id = 'KEARange' / > < / td >
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< / tr >
< tr >
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< td > < / td >
< td > < / td >
< td > < / td >
< td id = 'minKEA' > < / td >
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< / tr >
< / table >
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< p > < / p >
< table id = "ExTable" , style = "border:1px solid; text-align:center;" >
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< tr >
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< th style = "width:85px" > E< sub > x< / sub > [MeV]< / th >
< th style = "width:85px" > θ < sub > cm< / sub > [deg]< / th >
< th style = "width:70px" > E< sub > b< / sub > [MeV]< / th >
< th style = "width:70px" > Z< sub > b0< / sub > [mm]< / th >
< th style = "width:70px" > Z< sub > b< / sub > [mm]< / th >
< th style = "width:70px" > 2ρ < sub > b< / sub > [mm]< / th >
< th style = "width:70px" > θ Lab< sub > b< / sub > [deg]< / th >
< th style = "width:60px" > T< sub > b< / sub > [ns]< / th >
< th style = "width:70px" > E< sub > B< / sub > [MeV]< / th >
< th style = "width:90px" > θ Lab< sub > B< / sub > [deg]< / th >
< th style = "width:80px" > Z< sub > B0< / sub > /2[mm]< / th >
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< th style = "width:70px" > 2ρ < sub > B< / sub > [mm]< / th >
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< / tr >
< / tr >
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< td > < input type = "text" id = 'Ex1' name = "Ex" size = "8" value = "0" enterkeyhint = "done" / > < / td >
< td > < input type = "text" id = 'theta1' name = "thetaCM" size = "8" value = "10" enterkeyhint = "done" / > < / td >
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< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< / tr >
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< / tr >
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< td > < input type = "text" id = 'Ex2' name = "Ex" size = "8" value = "1" enterkeyhint = "done" / > < / td >
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< td > < input type = "text" id = 'theta2' name = "thetaCM" size = "8" value = "40" enterkeyhint = "done" / > < / td >
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< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< td > < / td >
< / tr >
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< tr >
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< td > < button type = "button" onclick = "addRow()" style = "width:85px" > Add E< sub > x< / sub > < / button > < / td >
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< td > < button type = "button" onclick = "deleteRow()" > Remove E< sub > x< / sub > < / button > < / td >
< / tr >
< / table >
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< p > < / p >
< table >
< tr >
< td style = "text-align:right" > θ < sub > CM< / sub > :< / td >
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< td > < Input type = "text" style = "width:60px" value = "0" id = 'thetaCM' enterkeyhint = "done" / > < / td >
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< td > deg< / td >
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< td > < Input type = "range" min = "0" max = "50" step = "0.1" value = "0" class = "slider" id = 'thetaCMRange' / > < / td >
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< / tr >
< td style = "text-align:right" > Array Pos:< / td >
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< td > < Input type = "text" style = "width:60px" value = "-100" id = 'posArray' enterkeyhint = "done" / > < / td >
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< td > mm< / td >
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< td > < Input type = "range" min = "-500" max = "1000" step = "1" value = "-100" class = "slider" id = 'posArrayRange' / > < / td >
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< / tr >
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< tr >
< td style = "text-align:right" > Recoil Pos:< / td >
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< td > < Input type = "text" style = "width:60px" value = "1500" id = 'posRecoil' enterkeyhint = "done" / > < / td >
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< td > mm< / td >
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< td > < Input type = "range" min = "0" max = "2000" step = "1" value = "1500" class = "slider" id = 'posRecoilRange' / > < / td >
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< / tr >
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< / table >
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< table >
< tr >
< td style = "text-align:right" > Recoil radius, inner [mm]:< / td >
< td > < Input type = "text" style = "width:40px" value = "10" id = 'innerRecoil' enterkeyhint = "done" / > < / td >
< td style = "text-align:right" > outter [mm]:< / td >
< td > < Input type = "text" style = "width:40px" value = "45" id = 'outterRecoil' enterkeyhint = "done" / > < / td >
< / tr >
< / table >
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< p > < / p >
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< div class = "row" >
< div class = "column" >
< table cellspacing = "0" cellpadding = "0" >
< tr >
< td >
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< div id = "Plot_EZ" class = "plotStyle" > < / div >
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< / td >
< / tr >
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< tr > < td > < / td > < / tr >
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< tr >
< td > zRange can be changed by Array position.< / td >
< / tr >
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< tr >
< td >
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< table >
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< tr >
< td > eRange:< / td >
< td > < Input type = "text" style = "width:60px" value = "12" id = 'eRange' enterkeyhint = "done" / > < / td >
< td > MeV< / td >
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< td > < Input type = "range" min = "1" max = "30" step = "0.1" value = "12" class = "plotSlider" id = 'eRangeSlider' / > < / td >
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< / tr >
< / table >
< / td >
< / tr >
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< tr > < td > < / td > < / tr >
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< / table >
< / div >
< div class = "column" >
< table cellspacing = "0" cellpadding = "0" >
< tr >
< td >
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< div id = "Plot_RZ" class = "plotStyle" > < / div >
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< / td >
< / tr >
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< tr > < td > < / td > < / tr >
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< tr >
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< td >
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< table >
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< tr >
< td > zRange(Min):< / td >
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< td > < Input type = "text" style = "width:60px" value = "-200" id = 'zRange1' enterkeyhint = "done" / > < / td >
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< td > mm< / td >
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< td > < Input type = "range" min = "-2000" max = "4000" step = "1" value = "-200" class = "plotSlider" id = 'zRange1Slider' / > < / td >
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< / tr >
< tr >
< td > zRange(Max):< / td >
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< td > < Input type = "text" style = "width:60px" value = "2000" id = 'zRange2' enterkeyhint = "done" / > < / td >
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< td > mm< / td >
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< td > < Input type = "range" min = "-2000" max = "4000" step = "1" value = "2000" class = "plotSlider" id = 'zRange2Slider' / > < / td >
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< / tr >
< tr >
< td > rRange:< / td >
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< td > < Input type = "text" style = "width:60px" value = "50" id = 'rRange' enterkeyhint = "done" / > < / td >
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< td > mm< / td >
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< td > < Input type = "range" min = "1" max = "400" step = "1" value = "50" class = "plotSlider" id = 'rRangeSlider' / > < / td >
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< / tr >
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< / table >
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< / td >
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< / tr >
< tr > < td > < / td > < / tr >
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< / table >
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< / div >
< / div >
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< p id = "n0" > < / p >
< p id = "n1" > < / p >
< p id = "n2" > < / p >
< p id = "n3" > < / p >
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< hr >
< h1 > θ < sub > CM< / sub > Calculator< / h1 >
The calculation only give θ < sub > CM< / sub > after the bending.
< p > < / p >
< table >
< tr >
< td > Ex [MeV] : < / td >
< td > < Input type = "text" style = "width:60px" value = "0" id = 'Ex0' enterkeyhint = "done" / > < / td >
< td > θ < sub > CM< / sub > Gate [deg] : < / td >
< td > < Input type = "text" style = "width:60px" value = "10" id = 'thetaCMGate' enterkeyhint = "done" / > < / td >
< td > X Gate [%] : < / td >
< td > < Input type = "text" style = "width:60px" value = "95" id = 'XGate' enterkeyhint = "done" / > < / td >
< / tr >
< tr >
< table id = 'thetaCMTable' style = "border:1px solid; text-align:center;" >
< tr >
< td style = "width:30px" > < b > ID< / b > < / td >
< td style = "width:120px" > < b > pos< sub > 0< / sub > (gated)< / b > < / td >
< td style = "width:120px" > < b > pos< sub > 1< / sub > (gated)< / b > < / td >
< td style = "width:60px" > < b > θ < sub > 1< / sub > [deg]< / b > < / td >
< td style = "width:60px" > < b > θ < sub > 2< / sub > [deg]< / b > < / td >
< td style = "width:60px" > < b > θ < sub > avg< / sub > [deg]< / b > < / td >
< td style = "width:60px" > < b > Δ θ [deg]< / b > < / td >
< td style = "width:100px" > < b > sin(θ < sub > avg< / sub > )Δ θ < / b > < / td >
< / tr >
< / table >
< / tr >
< / table >
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<!-- ===================================================== -->
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<!--
< hr >
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< h1 > DWBA and Monte Carlo Simulation (under construction...)< / h1 >
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< table id = 'DWBATable' style = "border:1px solid; text-align:center;" >
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< tr >
< td > E< sub > x< / sub > [MeV]< / td >
< td > J< sup > π < / sup > < / td >
< td > Orbital < / td >
< / tr >
< / tr >
< td id = 'dwba1' > 0< / td >
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< td > < input type = "text" name = "Jpi" size = "5" value = "3/2+" enterkeyhint = "done" / > < / td >
< td > < input type = "text" name = "Orb" size = "5" value = "0d3/2" enterkeyhint = "done" / > < / td >
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< / tr >
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< / tr >
< td id = 'dwba2' > 0< / td >
< td > < input type = "text" name = "Jpi" size = "5" value = "1/2+" enterkeyhint = "done" / > < / td >
< td > < input type = "text" name = "Orb" size = "5" value = "1s1/2" enterkeyhint = "done" / > < / td >
< / tr >
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< / table >
< p > < / p >
< input type = "checkbox" name = "DWBA" value = "On" / > Cal. DWBA
< table >
< tr >
< td > Incoming Channel< / td >
< td >
< select name = "op1" >
< option value = "A" selected > D | An & Cai (2006), E < 183 , 12 < A < 238 < / option >
< option value = "H" > D | Han, Shi, & Shen, (2006), E < 200 | 12 < A < 209 < / option >
< option value = "B" > D | Bojowald et al., (1988), 50 < E < 80 | 27 < A < 208 < / option >
< option value = "K" > P | Koning & Delaroche, (2009), E < 200 | 24 < A < 209 | Iso . Dep . < / option >
< option value = "V" > P | Varner et al., (1991), 16 < E < 65 | 4 < A < 209 < / option >
< option value = "M" > P | Menet et al., (1971), 30 < E < 60 | 40 < A < / option >
< option value = "x" > A=3 | Xu, Guo, Han, & Shen, (2011), E < 250 | 20 < A < 209 < / option >
< option value = "l" > A=3 | Liang, Li, & Cai, (2009), E < 270 | All masses < / option >
< option value = "x" > A=4 | Su & Han, (2015), E < 398 | 20 < A < 209 < / option >
< / select >
< td >
< / tr >
< tr >
< td > Outgoing Channel< / td >
< td >
< select name = "op2" >
< option value = "A" > D | An & Cai (2006), E < 183 , 12 < A < 238 < / option >
< option value = "H" > D | Han, Shi, & Shen, (2006), E < 200 | 12 < A < 209 < / option >
< option value = "B" > D | Bojowald et al., (1988), 50 < E < 80 | 27 < A < 208 < / option >
< option value = "K" selected > P | Koning & Delaroche, (2009), E < 200 | 24 < A < 209 | Iso . Dep . < / option >
< option value = "V" > P | Varner et al., (1991), 16 < E < 65 | 4 < A < 209 < / option >
< option value = "M" > P | Menet et al., (1971), 30 < E < 60 | 40 < A < / option >
< option value = "x" > A=3 | Xu, Guo, Han, & Shen, (2011), E < 250 | 20 < A < 209 < / option >
< option value = "l" > A=3 | Liang, Li, & Cai, (2009), E < 270 | All masses < / option >
< option value = "x" > A=4 | Su & Han, (2015), E < 398 | 20 < A < 209 < / option >
< / select >
< td >
< / tr >
< / table >
< h3 > Plot config (still working on):< / h3 >
< input type = "checkbox" name = "plot" value = "pEZ" checked / > E vs Z< br >
< input type = "checkbox" name = "plot" value = "pExCal" checked / > Ex (cal.)< br >
< input type = "checkbox" name = "plot" value = "pThetaCM" checked / > ThetaCM< br >
< input type = "checkbox" name = "plot" value = "pThetaCM_Z" checked / > ThetaCM vs Z< br >
< input type = "checkbox" name = "plot" value = "pRecoilXY" checked / > Recoil X vs Y< br >
< input type = "checkbox" name = "plot" value = "pRecoilRThetaCM" / > Recoil-R vs ThetaCM< br >
< input type = "checkbox" name = "plot" value = "pRecoilRZ" / > Recoil R vs Z< br >
< input type = "checkbox" name = "plot" value = "pArrayXY" / > Array X vs Y< br >
< p > < / p >
< input type = "checkbox" name = "gate" value = "hit==1" checked / > Array Hit< br >
< input type = "checkbox" name = "gate" value = "loop<=1" checked / > Loop = 1< br >
< input type = "checkbox" name = "gate" value = "thetaCM>10" checked / > ThetaCM > 10 deg< br >
< p > < / p >
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HELIOSmatics was first built by Ben P. Kay in MS Excel around 2010. It was modified by Ryan Tang later. And now it migrated to the web on Dec, 2022.
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The calculation can be found in the source code (heliosmatics.js or press F12)
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Experimental 3D model
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< script src = "heliosmatics.js" > < / script >
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