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D0RunICone
HepEntityIpre96.h
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#ifndef D0RunIconeJets_HepEntityPre96_class
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#define D0RunIconeJets_HepEntityPre96_class
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#include "inline_maths.h"
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#include "HepEntityI.h"
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#include <fastjet/internal/base.hh>
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FASTJET_BEGIN_NAMESPACE
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namespace
d0runi{
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//Author: Lars Sonnenschein 25/Feb/2010
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//This is an example class fulfilling the minimal requirements needed by the
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//D0 RunI cone jet algorithm implementation prior to 1996, which is an inlined template class
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//See FERMILAB-Pub-97-242-E for details
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// This file is distributed with FastJet under the terms of the GNU
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// General Public License (v2). Permission to do so has been granted
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// by Lars Sonnenschein and the D0 collaboration (see COPYING for
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// details)
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//
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// History of changes in FastJet compared tothe original version of
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// HepEntity.h
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//
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// 2011-12-13 Gregory Soyez <soyez@fastjet.fr>
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//
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// * added license information
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//
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// 2011-11-14 Gregory Soyez <soyez@fastjet.fr>
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//
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// * removed some harmless warnings coming with the -Wshadow gcc option
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//
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// 2011-10-06 Gregory Soyez <soyez@fastjet.fr>
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//
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// * put the code in the fastjet::d0runi namespace
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class
HepEntityIpre96 :
public
HepEntityI {
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public
:
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HepEntityIpre96() {
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Et=0.;
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eta=0.;
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phi=0.;
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Ex=0.;
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Ey=0.;
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Ez=0.;
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index = -1;
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phi_pre96=0.;
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eta_pre96=0.;
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return
;
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}
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HepEntityIpre96(
double
E_in,
double
px_in,
double
py_in,
double
pz_in,
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int
index_in = -1) : index(index_in) {
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//Snowmass Et scheme
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double
pt = sqrt(px_in*px_in+py_in*py_in);
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double
p = sqrt(pt*pt+pz_in*pz_in);
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phi = inline_maths::phi(px_in,py_in);
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double
theta
= asin(pt/p);
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eta = inline_maths::eta(theta);
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Et = E_in*sin(theta);
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phi_pre96 = phi;
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eta_pre96 = eta;
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Ex = Et*cos(phi_pre96);
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Ey = Et*sin(phi_pre96);
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Ez = Et*sinh(eta_pre96);
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return
;
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}
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inline
double
px()
const
{
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return
Et*cos(phi_pre96);
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}
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inline
double
py()
const
{
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return
Et*sin(phi_pre96);
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}
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inline
double
pz()
const
{
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return
Et*sinh(eta_pre96);
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}
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inline
double
E()
const
{
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return
Et*cosh(eta_pre96);
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}
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inline
void
Add(
const
HepEntityIpre96 el) {
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//assumes Et, eta and phi stored accurately
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double
w2 = el.Et;
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Et += el.Et;
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w2 /= Et;
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eta += w2*(el.eta - eta);
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phi += w2*inline_maths::delta_phi(el.phi, phi);
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Ex += el.Ex;
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Ey += el.Ey;
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Ez += el.Ez;
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phi_pre96 = atan2(Ey, Ex);
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double
theta_pre96 = atan2(sqrt(Ex*Ex+Ey*Ey),Ez);
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eta_pre96 = -log(tan(theta_pre96/2.));
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return
;
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}
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inline
void
Fill(
double
E_in,
double
px_in,
double
py_in,
double
pz_in,
int
index_in) {
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double
pt = sqrt(px_in*px_in+py_in*py_in);
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double
p = sqrt(pt*pt+pz_in*pz_in);
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phi = inline_maths::phi(px_in,py_in);
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double
theta
= asin(pt/p);
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eta = inline_maths::eta(theta);
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Et = E_in*sin(theta);
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phi_pre96 = phi;
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eta_pre96 = eta;
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Ex = Et*cos(phi_pre96);
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Ey = Et*sin(phi_pre96);
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Ez = Et*sinh(eta_pre96);
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index = index_in;
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return
;
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}
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double
Ex;
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double
Ey;
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double
Ez;
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int
index;
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double
phi_pre96;
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double
eta_pre96;
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private
:
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};
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//end of class HepEntityIpre96;
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}
// end of namespace d0runi
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FASTJET_END_NAMESPACE
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#endif
fastjet::theta
double theta(const PseudoJet &a, const PseudoJet &b)
returns the angle between a and b
Definition
PseudoJet.hh:950
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