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processes_11.ref
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* Test output: processes_11
* Purpose: integrate a process without structure functions
* in a multi-channel configuration
* Build and initialize a process object
* Prepare a trivial beam setup
* Complete process initialization
========================================================================
Process [scattering]: 'processes11'
Run ID = 'run11'
Library name = 'processes11'
Process index = 1
Process components:
1: 'processes11_i1': s, s => s, s [test_me]
------------------------------------------------------------------------
Variable list: [not shown]
------------------------------------------------------------------------
Configuration data:
Number of incoming particles = 2
Number of process components = 1
Number of process terms = 1
Number of MCI configurations = 1
Model = Test
QCD parameters (coupling undefined)
RNG factory: test (1)
------------------------------------------------------------------------
------------------------------------------------------------------------
Expressions (cut, scales, weight): [not shown]
========================================================================
Process component configuration:
------------------------------------------------------------------------
Component #1
Component ID = processes11_i1
Initial component = T
N (in, out, tot) = 2 2 4
Particle content = s, s => s, s
Method = test_me
Process variant = test_me
MD5 sum (def) = ' '
Process core:
test type implementing prc_test
Referenced data:
Terms = 1
MC dataset = 1
Partonic phase-space configuration:
ID = 'processes11_i1'
n_in = 2
n_out = 2
n_tot = 4
n_state = 1
n_par = 2
n_channel = 2
sqrts = 1.000000000000E+03
s_fixed = T
cm_frame = T
azim.dep. = F
Flavor combinations:
1: s s s s
Phase-space / structure-function channels:
1: 1
2: 1
MD5 sum (model par) = '34AE44487D84198697E1368F11F2C8D8'
MD5 sum (phs config) = '427619BFB511606D9A4F8673A5AEAC3B'
========================================================================
Process term configuration:
------------------------------------------------------------------------
Term #1
Process component index = 1
Term index w.r.t. component = 1
Rearrange partons = F
------------------------------------------------------------------------
Hard interaction:
------------------------------------------------------------------------
Interaction: 1
Incoming:
Particle 1
[momentum undefined]
mask [fch] = [FFgF]
internal links: X => 3 4
Particle 2
[momentum undefined]
mask [fch] = [FFgF]
internal links: X => 3 4
Outgoing:
Particle 3
[momentum undefined]
mask [fch] = [FFgF]
internal links: 1 2 => X
Particle 4
[momentum undefined]
mask [fch] = [FFgF]
internal links: 1 2 => X
State matrix: norm = 1.000000000000E+00
[f(25) h(0)]
[f(25) h(0)]
[f(25) h(0)]
[f(25) h(0)] => ME(1) = ( 0.000000000000E+00, 0.000000000000E+00)
========================================================================
Beam data (collision):
s (mass = 1.2500000E+02 GeV)
s (mass = 1.2500000E+02 GeV)
sqrts = 1.000000000000E+03 GeV
Azimuthal dependence = F
Lab frame is c.m. frame = T
========================================================================
Multi-channel integrator configurations:
------------------------------------------------------------------------
MCI #1:
Associated components = 1
MC input parameters = 2
MC parameters (SF) = 0
MC parameters (PHS) = 2
Test integrator:
Number of channels = 2
Number of dimensions = 2
Number of divisions = 100
Random-number generator: test (state = 1)
Call statistics (current run): [no calls]
========================================================================
* Create a process instance
* Integrate with default test parameters
========================================================================
Process [scattering]: 'processes11'
Run ID = 'run11'
Library name = 'processes11'
Process index = 1
Process components:
1: 'processes11_i1': s, s => s, s [test_me]
------------------------------------------------------------------------
Variable list: [not shown]
------------------------------------------------------------------------
Configuration data:
Number of incoming particles = 2
Number of process components = 1
Number of process terms = 1
Number of MCI configurations = 1
Model = Test
QCD parameters (coupling undefined)
RNG factory: test (1)
------------------------------------------------------------------------
------------------------------------------------------------------------
Expressions (cut, scales, weight): [not shown]
========================================================================
Process component configuration:
------------------------------------------------------------------------
Component #1
Component ID = processes11_i1
Initial component = T
N (in, out, tot) = 2 2 4
Particle content = s, s => s, s
Method = test_me
Process variant = test_me
MD5 sum (def) = ' '
Process core:
test type implementing prc_test
Referenced data:
Terms = 1
MC dataset = 1
Partonic phase-space configuration:
ID = 'processes11_i1'
n_in = 2
n_out = 2
n_tot = 4
n_state = 1
n_par = 2
n_channel = 2
sqrts = 1.000000000000E+03
s_fixed = T
cm_frame = T
azim.dep. = F
Flavor combinations:
1: s s s s
Phase-space / structure-function channels:
1: 1
2: 1
MD5 sum (model par) = '34AE44487D84198697E1368F11F2C8D8'
MD5 sum (phs config) = '427619BFB511606D9A4F8673A5AEAC3B'
========================================================================
Process term configuration:
------------------------------------------------------------------------
Term #1
Process component index = 1
Term index w.r.t. component = 1
Rearrange partons = F
------------------------------------------------------------------------
Hard interaction:
------------------------------------------------------------------------
Interaction: 1
Incoming:
Particle 1
[momentum undefined]
mask [fch] = [FFgF]
internal links: X => 3 4
Particle 2
[momentum undefined]
mask [fch] = [FFgF]
internal links: X => 3 4
Outgoing:
Particle 3
[momentum undefined]
mask [fch] = [FFgF]
internal links: 1 2 => X
Particle 4
[momentum undefined]
mask [fch] = [FFgF]
internal links: 1 2 => X
State matrix: norm = 1.000000000000E+00
[f(25) h(0)]
[f(25) h(0)]
[f(25) h(0)]
[f(25) h(0)] => ME(1) = ( 0.000000000000E+00, 0.000000000000E+00)
========================================================================
Beam data (collision):
s (mass = 1.2500000E+02 GeV)
s (mass = 1.2500000E+02 GeV)
sqrts = 1.000000000000E+03 GeV
Azimuthal dependence = F
Lab frame is c.m. frame = T
========================================================================
Multi-channel integrator configurations:
------------------------------------------------------------------------
MCI #1:
Associated components = 1
MC input parameters = 2
MC parameters (SF) = 0
MC parameters (PHS) = 2
Current pass = 1
Number of iterations = 1
Number of calls = 10000
Test integrator:
Integral = 3.1335430271E+08
Number of channels = 2
Number of dimensions = 2
Number of divisions = 100
Random-number generator: test (state = 1)
Call statistics (current run):
total = 20000
failed kin. = 0
failed cuts = 0
passed cuts = 0
evaluated = 20000
|=============================================================================|
| It Calls Integral[fb] Error[fb] Err[%] Acc Eff[%] Chi2 N[It] |
|=============================================================================|
1 10000 3.1335430E+08 0.00E+00 0.00 0.00* 0.00
|-----------------------------------------------------------------------------|
1 10000 3.1335430E+08 0.00E+00 0.00 0.00 0.00
|=============================================================================|
========================================================================
Integral divided by phs factor = 9.9990459E-01
* Cleanup
* Test output end: processes_11
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