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1
 enter npoints,number_propagators,rank,scaloop,muscale
 
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 scaloop= 1 -> looptools 1-loop 
 
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 scaloop= 2 -> avh 1-loop (massive with complex masses)
 
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 scaloop= 3 -> qcdloop   1-loop (Ellis and Zanderighi)
 
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 muscale (dimension of energy) is the scale
 
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 for the 1-loop integrals
 
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9
  
 
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------------------------------------------------------------------------
 
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|              You are using CutTools - Version 1.6.9                  |
 
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|              Authors: G. Ossola, C. Papadopoulos, R. Pittau          |
 
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|              Published in JHEP 0803:042,2008                         |
 
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|              http://www.ugr.es/~pittau/CutTools                      |
 
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|                                                                      |
 
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|              Internal mproutines detected in CutTools                |
 
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------------------------------------------------------------------------
 
18
   
 
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########################################################################
 
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#                                                                      #
 
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#                      You are using OneLOop-2.2                       #
 
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#                                                                      #
 
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# for the evaluation of 1-loop scalar 1-, 2-, 3- and 4-point functions #
 
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#                                                                      #
 
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# author: Andreas van Hameren <hamerenREMOVETHIS@ifj.edu.pl>           #
 
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#   date: 04-07-2011                                                   #
 
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#                                                                      #
 
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# Please cite                                                          #
 
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#    A. van Hameren,                                                   #
 
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#      Comput.Phys.Commun. 182 (2011) 2427-2438, arXiv:1007.4716       #
 
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#    A. van Hameren, C.G. Papadopoulos and R. Pittau,                  #
 
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#      JHEP 0909:106,2009, arXiv:0903.4665                             #
 
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# in publications with results obtained with the help of this program. #
 
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#                                                                      #
 
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########################################################################
 
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########################################################################
 
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#                                                                      #
 
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#          You are using OneLOop in multiple precision                 #
 
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#                                                                      #
 
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#             obtained by R. Pittau (pittau@ugr.es)                    #
 
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#             from the original OneLOop-2.2 package                    #
 
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#                                                                      #
 
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#                 Internal mproutines detected.                        #
 
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#                                                                      #
 
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########################################################################
 
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   iter=            1
 
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50
  Complete Amplitude (without r2):     
 
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  finite part           amp(0)= ( -63.415977119186991     , -90.510086314917629     )
 
54
  coeff of 1/eps   pole amp(1)= (-1.10509518203016910E-012,-1.05193362661739200E-011)
 
55
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
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                         ampcc= ( 1.76373868033740666E-002, -90.510086314890771     )
 
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                            R1= ( -63.433614505990363     ,-2.68528310698457082E-011)
 
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                        stable= T
 
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   iter=            2
 
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63
                
 
64
  Complete Amplitude (without r2):     
 
65
                
 
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  finite part           amp(0)= ( -195.72595079235998     ,  752.14672612318248     )
 
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  coeff of 1/eps   pole amp(1)= ( 1.96144489539307187E-012,-8.68837353593610488E-014)
 
69
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
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                         ampcc= ( -211.26496116549038     ,  752.14672612320669     )
 
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                            R1= (  15.539010373130395     ,-2.42494024860207037E-011)
 
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                        stable= T
 
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   iter=            3
 
76
                
 
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78
  Complete Amplitude (without r2):     
 
79
                
 
80
                
 
81
  finite part           amp(0)= ( -506.59199964851149     ,  734.88569401998018     )
 
82
  coeff of 1/eps   pole amp(1)= (-1.77735604012241311E-011,-1.86395804840031573E-011)
 
83
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
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                         ampcc= ( -507.66606632190900     ,  734.88569401997472     )
 
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                            R1= (  1.0740666733974873     , 5.42785816293189815E-012)
 
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                        stable= T
 
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   iter=            4
 
90
                
 
91
                
 
92
  Complete Amplitude (without r2):     
 
93
                
 
94
                
 
95
  finite part           amp(0)= ( -144.22985296229839     ,  437.17321758321759     )
 
96
  coeff of 1/eps   pole amp(1)= (-1.64646074551910715E-013, 2.29434141378827292E-012)
 
97
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
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                         ampcc= ( -143.47193614009106     ,  437.17321758322066     )
 
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                            R1= (-0.75791682220732959     ,-3.07256442511061291E-012)
 
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                        stable= T
 
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   iter=            5
 
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106
  Complete Amplitude (without r2):     
 
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108
                
 
109
  finite part           amp(0)= ( -39.238319415699124     ,  60.450938539651439     )
 
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  coeff of 1/eps   pole amp(1)= (-6.16169268385924340E-012, 5.26354926299332812E-013)
 
111
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
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                         ampcc= ( -21.862151299703303     ,  60.450938539580306     )
 
113
                            R1= ( -17.376168115995824     , 7.11310121914721042E-011)
 
114
                        stable= T
 
115
                
 
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   iter=            6
 
118
                
 
119
                
 
120
  Complete Amplitude (without r2):     
 
121
                
 
122
                
 
123
  finite part           amp(0)= ( -1108.8363932732616     ,  2188.4080503268929     )
 
124
  coeff of 1/eps   pole amp(1)= ( 8.14340261889867634E-012,-9.34675788032950089E-013)
 
125
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
126
                         ampcc= ( -1054.0922916036686     ,  2188.4080503268488     )
 
127
                            R1= ( -54.744101669593050     , 4.39989378264726786E-011)
 
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                        stable= T
 
129
                
 
130
                
 
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   iter=            7
 
132
                
 
133
                
 
134
  Complete Amplitude (without r2):     
 
135
                
 
136
                
 
137
  finite part           amp(0)= ( -95.383832305321761     , -135.63530587018286     )
 
138
  coeff of 1/eps   pole amp(1)= ( 2.83328915884339949E-012, 4.14924503931957831E-012)
 
139
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
140
                         ampcc= ( -59.868859758056082     , -135.63530587020725     )
 
141
                            R1= ( -35.514972547265671     , 2.43788988996129780E-011)
 
142
                        stable= T
 
143
                
 
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   iter=            8
 
146
                
 
147
                
 
148
  Complete Amplitude (without r2):     
 
149
                
 
150
                
 
151
  finite part           amp(0)= (  275.87708782965990     , -1075.4435023405886     )
 
152
  coeff of 1/eps   pole amp(1)= (-1.12798659301915905E-013,-1.25609579606279140E-012)
 
153
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
154
                         ampcc= (  276.91492722481468     , -1075.4435023406149     )
 
155
                            R1= ( -1.0378393951547658     , 2.63189470217639642E-011)
 
156
                        stable= T
 
157
                
 
158
                
 
159
   iter=            9
 
160
                
 
161
                
 
162
  Complete Amplitude (without r2):     
 
163
                
 
164
                
 
165
  finite part           amp(0)= (  169.04049810059553     , -950.12871340833249     )
 
166
  coeff of 1/eps   pole amp(1)= (-1.17936216348368816E-012, 2.24317974671050667E-012)
 
167
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
168
                         ampcc= (  169.62153632401424     , -950.12871340833351     )
 
169
                            R1= (-0.58103822341873013     , 1.05018216345342735E-012)
 
170
                        stable= T
 
171
                
 
172
                
 
173
   iter=           10
 
174
                
 
175
                
 
176
  Complete Amplitude (without r2):     
 
177
                
 
178
                
 
179
  finite part           amp(0)= ( -66.441853461965962     , -211.72014200390259     )
 
180
  coeff of 1/eps   pole amp(1)= ( 5.98965321785271954E-014,-1.21584543317031908E-013)
 
181
  coeff of 1/eps^2 pole amp(2)= (  0.0000000000000000     ,  0.0000000000000000     )
 
182
                         ampcc= ( -54.986674200916497     , -211.72014200384510     )
 
183
                            R1= ( -11.455179261049473     ,-5.74889469362460685E-011)
 
184
                        stable= T
 
185
                
 
186
 n_tot =   10.000000000000000     
 
187
 n_mp  =   0.0000000000000000     
 
188
 n_disc=           0