# Input file for NMSSMTools # Based on SUSY LES HOUCHES ACCORD II # BLOCK MODSEL 3 1 # NMSSM particle content 1 0 # IMOD (0=general NMSSM, 1=mSUGRA, 2=GMSB) 10 0 # ISCAN (0=no scan, 1=grid scan, 2=random scan, 3=MCMC) 9 1 # Call micrOmegas (default 0=no, 1=relic density only, # 2=dir. det. rate, 3=indir. det. rate, 4=both det. rates) 8 2 # Precision for Higgs masses (default 0: as before, # 1: full 1 loop + full 2 loop from top/bot Yukawas # 2: as 1 + pole masses - 1&2 by courtesy of P. Slavich) 13 0 # 1: Sparticle decays via NMSDECAY (default 0) BLOCK SMINPUTS 1 127.92D0 # ALPHA_EM^-1(MZ) 2 1.16637D-5 # GF 3 .119D0 # ALPHA_S(MZ) 4 91.1876D0 # MZ 5 4.16D0 # MB(MB) (running mass) 6 172.5D0 # MTOP (pole mass) 7 1.777D0 # MTAU BLOCK MINPAR # 0 1000.D0 # MSUSY (If =/= SQRT(2*MQ1+MU1+MD1)/2) 3 28D0 # TANB at MZ BLOCK EXTPAR 1 150.D0 # M1 (If =/= M2/2) 2 300.D0 # M2 3 1000.D0 # M3 (If =/= 3*M2) 11 2500.D0 # AU3 12 2500.D0 # AD3 13 2500.D0 # AE3 # 16 -2500.D0 # AE2 = AE1 (If =/= AE3) 33 1000.D0 # ML3 # 32 200.D0 # ML2 = ML1 (If =/= ML3) 36 1000.D0 # ME3 # 35 200.D0 # ME2 = ME1 (If =/= ME3) 43 1000.D0 # MQ3 # 42 1000.D0 # MQ2 = MQ1 (If =/= MQ3) 46 1000.D0 # MU3 # 45 1000.D0 # MU2 = MU1 (If =/= MU3) 49 1000.D0 # MD3 # 48 1000.D0 # MD2 = MD1 (If =/= MD3) 61 0.200D0 # LAMBDA 62 0.24D0 # KAPPA (If =/= 0) 63 679D0 # ALAMBDA (If =/= 0 and XIF+MA are not inputs) 64 -0.3105128D0 # AKAPPA (If =/= 0, KAPPA =/=0 and XIS+MP are not inputs) # If KAPPA = 0: AKAPPA must be 0, either XIS or MP is input 65 200D0 # MUEFF # 66 0.D0 # XIF in GeV^2 (If =/= 0 and ALAMBDA+MA are not inputs) # 67 0.D0 # XIS in GeV^3 (If =/= 0 and AKAPPA+MP are not inputs) # 68 0.D0 # MU' (If =/= 0) # 69 0.D0 # MS'^2 (If =/= 0) # 72 0.D0 # M3H^2 (If =/= 0) # 124 1321.D0 # MA (If ALAMBDA+XIF are not inputs) # If ALAMBDA+MA+XIF are not inputs: ALAMBDA=XIF=0, MA is computed # If only XIF is input: ALAMBDA=0, MA is computed # If only MA is input: XIF=0, ALAMBDA is computed # If only ALAMBDA is input: XIF=0, MA is computed # 125 125.D0 # MP (If AKAPPA+XIS is not an input) # If AKAPPA+MP+XIS are not inputs: AKAPPA=XIS=0, MP is computed # If only XIS is input: AKAPPA=0, MP is computed # If only MP is input: XIS=0, AKAPPA is computed # If only AKAPPA is input: XIS=0, MP is computed