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dice_ics/low/agora/params/agora_sigma00.params
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2020-02-07 11:25:31 +01:00

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###################
# Global parameters
###################
# Virial velocity of the galaxy [km/s]
v200 0.0
# Virial mass of the galaxy [1e10 Msol]
# Overrides the v200 parameter
m200 112.127
# Halo spin parameter
lambda 0.04
# Refinement level of the potential grid
level_coarse 7
# Refinement level of the plane plane density grid
level_grid_mid_dens 7
# Refinement level of the turbulence grid
level_grid_turb 7
# Refinement level of the gaussian field grid
level_grid_dens_fluct 7
# Size of the potential grid [kpc]
boxsize1 320.0
boxsize2 160.0
boxsize3 80.0
boxsize4 40.0
boxsize5 20.0
boxsize6 10.0
boxsize7 5.0
# Dispersion for the Gaussian field fluctuations
dens_fluct_sigma 0.50
# Physical injection scale of the random field fluctuations [kpc]
dens_fluct_scale_inj 2.00
# Physical dissipation scale of the random field fluctuations [kpc]
dens_fluct_scale_diss 0.25
dens_fluct_seed 1212
# Seed for the random number generator
seed 1246
# Switch to MCMC ntry algorithm to position particles for a value > 1
mcmc_ntry 1
# Number of iterations to reach hydrostatic equilibrium (zero to deactivate)
hydro_eq_niter 3
#######################
# Components parameters
#######################
#######################
# Component 1: Halo
#######################
# Fraction of the virial mass in the component 1
mass_frac1 0.9578424465115449
# Number of particles for the component 1
npart1 100000
# Target mass of individual particles [Msol]
#part_mass1 2e6
# Number of particles for the potential computation
npart_pot1 200000
# Target mass of individual particles for potential computation [Msol]
#part_mass_pot1 1e6
# Component 1 density model
# Available models:
# 1 = Exponential disk + sech-z profile
# 2 = Myamoto-Nagai profile
# 3 = Exponential disk + exponential-z profile
# 4 = Hernquist profile
# 5 = Plummer profile
# 6 = Jaffe profile
# 7 = Isothermal profile
# 8 = NFW profile
# 9 = Burkert
# 10 = Einasto profile
# 11 = Mestel profile
# 12 = Kalnajs profile
# 13 = Sersic profile
# 14 = Toomre-Kuzmin profile
# 15 = Uniform profile
# 16 = Pseudo-isothermal profile
model1 8
# Scale length of the density profile [kpc]
scale_length1 1.0
# Core radius in the density profile [kpc]
rcore1 0.
# Concentration parameter
# if positive, the scale length is recomputed to match the concentration
# the concentration parameter of an NFW halo with a mass M200*mass_frac
concentration1 10
# Gravitational softening for the poisson solver [kpc]
softening1 0.6
# Component 1 radial density cut [kpc]
cut1 0.0
# Component 1 thickness parameters
flatx1 1.00
flaty1 1.00
flatz1 1.00
# Gaussian step for the MCMC Metropolis-Hasting particle postionning algorithm,
# expressed in units of the component scale length. Default value is 0.5.
mcmc_step1 0.50
# Maximum velocity for the component 1 particles in expressed in units of escape velocity
vmax_esc1 5.0
# Particles type (GADGET format -- 0=Gas,1=Halo,2=Disk,3=Bulge,4=Stars)
type1 1
# Radius at which the density profile should have the exact same
# value as the NFW profile with the previously defined concentration
# and with a mass M200*mass_frac [kpc]
radius_nfw1 -1.0
# Cut the density function in the Jeans equation integration
jeans_mass_cut1 0
# Compute component velocity (debug option)
compute_vel1 1
# Number of integral of motion for the Jeans equations
# 0 = Do not use Jeans equation for sigma_r and sigma_z (model specidifed by sigmar_model and sigmaz_model)
# 1 = Spherically symmetric Jeans equation
# 2 = Jeans equations with 2 integrals of motion
# 3 = Jeans equations with 3 integrals of motion (solved on a 2D grid in the r-z plane)
jeans_dim1 1
# Method for streaming velocity computation
# 0 = - User defined fixed fraction of the circular velocity profile (stream_fraction keyword)
# 1 = Bullock 2001 - Streaming velocity profile following the cumulative mass profile
# 2 = Springel 1999 - Streaming velocity profile following is a fixed fraction of the rotation curve
# 3 = - Solid Body rotation
stream_method1 1
# Streaming fraction of the component 1 (only for steam_method=4)
stream_fraction1 0.00
# Alpha coefficient for the generalized normal distribution [Gaussian=2.0]
# for the random generation of velocities
ggd_beta1 2.0
# Minimum acceptance for the MCMC chain
accept_min1 0.95
# Maximum acceptance for the MCMC chain
accept_max1 0.99
################################
# Component 2: Thin stellar disk
################################
mass_frac2 0.03066166043860979
npart2 100000
npart_pot2 200000
model2 3
# If the value is zero and the particle type is not 1 the size is determined using the spin conservation
# (Fitting formula from Mo, Mao & White 1998)
scale_length2 3.43218
cut2 30.
flatz2 0.1
mcmc_step2 0.3
type2 1
stream_fraction2 1.00
# Epicycle approximation in the Jeans equations
epicycle2 1
# Minimal value for the Toomre parameter
Q_lim2 1.5
# Fixed value for the Toomre parameter
Q_fixed2 0.0
# Additional term for the Toomre parameter
Q_boost2 0.0
# Past constant Star Formation Rate [Msol/yr]
# Negative value recomptes the SFR according to Bouché et al. 2010
SFR2 -1.
# Minimum age of the stars [Myr]
min_age2 50.
# Metallicity of the stars [Zsolar]
metal2 0.02041
# Gaussian fluctuations in the density field
dens_fluct2 0
# Use the density cut during the Jeans equation integration
jeans_mass_cut2 1
compute_vel2 1
###########################
# Component 3: Gaseous disk
###########################
mass_frac3 0.007663631417945721
npart3 1000000
npart_pot3 2000000
model3 3
scale_length3 3.43218
cut3 30.
flatz3 0.1
mcmc_step3 0.15
type3 0
stream_fraction3 1.00
metal3 0.02041
# Metallicity follows density gradient
metal_gradient3 0
# Temperature of the gas particles [K]
t_init3 1e4
# Turbulent velocity dispersion [km/s]
turb_sigma3 0.0
# Turbulence injection scale [kpc]
turb_scale_inj3 1.0
# Turbulence dissipation scale [kpc]
turb_scale_diss3 0.01
# Seed for the turbulent gaussian field
turb_seed3 1234
# Compute hydrostatic equilibrium
hydro_eq3 0
# Gaussian step for the MCMC Metropolis-Hasting particle postionning algorithm
# within the hydro equilibrium algorithm
mcmc_step_hydro3 0.3
compute_vel3 1
# Polytropic index for the gas (1 = isothermal)
gamma_poly3 1.0
############################
# Component 4: Stellar bulge
############################
mass_frac4 0.0038322616318995422
npart4 12500
npart_pot4 25000
model4 4
scale_length4 0.343218
flatz4 0.80
mcmc_step4 0.3
type4 1
stream_fraction4 1.
min_age4 50.
metal4 0.02041
Q_lim4 1.5
epicycle4 1
compute_vel4 1