Compilation of results
Job owner |
bilby version |
Waveform |
Sampler |
Config file |
Prior |
Notes |
Debatri Chattopadhyay |
0.3.5 |
SEOBNRv4_ROM |
dynesty |
-- |
-- |
Results |
Isobel Romero-Shaw |
0.4.3 |
IMRPhenomPv2 |
CPNest |
config file |
prior file |
-- |
ini file - GW170608.ini
# An ini file for running H1L1 searches for GW170608
trigger-time = 1180922494.5
label = cpnest_GW170608_lalinf_psd
maximum-frequency=1024
minimum-frequency=20
sampling-frequency=4098
detectors = [H1, L1]
coherence-test = False
duration = 16
outdir = .
sampler = cpnest
request-cpus = 12
sampler-kwargs = {nlive: 2000, nthreads=4, 'maxmcmc': 1000, n_periodic_checkpoint=1000}
reference-frequency = 20
channel-dict = {H1:DCH-CLEAN_STRAIN_C02, L1:DCH-CLEAN_STRAIN_C02}
prior_file = GW170608.prior
accounting = ligo.dev.o3.cbc.pe.lalinference
time-marginalization=True
distance-marginalization=True
phase-marginalization=True
create-plots=True
local-generation = True
psd-dict = {H1:GW170608/GW170608_C02_reruns/h1_psd_C02.dat, L1:GW170608/GW170608_C02_reruns/l1_psd_C02.dat}
prior file - GW170608.prior
# These are the priors for analysing GW170608.
mass_1 = Uniform(name='mass_1', minimum=9.2, maximum=36.4, unit='$M_{\\odot}$')
mass_2 = Uniform(name='mass_2', minimum=3.25, maximum=10.3, unit='$M_{\\odot}$')
chirp_mass = Constraint(name='chirp_mass', minimum=8, maximum=9)
mass_ratio = Constraint(name='mass_ratio', minimum=0.1, maximum=1)
a_1 = Uniform(name='a_1', minimum=0, maximum=0.99)
a_2 = Uniform(name='a_2', minimum=0, maximum=0.99)
tilt_1 = Sine(name='tilt_1')
tilt_2 = Sine(name='tilt_2')
phi_12 = Uniform(name='phi_12', minimum=0, maximum=2 * np.pi)
phi_jl = Uniform(name='phi_jl', minimum=0, maximum=2 * np.pi)
luminosity_distance = PowerLaw(alpha=2, name='luminosity_distance', minimum=90, maximum=2000, unit='Mpc', latex_label='$d_L$')
dec = Cosine(name='dec')
ra = Uniform(name='ra', minimum=0, maximum=2 * np.pi)
theta_jn = Sine(name='theta_jn')
psi = Uniform(name='psi', minimum=0, maximum=np.pi)
phase = Uniform(name='phase', minimum=0, maximum=2 * np.pi)