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steveschulze committed Aug 9, 2023
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10 changes: 5 additions & 5 deletions redback/priors/arnett.prior
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@@ -1,7 +1,7 @@
redshift = Uniform(1e-3,3,name='redshift', latex_label = r'$z$')
f_nickel = LogUniform(1e-3,1,name='f_nickel', latex_label = r'$f_{\mathrm{Ni}}$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}} [M_{\odot}]$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}} [km/s]$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\kappa$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\kappa_{\gamma}$')
temperature_floor = LogUniform(1e3,1e5,name = 'temperature_floor', latex_label = r'$T_{\mathrm{floor}}$ [k]')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}}~(M_\odot)$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}}~(\mathrm{km}/\mathrm{s})$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\\kappa_{\\gamma}~(\mathrm{cm}^{2}/\mathrm{g})$')
temperature_floor = LogUniform(1e3,1e5,name = 'temperature_floor', latex_label = r'$T_{\mathrm{floor}}~(\mathrm{K})$')
10 changes: 6 additions & 4 deletions redback/priors/arnett_bolometric.prior
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@@ -1,5 +1,7 @@
f_nickel = LogUniform(1e-3,1,name='f_nickel', latex_label = r'$f_{\mathrm{Ni}}$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}} [M_{\odot}]$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}} [km/s]$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\kappa$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\kappa_{\gamma}$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}}~(M_{\odot})$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}}~(\mathrm{km}/\mathrm{s})$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\\kappa_{\\gamma}~(\mathrm{cm}^{2}/\mathrm{g})$')


8 changes: 4 additions & 4 deletions redback/priors/basic_magnetar.prior
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@@ -1,4 +1,4 @@
p0 = LogUniform(0.7, 10e3, 'p0', latex_label = r'$p_{0} [ms]$')
bp = LogUniform(1e-4,1e4,'bp',latex_label = r'$B_{p}$ [10$^{14}$G]')
mass_ns = Uniform(1.1, 2.2, 'mass_ns', latex_label = r'$M [M_{\odot}]$')
theta_pb = Uniform(0, 3.14, 'theta_pb', latex_label = r'$\theta_{\mathrm{PB}}$')
p0 = LogUniform(0.7, 10e3, 'p0', latex_label = r'$P_{0}~(\mathrm{ms})$')
bp = LogUniform(1e-4,1e4,'bp',latex_label = r'$B_{p}~(10^{14}~\mathrm{G})$')
mass_ns = Uniform(1.1, 2.2, 'mass_ns', latex_label = r'$M_{\mathrm{NS}}~(M_\odot)$')
theta_pb = Uniform(0, 3.14, 'theta_pb', latex_label = r'$\\theta_{\mathrm{PB}}~({\mathrm{rad}})$')
18 changes: 9 additions & 9 deletions redback/priors/basic_magnetar_powered.prior
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@@ -1,10 +1,10 @@
redshift = Uniform(1e-3,3,name='redshift', latex_label = r'$z$')
p0 = LogUniform(0.7, 10e3, 'p0', latex_label = r'$p_{0} [ms]$')
bp = LogUniform(1e-4,1e4,'bp',latex_label = r'$B_{p}$ [10$^{14}$G]')
mass_ns = Uniform(1.1, 2.2, 'mass_ns', latex_label = r'$M_{\mathrm{NS}} [M_{\odot}]$')
theta_pb = Uniform(0, 3.14/2, 'theta_pb', latex_label = r'$\\theta_{P-B}$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}} [M_{\odot}]$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}} [km/s]$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\kappa$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\kappa_{\gamma}$')
temperature_floor = LogUniform(1e3,1e5,name = 'temperature_floor', latex_label = r'$T_{\mathrm{floor}}$ [k]')
p0 = LogUniform(0.7, 10e3, 'p0', latex_label = r'$P_{0}~(\mathrm{ms})$')
bp = LogUniform(1e-4,1e4,'bp',latex_label = r'$B_{p}~(10^{14}~\mathrm{G})$')
mass_ns = Uniform(1.1, 2.2, 'mass_ns', latex_label = r'$M_{\mathrm{NS}}~(M_\odot)$')
theta_pb = Uniform(0, 3.14/2, 'theta_pb', latex_label = r'$\\theta_{\mathrm{PB}}~({\mathrm{rad}})$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}}~(M_{\odot})$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}}~(\mathrm{km}/\mathrm{s})$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\\kappa_{\\gamma}~(\mathrm{cm}^{2}/\mathrm{g})$')
temperature_floor = LogUniform(1e3,1e5,name = 'temperature_floor', latex_label = r'$T_{\mathrm{floor}}~(\mathrm{K})$')
16 changes: 8 additions & 8 deletions redback/priors/basic_magnetar_powered_bolometric.prior
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@@ -1,8 +1,8 @@
p0 = LogUniform(0.7, 10e3, 'p0', latex_label = r'$p_{0} [ms]$')
bp = LogUniform(1e-4,1e4,'bp',latex_label = r'$B_{p}$ [10$^{14}$G]')
mass_ns = Uniform(1.1, 2.2, 'mass_ns', latex_label = r'$M_{\mathrm{NS}} [M_{\odot}]$')
theta_pb = Uniform(0, 3.14/2, 'theta_pb', latex_label = r'$\\theta_{P-B}$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}} [M_{\odot}]$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}}$ [km/s]')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\kappa$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\kappa_{\gamma}$')
p0 = LogUniform(0.7, 10e3, 'p0', latex_label = r'$P_{0}~(\mathrm{ms})$')
bp = LogUniform(1e-4,1e4,'bp',latex_label = r'$B_{p}~(10^{14}~\mathrm{G})$')
mass_ns = Uniform(1.1, 2.2, 'mass_ns', latex_label = r'$M_{\mathrm{NS}}~(M_\odot)$')
theta_pb = Uniform(0, 3.14/2, 'theta_pb', latex_label = r'$\\theta_{\mathrm{PB}}~({\mathrm{rad}})$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}}~(M_{\odot})$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}}~(\mathrm{km}/\mathrm{s})$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\\kappa_{\\gamma}~(\mathrm{cm}^{2}/\mathrm{g})$')
20 changes: 10 additions & 10 deletions redback/priors/basic_mergernova.prior
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@@ -1,11 +1,11 @@
redshift = Uniform(1e-6, 0.1, 'redshift', latex_label = r'$z$')
ejecta_radius = LogUniform(1e9, 1e10, 'ejecta_radius', latex_label = r'$R_{\mathrm{ejecta}}$')
mej = Uniform(1e-4, 0.1, 'mej', latex_label = r'$M_{\mathrm{ej}} [M_{\odot}]$')
beta = Uniform(0.1, 0.7, 'beta', latex_label = r'$v_{\mathrm{ej}} [c]$')
kappa = Uniform(1, 30, 'kappa', latex_label = r'$\kappa$')
n_ism = LogUniform(1e-4, 1, 'n_ism', latex_label = r'$m_{\mathrm{ism}}$')
p0 = LogUniform(0.7, 10e3, 'p0', latex_label = r'$p_{0} [ms]$')
bp = LogUniform(1e-4,1e4,'bp',latex_label = r'$B_{p}$ [10$^{14}$G]')
mass_ns = Uniform(1.1, 2.2, 'mass_ns', latex_label = r'$M [M_{\odot}]$')
theta_pb = Uniform(0, 1.57, 'theta_pb', latex_label = r'$\theta_{\mathrm{PB}}$')
thermalisation_efficiency = Uniform(0.1, 1, 'thermalisation_efficiency', latex_label='$\epsilon_{\mathrm{th}}$')
ejecta_radius = LogUniform(1e9, 1e10, 'ejecta_radius', latex_label = r'$R_{\mathrm{ejecta}}~({\mathrm{cm}})$')
mej = Uniform(1e-4, 0.1, 'mej', latex_label = r'$M_{\mathrm{ej} }~(M_\odot)$')
beta = Uniform(0.1, 0.7, 'beta', latex_label = r'$v_{\mathrm{ej}}~(c)$')
kappa = Uniform(1, 30, 'kappa', latex_label = r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
n_ism = LogUniform(1e-4, 1, 'n_ism', latex_label = r'$n_{\mathrm{ism}}~({\mathrm{cm}}^{-3})$')
p0 = LogUniform(0.7, 10e3, 'p0', latex_label = r'$P_{0}~(\mathrm{ms})$')
bp = LogUniform(1e-4,1e4,'bp',latex_label = r'$B_{p}~(10^{14}~\mathrm{G})$')
mass_ns = Uniform(1.1, 2.2, 'mass_ns', latex_label = r'$M_{\mathrm{NS}}~(M_\odot)$')
theta_pb = Uniform(0, 1.57, 'theta_pb', latex_label = r'$\\theta_{\mathrm{PB}}~({\mathrm{rad}})$')
thermalisation_efficiency = Uniform(0.1, 1, 'thermalisation_efficiency', latex_label=r'$\\epsilon_{\mathrm{th}}$')
8 changes: 4 additions & 4 deletions redback/priors/bulla_bns_kilonova.prior
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@@ -1,5 +1,5 @@
redshift = Uniform(1e-3, 0.1, 'redshift', latex_label = r'$z$')
mej_dyn = Uniform(0.001, 0.02, 'mej_dyn', latex_label = r'$M_{\mathrm{ej-dyn}} [M_{\odot}]$')
mej_disk = Uniform(0.01, 0.13, 'mej_disk', latex_label = r'$M_{\mathrm{ej-disk}} [M_{\odot}]$')
phi = Uniform(0,90, 'phi', latex_label = r'$\phi$')
costheta_obs = Uniform(0,1, 'costheta_obs', latex_label = r'$\cos\theta_{\mathrm{obs}}$')
mej_dyn = Uniform(0.001, 0.02, 'mej_dyn', latex_label = r'$M_{\mathrm{ej-dyn}}~(M_{\odot})$')
mej_disk = Uniform(0.01, 0.13, 'mej_disk', latex_label = r'$M_{\mathrm{ej-disk}}~(M_{\odot})$')
phi = Uniform(0,90, 'phi', latex_label = r'$\\phi~(^\circ)$')
costheta_obs = Uniform(0,1, 'costheta_obs', latex_label = r'$\cos~\\theta_{\mathrm{obs}}$')
6 changes: 3 additions & 3 deletions redback/priors/bulla_nsbh_kilonova.prior
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@@ -1,4 +1,4 @@
redshift = Uniform(1e-3, 0.1, 'redshift', latex_label = r'$z$')
mej_dyn = Uniform(0.01, 0.09, 'mej_dyn', latex_label = r'$M_{\mathrm{ej-dyn}} [M_{\odot}]$')
mej_disk = Uniform(0.01, 0.09, 'mej_disk', latex_label = r'$M_{\mathrm{ej-disk}} [M_{\odot}]$')
costheta_obs = Uniform(0,1, 'costheta_obs', latex_label = r'$\cos\theta_{\mathrm{obs}}$')
mej_dyn = Uniform(0.01, 0.09, 'mej_dyn', latex_label = r'$M_{\mathrm{ej-dyn}}~(M_{\odot})$')
mej_disk = Uniform(0.01, 0.09, 'mej_disk', latex_label = r'$M_{\mathrm{ej-disk}}~(M_{\odot})$')
costheta_obs = Uniform(0,1, 'costheta_obs', latex_label = r'$\cos~\\theta_{\mathrm{obs}}$')
12 changes: 6 additions & 6 deletions redback/priors/cocoon.prior
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@@ -1,13 +1,13 @@
redshift = Uniform(0.01, 3, 'redshift', latex_label=r'$z$')
umax = Uniform(0.15, 0.7, 'umax', latex_label=r'$U_{\mathrm{max}}$')
umin = Uniform(0.1, 0.15, 'umin', latex_label=r'$U_{\mathrm{min}}$')
loge0 = Uniform(45, 50, 'loge0', latex_label=r'$\log_{10} E_{i}$')
loge0 = Uniform(45, 50, 'loge0', latex_label=r'$\log_{10}~E_{i} / {\mathrm{erg}}$')
k = Uniform(0.5, 4, 'k', latex_label=r'$k$')
mej = Uniform(1e-3, 0.07, 'mej', latex_label=r'Ejecta mass$M_{\odot}$')
logn0 = Uniform(-5, 2, 'logn0', latex_label=r'$\log_{10} n_{\mathrm{ism}}$')
mej = Uniform(1e-3, 0.07, 'mej', latex_label = r'$M_{\mathrm{ej} }~(M_\odot)$')
logn0 = Uniform(-5, 2, 'logn0', latex_label=r'$\log_{10}~n_{\mathrm{ism}} / {\mathrm{cm}}^{-3}$')
p = Uniform(2, 3, 'p', latex_label=r'$p$')
logepse = Uniform(-5, 0, 'logepse', latex_label=r'$\log_{10} \epsilon_{e}$')
logepsb = Uniform(-5, 0, 'logepsb', latex_label=r'$\log_{10} \epsilon_{B}$')
logepse = Uniform(-5, 0, 'logepse', latex_label=r'$\log_{10}~\\epsilon_{e}$')
logepsb = Uniform(-5, 0, 'logepsb', latex_label=r'$\log_{10}~\\epsilon_{B}$')
ksin = Uniform(0., 1., 'ksin', latex_label=r'$\\xi_{N}$')
g0 = Uniform(1,100, 'g0', latex_label=r'$\Gamma_{0}$')
g0 = Uniform(1,100, 'g0', latex_label=r'$\\Gamma_{0}$')
#max_energy = Constraint(minimum=1e50,maximum=6e51)
4 changes: 2 additions & 2 deletions redback/priors/collapsing_magnetar.prior
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@@ -1,6 +1,6 @@
a_1 = LogUniform(1e-20, 1e20, 'a_1', latex_label = r'$A_{1}$')
alpha_1 = Uniform(-10, -0.5, 'alpha_1', latex_label = r'$\\alpha_{1}$')
l0 = LogUniform(1e-20, 1e5, 'l0', latex_label = r'$L_{0}$')
tau = LogUniform(1e2, 1e6, 'tau', latex_label = r'$\\tau$')
tau = LogUniform(1e2, 1e6, 'tau', latex_label = r'$\\tau~({\mathrm{s}})$')
nn = Uniform(1.1, 7, 'nn', latex_label= r'$n$')
tcol = LogUniform(10, 1e8, 'tcol', latex_label= r'$t_\mathrm{col}$')
tcol = LogUniform(10, 1e8, 'tcol', latex_label= r'$t_{\mathrm{col}}~({\mathrm{s}})$')
8 changes: 4 additions & 4 deletions redback/priors/collapsing_radiative_losses.prior
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Expand Up @@ -3,7 +3,7 @@ alpha_1 = Uniform(-10, -0.5, 'alpha_1', latex_label = r'$\\alpha_{1}$')
l0 = LogUniform(1e-20, 1e5, 'l0', latex_label = r'$L_{0}$')
tau = LogUniform(1e2, 1e6, 'tau', latex_label = r'$\\tau$')
nn = Uniform(1.1, 7, 'nn', latex_label= r'$n$')
tcol = LogUniform(10, 1e8, 'tcol', latex_label= r'$t_\mathrm{col}$')
kappa = LogUniform(1e-2, 10, 'kappa', latex_label= r'$\kappa$')
t0_s = Uniform(1, 1000, 't0_s', latex_label= r'$T_{0}$')
log_e0 = Uniform(-10, 2, 'log_e0', latex_label = r'$\log_{10} E_{0}$')
tcol = LogUniform(10, 1e8, 'tcol', latex_label= r'$t_{\mathrm{col}}~({\mathrm{s}})$')
kappa = LogUniform(1e-2, 10, 'kappa', latex_label= r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
t0_s = Uniform(1, 1000, 't0_s', latex_label= r'$T_{0}~({\mathrm{s}})$')
log_e0 = Uniform(-10, 2, 'log_e0', latex_label = r'$\log_{10}~E_{0} / {\mathrm{erg}}$')
14 changes: 7 additions & 7 deletions redback/priors/cone_afterglow.prior
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@@ -1,12 +1,12 @@
redshift = Uniform(0.01, 3, 'redshift', latex_label=r'$z$')
thv = Sine(name='thv', maximum=np.pi/2, latex_label=r'$\\theta_{\mathrm{observer}}$')
loge0 = Uniform(44, 54, 'loge0', latex_label=r'$\log_{10} E_{0}$')
thc = Uniform(0.01, 0.1, 'thc', latex_label=r'$\\theta_{\mathrm{core}}$')
thv = Sine(name='thv', maximum=np.pi/2, latex_label=r'$\\theta_{\mathrm{observer}}~({\mathrm{rad}})$')
loge0 = Uniform(44, 54, 'loge0', latex_label=r'$\log_{10}~E_{0}/{\mathrm{erg}}$')
thc = Uniform(0.01, 0.1, 'thc', latex_label=r'$\\theta_{\mathrm{core}}~({\mathrm{rad}})$')
thw = Uniform(1, 8, 'thw', latex_label=r'$\\theta_{\mathrm{truncation}}$')
beta = Uniform(0.5, 10, 'beta', latex_label=r'$\\beta$')
logn0 = Uniform(-5, 2, 'logn0', latex_label=r'$\log_{10} n_{\mathrm{ism}}$')
logn0 = Uniform(-5, 2, 'logn0', latex_label=r'$\log_{10}~n_{\mathrm{ism}}/{\mathrm{cm}}^{-3}$')
p = Uniform(2, 3, 'p', latex_label=r'$p$')
logepse = Uniform(-5, 0, 'logepse', latex_label=r'$\log_{10} \epsilon_{e}$')
logepsb = Uniform(-5, 0, 'logepsb', latex_label=r'$\log_{10} \epsilon_{B}$')
logepse = Uniform(-5, 0, 'logepse', latex_label=r'$\log_{10}~\\epsilon_{e}$')
logepsb = Uniform(-5, 0, 'logepsb', latex_label=r'$\log_{10}~\\epsilon_{B}$')
ksin = Uniform(0., 1., 'ksin', latex_label=r'$\\xi_{N}$')
g0 = Uniform(100,2000, 'g0', latex_label=r'$\Gamma_{0}$')
g0 = Uniform(100,2000, 'g0', latex_label=r'$\\Gamma_{0}$')
16 changes: 8 additions & 8 deletions redback/priors/csm_interaction.prior
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@@ -1,10 +1,10 @@
redshift = Uniform(1e-3,3,name='redshift', latex_label = r'$z$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}} [M_{\odot}]$')
csm_mass = LogUniform(1e-4, 100, 'csm_mass', latex_label = r'$M_{\mathrm{csm}} [M_{\odot}]$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}} [km/s]$')
eta = Uniform(0, 1, 'eta', latex_label = r'$\\eta$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej} }~(M_\odot)$')
csm_mass = LogUniform(1e-4, 100, 'csm_mass', latex_label = r'$M_{\mathrm{csm}}~(M_\odot)$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}}~(\mathrm{km}/\mathrm{s})$')
eta = Uniform(0, 1, '\\eta', latex_label = r'$\\eta$')
rho = Uniform(8, 12, 'rho', latex_label = r'$\\rho$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\kappa$')
r0 = Uniform(4, 8, 'r0', latex_label=r'$r_0$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\kappa_{\gamma}$')
temperature_floor = LogUniform(1e3,1e5,name = 'temperature_floor', latex_label = r'$T_{\mathrm{floor}}$ [k]')
r0 = Uniform(4, 8, 'r0', latex_label=r'$r_0~({\mathrm{AU}})$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\\kappa_{\\gamma}~(\mathrm{cm}^{2}/\mathrm{g})$')
temperature_floor = LogUniform(1e3,1e5,name = 'temperature_floor', latex_label = r'$T_{\mathrm{floor}}~(\mathrm{K})$')
16 changes: 8 additions & 8 deletions redback/priors/csm_nickel.prior
Original file line number Diff line number Diff line change
@@ -1,11 +1,11 @@
redshift = Uniform(1e-3,3,name='redshift', latex_label = r'$z$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}} [M_{\odot}]$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej} }~(M_\odot)$')
f_nickel = LogUniform(1e-3,1,name='f_nickel', latex_label = r'$f_{\mathrm{Ni}}$')
csm_mass = LogUniform(1e-4, 100, 'csm_mass', latex_label = r'$M_{\mathrm{csm}} [M_{\odot}]$')
ek = LogUniform(1e48, 1e52, 'ek', latex_label = r'$E_{\mathrm{k}} [erg]$')
eta = Uniform(0, 1, 'eta', latex_label = r'$\\eta$')
csm_mass = LogUniform(1e-4, 100, 'csm_mass', latex_label = r'$M_{\mathrm{csm}}~(M_\odot)$')
ek = LogUniform(1e48, 1e52, 'ek', latex_label = r'$E_{\mathrm{kin}}~(\mathrm{ erg})$')
eta = Uniform(0, 1, '\\eta', latex_label = r'$\\eta$')
rho = Uniform(8, 12, 'rho', latex_label = r'$\\rho$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\kappa$')
r0 = Uniform(4, 8, 'r0', latex_label=r'$r_0$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\kappa_{\gamma}$')
temperature_floor = LogUniform(1e3,1e5,name = 'temperature_floor', latex_label = r'$T_{\mathrm{floor}}$ [k]')
r0 = Uniform(4, 8, 'r0', latex_label=r'$r_0~({\mathrm{AU}})$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\\kappa_{\\gamma}~(\mathrm{cm}^{2}/\mathrm{g})$')
temperature_floor = LogUniform(1e3,1e5,name = 'temperature_floor', latex_label = r'$T_{\mathrm{floor}}~(\mathrm{K})$')
12 changes: 6 additions & 6 deletions redback/priors/evolving_magnetar.prior
Original file line number Diff line number Diff line change
@@ -1,8 +1,8 @@
a_1 = LogUniform(1e-20, 1e20, 'a_1', latex_label = r'$a_{1}$')
alpha_1 = Uniform(-10, -0.5, 'alpha_1', latex_label = r'$\\alpha_{1}$')
p0 = Uniform(0.7e-3, 1, 'p0', latex_label = r'$P_{0} [s]$')
mu0 = Uniform(1e-3, 10, 'mu0', latex_label = r'$\mu_{0} [10^{33} G cm^{3}]$')
muinf = Uniform(1e-3, 10, 'muinf', latex_label = r'$\mu_{\inf} [10^{33} G cm^3]$')
sinalpha0 = Uniform(1e-3, 0.99, 'sinalpha0', latex_label = r'$\sin\\alpha_{0}$')
tm = Uniform(1e-3, 100, 'tm', latex_label = r'$t_{m} [days]$')
II = LogUniform(1e45, 1e46, 'II', latex_label = r'$I$')
p0 = Uniform(0.7e-3, 1, 'p0', latex_label = r'$P_{0}~(\mathrm{s})$')
mu0 = Uniform(1e-3, 10, 'mu0', latex_label = r'$\mu_{0}~(10^{33}~\mathrm{G}_{ }\,\mathrm{cm}^{3})$')
muinf = Uniform(1e-3, 10, 'muinf', latex_label = r'$\mu_{\inf}~(10^{33}~\mathrm{G}_{ }\,\mathrm{cm}^{3})$')
sinalpha0 = Uniform(1e-3, 0.99, 'sinalpha0', latex_label = r'$\sin~\\alpha_{0}$')
tm = Uniform(1e-3, 100, 'tm', latex_label = r'$t_{m}~(\mathrm{day})$')
II = LogUniform(1e45, 1e46, 'II', latex_label = r'$I~({\mathrm{g_{}cm}})^2$')
12 changes: 6 additions & 6 deletions redback/priors/evolving_magnetar_only.prior
Original file line number Diff line number Diff line change
@@ -1,6 +1,6 @@
p0 = Uniform(0.7e-3, 1, 'p0', latex_label = r'$P_{0} [s]$')
mu0 = Uniform(1e-3, 10, 'mu0', latex_label = r'$\mu_{0} [10^{33} G cm^{3}]$')
muinf = Uniform(1e-3, 10, 'muinf', latex_label = r'$\mu_{\inf} [10^{33} G cm^3]$')
sinalpha0 = Uniform(1e-3, 0.99, 'sinalpha0', latex_label = r'$\sin\\alpha_{0}$')
tm = Uniform(1e-3, 100, 'tm', latex_label = r'$t_{m} [days]$')
II = LogUniform(1e45, 1e46, 'II', latex_label = r'$I$')
p0 = Uniform(0.7e-3, 1, 'p0', latex_label = r'$P_{0}~(\mathrm{s})$')
mu0 = Uniform(1e-3, 10, 'mu0', latex_label = r'$\mu_{0}~(10^{33}~\mathrm{G}_{ }\,\mathrm{cm}^{3})$')
muinf = Uniform(1e-3, 10, 'muinf', latex_label = r'$\mu_{\inf}~(10^{33}~\mathrm{G}_{ }\,\mathrm{cm}^{3})$')
sinalpha0 = Uniform(1e-3, 0.99, 'sinalpha0', latex_label = r'$\sin~\\alpha_{0}$')
tm = Uniform(1e-3, 100, 'tm', latex_label = r'$t_{m}~(\mathrm{day})$')
II = LogUniform(1e45, 1e46, 'II', latex_label = r'$I~({\mathrm{g_{}\,cm}})^2$')
12 changes: 6 additions & 6 deletions redback/priors/exponential_powerlaw_bolometric.prior
Original file line number Diff line number Diff line change
@@ -1,8 +1,8 @@
lbol_0 = LogUniform(1e36,1e48,name='lbol_0', latex_label = r'$L_{\mathrm{bol}~0}$')
lbol_0 = LogUniform(1e36,1e48,name='lbol_0', latex_label = r'$L_{\mathrm{bol}~0}~({\mathrm{erg/s}})$')
alpha_1 = Uniform(0,10,name='alpha_1',latex_label='$\\alpha_{1}$')
alpha_2 = Uniform(0,10,name='alpha_2',latex_label='$\\alpha_{2}$')
tpeak_d = LogUniform(0.001,200,name='tpeak', latex_label = r'$t_{\mathrm{peak}}$~[days]')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej}} [M_{\odot}]$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}} [km/s]$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\kappa$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\kappa_{\gamma}$')
tpeak_d = LogUniform(0.001,200,name='tpeak', latex_label = r'$t_{\mathrm{peak}}~({\mathrm{day}})$')
mej = LogUniform(1e-4, 100, 'mej', latex_label = r'$M_{\mathrm{ej} }~(M_\odot)$')
vej = LogUniform(1e3, 1e5, 'vej', latex_label = r'$v_{\mathrm{ej}}~(\mathrm{km}/\mathrm{s})$')
kappa = Uniform(0.05, 2, 'kappa', latex_label = r'$\\kappa~(\mathrm{cm}^{2}/\mathrm{g})$')
kappa_gamma = LogUniform(1e-4, 1e4, 'kappa_gamma', latex_label = r'$\\kappa_{\\gamma}~(\mathrm{cm}^{2}/\mathrm{g})$')
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