Commit 71f4ed01 authored by Matthias Steffen's avatar Matthias Steffen
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Update README.md

parent cccbdd6e
......@@ -5,7 +5,7 @@ developed in the paper
by A. Mott et al. (2020, A&A ???, ???)
The three functions are defined in ff_all.py
They are called in the example script test_ff123.py that produces the output file 'test_ff123_py.out'
They are called in the example script test_ff123.py that produces the output file 'test_ff123_py.out' (see description below)
With Teff = effective temperature, log g = surface gravity, Z = metallicity [Fe/H], qiso = lithium isotopic ratio 6Li/7Li,
the call to evaluate fitting function **FFI ** is:
......@@ -44,4 +44,17 @@ for a given (logarithmic) equivalent width EW.
The IDL script test_ff123.pro, provided for the convenience of IDL users, produces the output file
test_ff123_idl.out with identical content as test_ff123_py.out.
The output file written by test_ff123.py (and test_ff123.pro) show the following results for the grid
of stellar parameters treated in the related paper:
Col.(1): A*(Li), the 1D LTE Li abundance used as input to the fitting function 'FFI'
Col.(2): del_1, the 1D NLTE correction for given 1D LTE Li abundance A*(Li) provided by the fitting function 'FFI_1DNLTE'
Col.(3): A1(Li) = A*(Li) + del_1, the 1D NLTE Li abundance for given 1D LTE Li abundance A*(Li)
Col.(4): EW1, the 1D NLTE (log) equivalent width provided by the fitting function 'FFII_1DNLTE' for given 1D NLTE Li abundance A1(Li)
Col.(5): A1_inv, the 1D NLTE Li abundance provided by the fitting function 'FFIII_1DNLTE' for given 1D NLTE equivalent width EW1
Col.(6): del_3, the 3D NLTE correction for given 1D LTE Li abundance A*(Li) provided by the fitting function 'FFI_3DNLTE'
Col.(7): A3(Li) = A*(Li) + del_3, the 3D NLTE Li abundance for given 1D LTE Li abundance A*(Li)
Col.(8): EW3, the 3D NLTE (log) equivalent width provided by the fitting function 'FFII_3DNLTE' for given 3D NLTE Li abundance A3(Li)
Col.(9): A3_inv, the 3D NLTE Li abundance provided by the fitting function 'FFIII_3DNLTE' for given 3D NLTE equivalent width EW3
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