Grid of models computed with
Information on the CEFIRO computations are distributed into two tables, one for equilibrium models (CESTAM) and another for oscillation frequencies (FILOU).
Computation will be organised by bundles, i.e. sets of tracks with the same physical properties except rotation. Bundles' IDs are unique so that identification is unambiguous.
<fc #800080> Grid Parameters </fc> | notes | ||
---|---|---|---|
Mass range | 1.5-2.5 | Msun | - |
Mass step | 0.05 | Msun | - |
[Fe/H] | 0.2, 0, -0.2, -0.4 | dex | - |
α | 1.8, 0.5 | - | - |
overshoot | 0 | - | - |
Rotation P | 0,3,4,5,6,7 | days | 3 and 4 for fe000a180o000 |
Rotation T | 5 | days | - |
Stop criterion | T_STOP < = 4e7 | K | - |
No. tracks | Mass(20)x [Fe/H](4) x α(2) x ov(1) x rot(4) | 640 | - |
<fc #800080> Naming convention </fc> | |
---|---|
Name example | Parameters |
m185fe010a180o020t5p6 | 1.85 Msun, [Fe/H = 0.10, α=1.80, ov=0.20, t=5, p=6 |
m185fe-010a180o020t5p6 | 1.85 Msun, [Fe/H = -0.10, α=1.80, ov=0.20, t=5, p=6 |
m185fe-100a180o020t5p6 | 1.85 Msun, [Fe/H = -1.00, α=1.80, ov=0.20, t=5, p=6 |
Test for CESTAM computations when using XSTOP = 1e-60. We will test with: m180fe0a164o0rotjpzt5p7. We have used .don from CEFIRO and modified α , ov and XSTEP.
Each dataset has 20 tracks (in mass, δM=0.05 Msun) for different physics
<fc #800080> Production </fc> | |||||||
---|---|---|---|---|---|---|---|
Dataset | Physics | Status | Date | Failed tracks | Missing tracks | FILOU | |
1 | fe000a180o000t5p0 | OK | 14-06 | <fc #008000>OK</fc> | |||
2 | fe000a180o000t5p5 | OK | 12-06 | 1.50 | 2.30, | <fc #008000>OK</fc> | |
3 | fe020a180o000t5p5 | OK | 07-06 | <fc #008000>OK</fc> | |||
4 | fe-020a180o000t5p5 | OK | 12-06 | 2.50 | <fc #008000>OK</fc> | ||
5 | fe000a180o000t5p6 | OK | 11-06 | 1.50,1.55,1.75,1.95 | 2.30 | <fc #008000>OK</fc> | |
6 | fe000a180o000t5p7 | OK | 12-06 | 1.50 | 2.30 | <fc #008000>OK</fc> | |
7 | fe000a050o000t5p0 | OK | 18-06 | <fc #008000>OK</fc> | |||
8 | fe000a050o000t5p5 | OK | 06-06 | <fc #008000>OK</fc> | |||
9 | fe-020a180o000t5p0 | OK | 18-06 | 2.15, 2.20, 2.25,2.40,2.50 | <fc #008000>OK</fc> | ||
10 | fe-020a180o000t5p6 | OK | 17-06 | 2.15, 2.20, 2.50 | <fc #008000>OK</fc> | ||
11 | fe-020a180o000t5p7 | OK | 17-06 | 2.15, 2.20, 2.50 | <fc #008000>OK</fc> | ||
12 | fe-040a180o000t5p0 | OK | 18-06 | 2.20 | <fc #008000>OK</fc> | ||
13 | fe-040a180o000t5p5 | OK | 12-06 | 155 | <fc #008000>OK</fc> | ||
14 | fe-040a180o000t5p6 | OK | 12-06 | 155, 160 | <fc #008000>OK</fc> | ||
15 | fe-040a180o000t5p7 | OK | 12-06 | 1.50, 1.55, 1.60 | <fc #008000>OK</fc> | ||
16 | fe020a180o000t5p0 | OK | 17-06 | 230, 2.35, 245 | <fc #008000>OK</fc> | ||
17 | fe020a180o000t5p6 | OK | 11-06 | <fc #008000>OK</fc> | |||
18 | fe020a180o000t5p7 | OK | 11_06 | <fc #008000>OK</fc> | |||
19 | fe000a050o000t5p6 | OK | 08-06 | <fc #008000>OK</fc> | |||
20 | fe000a050o000t5p7 | OK | 10-06 | <fc #008000>OK</fc> | |||
21 | fe-020a050o000t5p0 | OK | 17-06 | <fc #008000>OK</fc> | |||
22 | fe-020a050o000t5p5 | OK | 17-06 | 2.35 | <fc #008000>OK</fc> | ||
23 | fe-020a050o000t5p6 | OK | 17-06 | <fc #008000>OK</fc> | |||
24 | fe-020a050o000t5p7 | OK | 17-06 | 1.50 | <fc #008000>OK</fc> | ||
25 | fe-040a050o000t5p0 | OK | 18-06 | <fc #008000>OK</fc> | |||
26 | fe-040a050o000t5p5 | OK | 13-06 | <fc #008000>OK</fc> | |||
27 | fe-040a050o000t5p6 | OK | 13-06 | <fc #008000>OK</fc> | |||
28 | fe-040a050o000t5p7 | OK | 13-06 | <fc #008000>OK</fc> | |||
29 | fe020a050o000t5p0 | OK | 18-06 | <fc #008000>OK</fc> | |||
30 | fe020a050o000t5p5 | OK | 11-06 | <fc #008000>OK</fc> | |||
31 | fe020a050o000t5p6 | OK | 11-06 | <fc #008000>OK</fc> | |||
32 | fe020a050o000t5p7 | OK | 11-06 | <fc #008000>OK</fc> | |||
33 | fe000a180o000t5p3 | OK | 01-11 | <fc #008000>OK</fc> | |||
34 | fe000a180o000t5p4 | OK | 01-11 | <fc #008000>OK</fc> |