Table 5.
Spectral correlation ratio from multi-frequency MCMC fit for the multipole range 50–160.
LR24 | LR33 | LR42 | LR52 | LR62 | LR71 | |
---|---|---|---|---|---|---|
HFI data.............................. | 0.935 ± 0.054 | 0.932 ± 0.039 | 0.970 ± 0.021 | 0.983 ± 0.013 | 0.984 ± 0.008 | 0.989 ± 0.005 |
Mean E2E simulations (a)............... | 0.976 ± 0.043 | 0.988 ± 0.026 | 0.993 ± 0.016 | 0.993 ± 0.011 | 0.995 ± 0.008 | 0.997 ± 0.005 |
E2E lower limits (b).................. | 0.865 | 0.924 | 0.963 | 0.973 | 0.983 | 0.991 |
FFP10 dust model (c).................. | 0.987 | 0.992 | 0.994 | 0.996 | 0.997 | 0.998 |
Two-frequency analysis of data (d)...... | 0.822 | 0.886 | 0.932 | 0.954 | 0.976 | 0.989 |
Two-frequency E2E lower limits (e)...... | 0.756 | 0.854 | 0.913 | 0.949 | 0.965 | 0.980 |
Notes.
E2E lower limits on , corresponding to the 2.5th percentile of the MPFIT results on the 300 E2E realizations (Fig. 18).
values measured for the noise-free FFP10 dust polarization maps (Appendix A.1).
For comparison, results from the two-frequency analysis of HFI data in Appendix B (see Table C.5).
For comparison, E2E lower limits from the two-frequency analysis (see Table B.1).
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