I ran an OSCAR simulation considering an input power of 12 W and an absorption of 0.3 ppm, as specified by LMA for the new mirrors. With these values, the absorbed power is about 20 mW.
In the absence of thermal effects (i.e. in the ideal case), the gains are about 74 and 51 for the 6 MHz and 56 MHz sidebands, respectively, assuming 1500 ppm losses in the recycling cavities.
No cold maps of the mirrors were included, except for the POP cold maps. I assumed PR and SR RoCs of 1430 m, RoCs of 1427.8 m and 1428.8 m for the new input mirrors, and RoCs of 1670 m for the end mirrors, corresponding to the expected value with the RHs on.
Including the OPL variation induced by 20 mW of absorbed power, shown in the attached figure, the 6 MHz and 56 MHz sideband gains decrease to about 29 and 22, respectively. The gains are calculated considering all modes, not only the TEM00.
To obtain a 6 MHz sideband gain of about 10 in the simulation, the assumed absorption needs to be increased by approximately a factor of 3, from 0.3 ppm to 0.9 ppm. Equivalently, keeping the absorption at 0.3 ppm, the same thermal load would correspond to an input power of about 36 W.