I took another series of NLG measurements as a function of the (normalized) transmitted power from trans=0.3 to trans=1.78. Quickly before I leave I fixed offsets to improve the DB monitor diagnostic. I'll follow up with a table of the NLG measurements and the simulations for how the diagnostic monitor works but I don't have the time this morning. Now that the compression in the CLFPD RF has been fixed. The H1:SQZ-EST_RF6_NLG monitor should be quite reliable. I've checked that it is constant to 1% between 20uW and 120uW of CLF on the PD now that the offsets have been zeroed.
offsets zeroed at 0 power in:
CLF_REFL_LF, CLF_REFL_RF6 I and Q, and CLF_REFL_DC. and committed to SDF.
The DB's monitor in SQZ-EST_RF6_NLG has been calibrated at OPO Trans=1, NLG=3.23, corresponding to 8.28db (anti)squeezing generated. This is also Normalized NLG "x"-0.4435. There is a filter gain called NNLG2DBs that switches between the monitor reporting in DBs or NNLG "x". The monitor is more linear in the units of DB's, so that is what it is currently reporting (to be shown with the simulation).