After the ~10% increase of the ChRoCC voltage of Wednesday morning, the rest of the day was devoted to the relock and the characterization (ISC-wise) of the interferometer. The idea was to reproduce a configuration which is more similar to the one we were using during the run, i.e. with a lower sideband gain and possibly an improved stability of the interferometer. The 10% increase of the actuator's voltage did non correspond exactly to 10% in the working point, something less around 7.5% instead. To be confirmed if this is due to a slight non-linearity of the actuation or if the basal temperature needs to be subracted as a static offset (after which the 10% is present also in terms of working point).
From the lock acquisition point of view, we had to tune again several parameters in many steps. We could complete the recovery up to CARM_NULL_3F, with a half-baked recovery of the _1F one. Even in steps considered recovered, the lock could not last much. The sheer variation of the numbers differs from DoF to DoF, but we could see some patterns:
- demodulation phases and gains changed more in the DRMI and CARM_Null configurations than in the intermediate steps; differently from the standard, the changes in the intermediate steps of the CARM offset reduction phase were relatively small from one to the next one, while to lock the DRMI and to go to CARM offset zero the changes were bigger;
- alignment loops were quite impacted, while usually the angular sensors are less prone to changes than the longitudinal ones (MICH/SRCL being the worst among those); DIFFp in particular had to be changed a lot, both in phases and gains, the latter needing to be increased substantially;
- again on the alignment loops: demodulation phases for TX and TY were usually different from one another, and again this happened in particular for DIFFp. When we are in a stable configuration, the phases for the two DoFs are the same.
A different issue affected the SRC: much more than normal, while locking the DRMI SRCL would not lock properly, with the longitudinal correction rapidly diverging out of range (always in the negative direction) but the interferometer staying "locked" until going too much forward or killing the lock ourselves. This was seemingly unrelated to the SR initial alignment, which in principle never changed if not while pre-aligning the DRMI, as we didn't reach any step where a ASC loop could be engaged. The consequence, though, was for the SRM to occasionally resulting quite misaligned. We suspect some kind of kick and/or lenght-to-angle coupling (see Figure), but this needs some verification first. In at least one occasion, we could see a clear difference also between the global alignment in the later stages of the acquisition and the initial alignment of long cavities+beam.
Given the global outcome, we decided at the end of the shift to move again the ChRoCC, from +10% with respect to Tuesday to -10% (V_DAC = 4.28 -> 3.49 V).