We supported the TCS team during the thermal actuators' adjustments.
After the common RH step and the differential DAS step, we noticed that the ITF was jumping between two metastable states (Fig.1). The ~3 minutes period of these jumps made us think of a correlation with the diagonalizaton routine. We waited for the ITF to jump in the "good" state, the one with the darker fringe and the higher sidebands' power, and disabled the servo to verify the hipothesis. The jumps stopped, giving comfirmation that diagonalization was indeed driving them, but it is unclear what exactly the servo was chasing when it made these changes.
After the common step of RH the interferometer's tuning gradually improved (Fig.2), although the superposition of the thermal transients of the first RH step, the DAS step and of this last RH step makes it complicated to pinpoint the exact cause of this improvement.
During this transient the ITF unlocked due to a WI glitch (Fig.3) and we reduced the power manually to allow the INJ_MAIN node to recover the IMC. This was harder than yesterday: between the movement of the half-lambda plate and the alignment of the bench, the reflected power of the IMC is close to the critical value (0.68 W - 0.79 W, Fig.4) and we had to increase the transmitted power a little to clear this threshold. The INJ servo then adjusted the rotator setpoint without issues.
After the next lock we increased the power again to keep observing the thermal transient, but the lock was killed 15 minutes after the acquisition by another WI glitch (Fig.5)
We have began the development of the power increase automation in carm_null_1f, for the moment offline, to be deployed later. For the moment, ITF_LOCK.py is unmodified and executes as usual.
We leave the ITF with the arms locked.