We recovered the DC_READOUT state, after a few hiccups. We realized that the unlocks when attempting the hand-off to B1_DC were due to a "slow" oscillation on DARM that, when compounded with the high 491 Hz line, would trip the threshold of the fast shutter.
To cope with this, we restored the change of DARM_GAIN in the LOCKING_OMC_DARM_B1_PD3 state (line 5199) and prepared a gian in the ini file that was a bit higher than the one set up by the servo before this step. This allowed to acquire the DC_READOUT state, but the DARM servo further increased the gain substantially. We set a gain close to this final number in the ini file and tested the lock acquisition, successfully.
Before proceeding with the B1s hand-off, we allowed Gouaty to re-enable SDB1 drift control, which increased DARM OG substantially (Fig.1). DARM servo adjusted the gain of the loop to 0.074 after this change, therefore we corrected the corresponding parameter in the .ini file to a value closer to this (0.064), to leave some margin for further evolution during this state.
After that Gouaty opened the shutters for B1s_QDs and we measured the transfer function at low frequency between B1p and B1s and tested the hand-off with these commands:
- ASC.BS_TY_INPUT.AcMatrixChSet(5.0, 0.0, "B1p_QD1_50MHz_H_I", -0.065, "B1s_QD1_50MHz_H_I")
- ASC.BS_TX_INPUT.AcMatrixChSet(5.0, 0.0, "B1p_QD1_50MHz_V_I", 0.31, "B1s_QD1_50MHz_V_I")
The hand-off worked without issue, although the BS alignment is still on drift control so this test is not indicative of the final performance of the loop wih this new error signal.
The lock was disrupted by an earthquake, after the shock passed we attempted another lock acquisition, succesfully, but the ITF unlocked again while attempting to engage LN2.
The recovery of this state is postponed to tomorrow.
We leave the ITF with the arms locked.