Today, we proceeded with the alignment of the CO₂ actuators with the NI RH, based on the measurements performed yesterday.
At the beginning, we encountered some problems with the picomotor control interface. After discussing the issue with Giulio and Franco, we understood that the problem was related to the incompatibility of the old interface with the new operating systems. To bypass the problem, we used CTRL1 to control the picomotors. However, the picomotors can also be controlled directly from the VPM, which is the solution we will use next time.
The ITF was set in NI SB, with the SR aligned and the B5 drift control disengaged.
8:47 UTC: HWS data acquisition started (20260902T1047)
8:50 UTC: NI CH ON (wavefront 6)
8.54 UTC: NI CH OFF (Wavefront 11)
An example of the measured wavefront is shown in Fig. 2.
STEP 1 – TY adjustment
We moved the CO₂ actuators by 1 cm (5556 steps) backward in TY.
9:04 UTC: NI CH ON (wavefront 28)
9:12 UTC: NI CH OFF (wavefront 45)
STEP 2 – TX adjustment
We moved the CO₂ actuators by 1.4 cm (7906 steps) backward in TX.
10:00 UTC: NI CH ON (wavefront 132)
10:07 UTC: NI CH OFF (wavefront 145)
STEP 3 – TX fine adjustment
We moved the CO₂ actuators by an additional 0.5 cm (2800 steps) backward in TX.
10:43 UTC: NI CH ON (wavefront 211)
10:54 UTC: NI CH OFF (wavefront 229)
STEP 4 – TY fine adjustment
We moved the CO₂ actuators by 0.5 cm (1000 steps) forward in TY to fine-tune the horizontal position, since the two directions are slightly coupled when moving in TX.
11:14 UTC: NI CH ON (wavefront 267)
11:25 UTC: NI CH OFF (wavefront 288)
Through these successive adjustments, we progressively superimposed the CH center on the RH center. Figure 3 shows the RH, together with the CH in its initial and final positions.
The measurements were completed at 11:25 UTC.
The CO₂ actuators are now centered on the NI mirror within approximately 0.5 cm.
After that, we switched off the HWS-DET SLED to proceed with the HWS-INJ activities.