Reports of 63503
AdV-PAY (NI and WI Payloads)
majorana, benedetti, Gherardini, Berni - 19:56 Monday 20 July 2026 (69386) Print this report
WI payload preparation
In the morning we verified that we can proceed with the integration of WI payload. Indeed, during the disassembly a part of the rotary JB had been lost.
That the part had to be located on the HYMO, but probably during the cleaning up was lost. We found a spare.

Also, we had to check the status of a coil wire (up-left looking from the rear side). The vacuum cabling checks done last Wednesday showed up the problem, as the insulating shield appeared critically damaged. Indeed that part had not been dismounted in its components, but removed from the cage as a whole. So that we can presume the damaged wire was already there . Anyhow, if the wire touches other conductors (e.g. the actuation cage) a potential issue may arise.
We took care of properly fix the wire orientation in order not to touch (5 mm away) and xchecked electrically after words thanks to teh vacuum cabling crew.
Since the wire is anchored to the same body (the cage) on the two sides, it is stiff enough, and there aren't moving parts around, there is no risk associated to this situation, and we go ahead.

Tomorrow:
Set the stops close and unload the fibres to 60% of the full load, pack, bring it under the flange. Integrate connecting cage and suspension wire.
Hopefully before lunch.


AdV-PAY (NI and WI Payloads)
Benedetti, Majorana, Pinto, Ruggi - 19:40 Monday 20 July 2026 (69384) Print this report
NI payload balancing
Hello, today we did some work concerning the NI paylaod.

Morning:
1) installation of the guards around the payload, they allow a safe an agile moving around it
2) recover and modification of the last position left on last Wednesday afternoon. Needed as we were quite far from the work finishing up. We noticed som peculiarity of this payload, and a significant off-centre balancing was needed to recover the horizontal position of the marionette. This complicated a bit the works.

Afternoon:
3) completion of the work. We detected a quite anomalous position of the Oplevs on the marionette reflectors. It was needed to displace in vertical (DW) and in transversal (E) directions the overall suspension. The phenomenon was already noticed last week at the first glance but poorly identified. Once done, we balanced the marionette verifying the overall weight of the cage, the angular ranges of the marionettte and mirror WRT the mechanical stops (24) and the centering of the actuators (eye). The loop was closed normally, but with large offsets. We do not readjust the OpLevs until the mirror position through it Oplev is verified (tomorrow).

We leave the vacuum chamber with all the offsets stored in the DSP control card and the voltage needed to keep the position of the suspension on the set point we tested it. Clean air flux was always ON.

Tomorrow at 10:
- Peeling off of the First Contact polymer.
- alignment checks

If everything goes smoothly, tomorrow afternoon VAC operations can start.
Images attached to this report
Environmental Monitoring (Environmental Monitoring)
Tringali, Fiori, Spinicelli - 19:26 Monday 20 July 2026 (69383) Print this report
Comment to Instrumented baffle modes measurement (69222)

In this entry, we report the results of the mechanical transfer function measurements performed on the NI and WI instrumented baffles.

As a reminder, the measurement setup consisted of a triaxial accelerometer installed on the baffle in two different positions, referred to as TOP and BOTTOM, using a custom adapter.
A monoaxial reference accelerometer was sequentially installed in three locations: R1, horizontal position below the baffle; R2, vertical position close to the baffle; and R3, horizontal position on the vacuum vessel.

Due to the threaded mounting of the triaxial accelerometer, the final sensor orientation was slightly different between the TOP and BOTTOM installations and was therefore not perfectly aligned with the nominal vertical-horizontal reference frame. The only direction that can be directly compared between all measurements is the sensor axis aligned with the adapter, which is approximately perpendicular to the baffle surface:

  • NI instrumented baffle
    •  top acc position--> z-axis
    • bottom acc position--> y-axis
  • WI instrumented baffle
    • top acc position--> y-axis
    • bottom acc position-->z-axis 

Figures 1–12 show the comparison between the quiet and injection spectra for all the investigated configurations. The shaker excitation significantly increases the vibration level over the ambient noise background, clearly revealing the frequency bands where the mechanical resonances of the instrumented baffles are excited.
A transient is visible in the quiet acquisition of the WI BOTTOM configuration with the reference accelerometer installed below the baffle (R1), Figure 10. Despite the increased background level, the injected signal remains clearly distinguishable and does not affect the estimation of the transfer functions.

Based on these measurements, the mechanical transfer functions were estimated for all the investigated configurations. The complete datasets are provided in the attached ASCII files (*_transfer_function.txt).

Figures 13–24 show representative transfer function measurements for the sensor axis aligned with the adapter axis. The top panel compares the ASDs measured by the reference accelerometer and by the triaxial accelerometer along the selected axis. The second panel shows the coherence, while the third and fourth panels report the transfer function magnitude and phase, respectively. Red markers identify the transfer function and phase values corresponding to frequency bins with coherence > 0.4.

Candidate resonance frequencies were identified using selection criteria based on the transfer function magnitude, coherence, and phase evolution around the candidate peaks. The complete list of the identified peaks for each measurement configuration is provided in the attached ASCII files (*_candidate_modes.txt).

 

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AdV-DAQ (Calibration)
aubin, mours - 19:12 Monday 20 July 2026 (69385) Print this report
NCal Maintenance

Today, we performed the following actions on the NCals:

  • At NE:
    • At 14:46 UTC, we add the NCal_NW_5V channel which monitor the 5V for the North-West power supply.
    • We disconnect/reconnect a few time (until 15:15 UTC) the 5V cable from the back of the North-West power supply in order to remove the observed glitches on the position sensors and temperature probes. This seems to improve the situation.
  • At WE, (from 3:30 to 5 pm UTC):
    •  We checked the WNN, WEN, WSN microphones. WEN, WSN were restored by plugging the cables on the DAQbox (they were disconnected for some test a while ago). Since the "East" microphones were removed long ago, the WNF microphone has been connected to replace the WEN microphone. The gains of all microphone boards have been checked to be 40 db. The offsets of the DAQ boxes configuration have been adjusted to center the signals around zero (as well for NE microphones).  
    • The temperature probes of the WEN et WWN box have been fixed by changing the connectors (the small cables are mislabeled) on the DAQbox. The corresponding gains have been checked.
  • At the end, all rotors were restarted at their nominal rotation speed.
Detector Operation (Operations Report)
gherardini - 16:32 Monday 20 July 2026 (69382) Print this report
Operator Report - Daily shift
Below the list of the activities communicated in control room:

PAY: NI payload balancing, in progress.
CAL: north end Ncal sensor check, in progress.
Safety (General safety)
Majorana, Benedetti - 13:09 Monday 20 July 2026 (69381) Print this report
Access to NI tower
This morning and in the afternoon we enter in tower NI to continue the pay-tuning operations
Safety (Laser Safety)
mwas - 9:29 Saturday 18 July 2026 (69379) Print this report
1064nm power density at core optics vacuum chamber viewports

The Virgo interferometer when locked has a 100kW 1064nm beam circulating beam, which seems like a high power from which scattering can be dangerous to the eye. However that high power is only achieved thanks to the extremely low scattering of the main optics.

Viewports are located at a large viewing ange from the mirrors with angles greater than 10 degrees, the BRDF of the LIGO mirrors has been studied in detail https://arxiv.org/abs/2201.05640. With BRDF of 8e-4/theta^2 at large angles with theta in degrees, and total integrated scatter of less than 10e-6 for angles between 1 degree and 75 degree. The viewports are located at a distance of about 1.5 meters from the mirror. Hence based on the BRDF  the 1064nm laser power density at the viewports is 100e3 W * 8e-4/(10 deg)^2 / 1.5m^2 = 0.35 W/m^2, and decreasing further as in practice the closest viewports to the beam have a viewing angle of 19 degrees (photon calibrator), and most viewports are at even larger angle. 

This should be compared to the maximum permissible exposure of 50 W/m^2 for long term exposure to 1064nm light according to IEC60825. So the power density at the viewports is over 100 times below the maximum permissible exposure (MPE). 

Scattered light at large angle is due to the sum of scattering from many scattering points, the scattering may interfers coherently creating a speckle pattern where in some directions the different points add up coherently while in others the interfer destructively. The resulting random power distribution has the mean of 0.35 W/m^2 with fluctuation distributed exponentially, which means that for example the probability of having a power density 10 times higher than the mean at given point in space is exp(-10) = 4.5e-5. Thus taking into account a very improbable speckle the power density would remain more than a factor 10 below the MPE. Note however that scale of the speckle pattern should be small, for interference between two point sources located 5cm appart (size of the beam on the mirror) and viewed at 1.5m (distance to the viewport), the interference fringe spacing is 1064e-9*1.5m/5cm = 32um. Hence in practice the human eye will see the average power with microscopic variability of the power density.

The 1064nm main laser should be classified as a class 1M laser at the level of the viewports of the core optics vacuum chambers. This applies to the input and end mirrors, as well as BS and SR where the power density on the optics is orders of magnitude lower.

This property is independent of the quality of the optics, if for some reason an optic has an increased scattering, the recycling gain of the interferometer will decrease keeping the scattering power density constant. Scattering is in any case the dominant source of loss in the interferometer, hence the power conversation dictates that from 17W of input laser power, 4W is lost by scattering at each mirror of the two arm cavities. The large angle scattering from point defects can be well approximated by a uniform angular distribution, hence at the viewport the power density can be estimated as 4W /2/pi / 1.5m^2 = 0.28 W/m^2, finding again a similar value to the computation based on the BRDF. Scattering cannot increase above that value as only 17W of laser power is available at the interferometer input.

Detector Operation (Operations Report)
zaza - 16:46 Friday 17 July 2026 (69378) Print this report
Operator Report - Daily shift

ITF in UPGRADING, DOWN

no activities reported to the control room

AdV-PAY (NI and WI Payloads)
marco ricci, paola puppo, flavio travasso, michele dicorato, antonfranco piluso - 23:15 Thursday 16 July 2026 (69377) Print this report
Status of WI payload assembling on 16/7 evening
The Ring heater and CP were completely assembled on the WI payload.
The payload is ready for integration once the slight damage to the mirror coil cable (from the electrical check) is verified.
Images attached to this report
On-call intervention (General)
Oncall-system - 19:13 Thursday 16 July 2026 (69376) Print this report
On-call intervention

The following report has been submitted to the On-call interface.

On-call events -> Electricity

Title: ENEL GE1 Network Alarm

Author(s): dandrea

Called at: 04:55, 16-07-2026, by: Alarm or monitoring system
Remote intervention: Started: ; Ended:
On-site intervention: Started: 05:20, 16-07-2026; Ended: 06:35, 16-07-2026
Status: Resolved
Operator when issue resolved: Zaza

Details:

I received a call from the alarm system on the power grid about a lack of ENEL grid on the GE1 that powers the central building and the control building.
I intervened on the site and found the rescue generator set in operation, as it did not have the ENEL reference voltage.
A fuse had blown on the control board which I promptly replaced and the system returned to normal operation.

* Note that any files attached to this report are available in the On-call interface.

Detector Operation (Operations Report)
lunghini - 18:20 Thursday 16 July 2026 (69367) Print this report
Operator Report - Daily shift

ITF found DOWN and in UPGRADING Mode.
All times are UTC.
Below the list of actiities comunicated to the Control Room.
07:08 - 07:35 PAY: NI electrical checks with payload integrated with the superattenuator, works on the platform (Gherardini, Pinto, #69369).
07:25 - 10:25 PAY: WI payload assembly in CEB Clean Room (Dicorato, Puppo, Ricci, Travasso).
13:37 - 13:57 Inspection of CEB IR Cameras (Boldrini, Spinicelli, #69375).

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AdV-PAY (NI and WI Payloads)
boldrini, spinicelli - 16:23 Thursday 16 July 2026 (69375) Print this report
Survey of the PAY camera viewports

We surveyed the NI and WI tower to take note of possible safety issues concerning the viewports used for the PAY cameras.

We restored the position of the NI_Cam and enveloped both the camera and the viewport with a black aluminum sheet. That viewport has been secured and no light from the YAG will be able to exit the tower through it.

For the WI_Cam, the situation is a lot different (pictures 1,2). The camera is fixed on a metal bar, propped against the tower and resting directly on the SLED box. The viewport itself is completely exposed, which will be a safety concern once the YAG circulates again in the WI tower.

We'll take steps to address these concerns as soon as possible.

Images attached to this report
AdV-PSL (Commissioning of SS)
mwas, masserot, ruggi - 15:45 Thursday 16 July 2026 (69373) Print this report
PSTAB 50Hz harmanics feed-forward preparation

A comb of line spaced by 50Hz is present in the PSTAB spectrum, and the projection of those lines in the sensitivity show that the 250Hz line, and maybe some other are dominating the contribution of 50Hz harmonics to the sensitivity. The real solution will be to have fully differential calbing from the PSTAB photodiodes, instead of single ended calbing inside the vacuum as is currently the case. In the mean time, a feed forward of the 50Hz and its harmonics could be tried to reduce those lines. 

https://git.ligo.org/virgo/commissioning/commissioning-tasks/-/work_items/8

Paola has kindly explained how the 50Hz feed-forward into DARM is implemented in the DSP and I have replicated the method in Acl. The environmental channel is bandpassed around 50Hz and then a variable delay+gain filter is applied to the environmental channel with two continuously updated parameters. The filter gain is a simple product by a parameter, and the dephasing is formed by implementing an (s-s0)/(s+s0) filter manually in Acl retaining in a separate channel the previous value of a channel.

To obtain error signals for those two parameters the PSTAB channel after after adding the  feed-forward correction  is band passed at 50Hz, and multiplied by the environmental channel band passed around 50Hz and filtered by the dephasing filter. After low passing the result this yields the error signal for the gain parameter of the feedforward. 

To obtain the delay parameter error signal, the environmental channel is first filtered by a pole at 1Hz, to dephase it by 90 degrees before multplying it with the PSTAB channel band passed at 50Hz and low-passing. In this way the other quadrature of the demodulation of the PSTAB by the environmental channel is obtained.

To test the Acl implementation Alain has setup a test process Acl17_INJ in the test instance of VPM: https://vpm.virgo.infn.it:40010/main.html?subsystem=Tests&process=Acl17_INJ

To access the data from it one needs to change the Cmdomain using the command "cmdomain CascinaTest" before starting dataDisplay, and then choosing the FbmMainTestUsers online server.

Figure 1 shows that after fixing many mistakes the 50Hz feed-back works in a test, reducing the 50Hz line in the target PSTAB channel by two orders of magnitude. FF_product_I/Q are the two error signals, while FF_gain and FF_z0 are the two variable parameters of the feed-forward filter. The adjustment of those filters is done using a simple pure integrator of the error signals, and the adjustment loop UGF is around 0.2Hz, I haven't tried to increase the UGF further.

One important aspect was to do the demodulation for calculating the FF_product_I/Q error signals after applying the dephasing signal to the environmental channel, so that the loop automatically tunes the demodulation phase. Initially the loop was not working at all, as the 50Hz line in the PSTAB channel was ~90 degree out of phase with the line in the environmental channel, which was swapping the two error signals.

This could be tested at some point on the actual PSTAB, starting from next week, to see if that idea works in practice. The code naming need to be first cleaned up, added into the ISYSnoise process to include it into the existing PSTAB_NOISE channel, and eventually replicated for all of the lines in the 50Hz harmanics comb.

Images attached to this report
AdV-PAY (NI and WI Payloads)
Gherardini, Zaza - 15:17 Thursday 16 July 2026 (69371) Print this report
WI payload electrical check
This afternoon we checked the electrical continuity and insulation towards the metallic frame for the following cables: S1 and S2 (marionette coils); U1 (Ring Heater); U2 (Ring Heater motors); U3 (mirror coils for sensing and PT100 on marionette coil); V1 (mirror coils); V2 and V3 (marionette motors); Z2 (temperature probes on mirror coils and on ring heater).

Everything is fine except a mirror coil cable (UL) that is slightly damaged and it could do short-cut to the ground; it will be checked more carefully on Monday morning.
AdV-INJ (Input Mode Cleaner cavity)
spinicelli, ruggi, lagabbe, gosselin - 15:10 Thursday 16 July 2026 (69370) Print this report
Improvement of the IMC working point

During the recovery of the Injection system in May, we had to search manually for a new alignment of the IMC cavity, in order to continue with the all the other checks.

However, with the chosen position we had quite large offset on both DC QPD (MC transmission) and RF QPD (Dihedron reflection) in addition to the one on the longitudinal lock. Moreover, we usually apply offset on the erorr signals after the sensing matrix (IB_{TX, TY, TZ}, MC_{TX, TY}), thus generally mixing the offset on DC and RF quadrants.

As first step to improve the working point, we tried to zeroing the RF signals (INJ_IMC_QD_{NF,FF}_I_{H,V}) by manually mixing all the AA offset ( IB_{tx,ty,tz}_set and MC_{tx,ty}_set). In addition, we were also brought back the beam on the MC close to the position of last March (looking at INJ_MCT_{h,v}_err). The results are shown in fig. 1: reducing the offset on the RF quadrants reduced the frequency to amplitude coupling (new IMC_SET offset is now -1.5) and clearly improved the alignment of the RFC. In addition, not completely unexpected, there was a change on the PSTAB photodiodes, that induced a small improvement on the PSTAB correction noise.

We then modified the AA loop on ACL in order to better take into account the offset on the DC quadrant ({NF,FF}_AC{h,v}_SET, MCT_{h,v}_SET) and recomputed the AA matrix accordingly. We closed the AA in full bandwith at the end of the work (fig.2).

 

Images attached to this report
AdV-PAY (NI and WI Payloads)
Gherardini, Pinto - 10:33 Thursday 16 July 2026 (69369) Print this report
Comment to NI payload integration with the suerattenuator (69360)
This morning, after the NI Payload intergration, we checked the electrical continuity and insulation towards the tower for the following cables: S1 and S2 (marionette coils); U1 (Ring Heater); U2 (Ring Heater motors); U3 (mirror coils for sensing and PT100 on marionette coil); V1 (mirror coils); V2 and V3 (marionette motors); Z2 (temperature probes on mirror coils and on ring heater).

The test was successful: no electrical discontinuities or short circuits towards the tower were found.
AdV-PAY (NI and WI Payloads)
P. Puppo, M. Ricci, Piluso, MichelPG, Travasso, majorana - 9:02 Thursday 16 July 2026 (69368) Print this report
Status of WI payload assembling on 15/7 evening
This is the status of WI assembly as left yesterday.
The rear part of the payload cage will be assembled today.
Images attached to this report
AdV-PAY (NI and WI Payloads)
majorana, Pinto, Ruggi - 21:38 Wednesday 15 July 2026 (69360) Print this report
NI payload integration with the suerattenuator
Some work related to the balancing of actuation cage, mirror and maironette has been performed in the afternoon until 19:30.
The work is not complete, meaning that some further effort should be still done before releasing the suspended payload to the VAC crew.
However we are quite close to finish.
The target was to close the OpLev Local Controls, and this step was not performed. Anyhow, the weight and the correct position was identified. Given the anomalous unbalance appeared on the suspended marionette+mirror system, and the needed mass redistribution needed to compensate it, the work was more demanding than expected.

Given my absence during Thu and Fri, the needed manual balancing steps will not be done and will wait for next Monday. We expect one day. If everything goes properly on Monday afternoon we can release to VAC.

The system was left free to oscillate under the standard clean-air flow.
Comments to this report:
Gherardini, Pinto - 10:33 Thursday 16 July 2026 (69369) Print this report
This morning, after the NI Payload intergration, we checked the electrical continuity and insulation towards the tower for the following cables: S1 and S2 (marionette coils); U1 (Ring Heater); U2 (Ring Heater motors); U3 (mirror coils for sensing and PT100 on marionette coil); V1 (mirror coils); V2 and V3 (marionette motors); Z2 (temperature probes on mirror coils and on ring heater).

The test was successful: no electrical discontinuities or short circuits towards the tower were found.
Safety (Laser Safety)
majorana - 19:37 Wednesday 15 July 2026 (69365) Print this report
Comment to NI vacuum chamber (69355)

in the afternoon I worked again in the NI. I left at 19.30 LT

Detector Operation (Operations Report)
gherardini - 16:33 Wednesday 15 July 2026 (69363) Print this report
Operator Report - Daily shift
Below the list of the activities communicated in control room:

INJ: mode matching measurement and reduction.
PAY: NI payload balancing, in progress.
PAY: WI payload assembly.
AdV-DAQ (Calibration)
vanhove - 15:57 Wednesday 15 July 2026 (69362) Print this report
NCal Temperature offset tuning and rotor restarted

Between 11:00 and 13:00 utc, I tuned the offset of NCal temperature probes to have all of them at 22.5°C+-0.1°C when all rotors are off.

Then around 13:50, I switched all rotors ON to their default lines and closed the loops. 

Details:

Strictly speaking we shoud tune the parameters inside  /virgoData/VirgoOnline/SNEB_Fb.cfg and SWEB_Fb.cfg which set the parameters of the volts to temperature function.

But in good approximation, it is OK to modify the offset of the ADC to Volts conversion in /virgoData/VirgoOnline/SWEB_dbox_rack.cfg and /virgoData/VirgoOnline/SNEB_dbox_rack.cfg

For a 0.1V offset in these configurtation files we observe the following temperature changes in the sensor outputs:

For 0.1 V offset NNN NEN NSN NWN WNN WEN WSN WWN
box_T offset (°C) 3.52

5.18

5.21 5.41 5.165   5.05  
motor_T offset (°C) 2.51 3.37 3.40 3.48 3.385 2.45 3.31

2.429

The final offsets used in cfg files are then:

dbox_rack.cfg offsets NNN NEN NSN NWN WNN WEN WSN WWN
box 0.11 0.045 0.051 0.077 0.04   0.025  
motor 0.165 0.074 0.058 0.13 0.061 0.044 0.037 0.021

 

AdV-INJ (Optical setup for ITF reflection (SIB2))
ruggi, spinicelli - 14:29 Wednesday 15 July 2026 (69361) Print this report
PR parking position and SIB1 bench temperature

Since the re-opening of the IB-PR valve and the lock of the IMC, the temperature of the SIB1 bench started to increase. This is a known effect which is due to the warming of the optics by the main beam and, when the PR is parked in a "bad position" (see for exemple here and here), also to the back reflected beam from the PR, that stops on some optics/bench part instead of an apposite beam dump.

After few months of non-lock, the position of the PR could have drifted. With Paolo, we tried to bring back the PR close to its last good position and look at the SIB2_B2 photodiode to asses the aligned position (see fig. 1). We found out that the vertical position was quite off, but even after replacing the PR_Y DoF we could see any signal on B2.

However, looking at the MIR and MAR DoFs of the PR (see fig. 1), we see that for the same MAR_TX position, MIR_TX was off by ~ 150urad. This is probably due to the PR which slid on the wires during some of the test done in May. The back reflected beam was then touching the surface of the bench its, rising up its temperature.

Once found the aligned position, we left the PR with the usual misalignment and stored its new position on the PR Metatron node.

 

Images attached to this report
AdV-INJ (Electro optical modulation system (EOM))
lagabbe, nocera, spinicelli, melo - 12:33 Wednesday 15 July 2026 (69359) Print this report
exchange of the 2 LNFS devices that generate 6 MHz and 56 MHz

Starting from Saturday 11 july, the measured amplitudes of the 6 MHz and 56 MHz lines became noisy for an unknown reason. The 2 signals became noisy at the same time so we suspected a problem with the LNFS box that generates the two lines, while the 22MHz, generated on a different synthesizer (LNFS_2) doesn't show the same problem. 
69359_1784109159_2026-07-15_EOM_sidebands_freq-amp-phase_noise.png

In order to test this hypothesis, on July 15 at 9:00 UTC, the two LNFS boxes were exchanged, and the rms on the measured signal amplitude returned to normal. The rms of the 22MHz signal amplitude remained unchanged, and did not increase after the intervention.

69359_1784108529_2026-07-15_EOM_sidebands_freq-amp-phase.png
At this point, we don't know exactly what causes the signals to become noisy.  A similar phenomenon has been already observed in the past, when the problem was associated to a temperature problem in the INJ IER. The temperature in IER rose by a few degrees and became more unstable since last month. This might be an explaination for the problem even if there is not a direct correlation observed at the moment.
 
69359_1784110618_2026-07-15_piscina_temperature.png
The two LNFS boxes may be exchanged again in the future or swapped with one spare.
 

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AdV-INJ (Input Mode Cleaner cavity)
spinicelli, gosselin, mantovani, melo, lagabbe - 11:56 Wednesday 15 July 2026 (69358) Print this report
Investigation on the longitudinal offset of the IMC lock

Since few week ago, after the intervention on INJ/ALS, the IMC longitudinal error signal shows a quite big offset (~ -1.8V), compared to the past( {-0.25, 0.1} ), visible as frequency to amplitude coupling on the INJ_PMC_TRA_DC_FMOD_COUPLING signal.

On Monday, we started to investigate the reason why this offset appeared.
We first checked whether the choise of the  22Mhz frequency modulation, used to lock IMC cavity, could itself be the cause of the offset. As we see in fig. 1, we started by putting at zero the IMC_OFFSET and scanning the 22Mhz on the LNFS up to few kHz of frequency shift. This resulted only in very small variations of the coupling channel.

Thus, we moved to investigate the way the beam enter the IMC cavity by acting on the BPC (with IMC_ON on 0, i.e. the BPC using its DCQPDs). As a result (fig. 2), the changes on the beam alignment improved the inejction into the RFC (visible on RFC_TRA signal), without changing the offset on the IMC longitudinal error signal.

Images attached to this report
Environmental Monitoring (Environmental Monitoring)
Lunghini, Fiori - 10:58 Wednesday 15 July 2026 (69357) Print this report
WEMeteoStation issues with external Humidity and Temperature

Since July 8, 2026, the WEB external humidity and temperature sensors of the wheater station are producing wrong data.
First we did a restart of the VPM process BcMeteoWe (Detector s Environment Monitoring > Environment > BcMeteoWe) but it did not solve the issue. Then, today we went to WEB to check the console of the station, we looked at the cabling, disconnecting and reconnecting them, we also restarted the module. None of theese actions were usefull to restart the acquisition and no values of external temperature and humidity are read by the device, external pressure and wind parameters are correctly collected.

An inspection of the sensor placed on top of the building must be scheduled.
 

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