Displaying reports 1-20 of 89334.Go to page 1 2 3 4 5 6 7 8 9 10 End
Reports until 17:28, Monday 21 September 2026
H1 ISC
elenna.capote@LIGO.ORG - posted 17:28, Monday 21 September 2026 - last comment - 18:50, Monday 21 September 2026(91991)
DRMI locking, almost at 3f

[Keita, Louis, Caroline, Elenna]

We are much closer to getting the 3f transition. We have confirmed we can swap PRCL from 1f to 3f while maintaining the same gain (no need for a factor as in 89567).

We have also confirmed what the 27I matrix value for SRCL needs to be to subtract PRCL from the error signal (2.7). We still need to test the 135I input matrix value by putting it into a blank matrix row, but we think it should be roughly -4.

We still have yet to to figure out what the MICH matrix value needs to be, but we think if we follow the same procedure as we did for SRCL, we can get there.

Regarding the DRMI ASC, we have not been successful in putting together a good MICH ASC signal. Unlike PRMI, the AS B RF45 signal is not going to work, but it looks like neither does the AS A RF45 signal. We might need to do a full sensing matrix and then use both sensors to construct a sensible signal. We could also check the AS 36 signals in case they are better.

I checked the air 3f phases and changed them slightly while running a PRM line to maximize PRM in I for both 27 and 135. Attached are screenshots of my measurements and SDF. I first started checking the phases while the SRCL mode hop offset was on, but then I turned it off. With the offset off, the phasing still looks fine.

We have also noticed the SRCL gain seems low by a factor of 2 (with nominal -33 gain from guardian). This is based on the idea that we want SRCL to have a UGF closer to 30 Hz. We don't think this is causing much of a problem right now, but it's something worth checking out and maybe guardianizing.

The MICH OLG still looks very strange, so there must be some cross coupling somewhere, but it's hard to tell what because the air 1f phases look ok, or at least Keita says "it's not wrong".

Unfortunately the day ended a little roughly, because suddenly we went from having very stable long DRMI locks to short locks that ring up quickly. Nothing on our end changed, so we don't understand what happened.

Procedure:

 

Additional locking notes from the morning:

Images attached to this report
Comments related to this report
keita.kawabe@LIGO.ORG - 18:28, Monday 21 September 2026 (92003)

I refined the BS and PRM alignment and got a good long lock. When 18MHz buildup of H1:LSC-POPAIR_B_RF18_I_ERR_DQ ~90 to 100 it was OK, it was a bit rough when this was ~80.

OTOH I'm observing something like mode-hopping behavior when 18MHz buildup is ~100. See attached video.

Non-image files attached to this comment
keita.kawabe@LIGO.ORG - 18:50, Monday 21 September 2026 (92004)

MICH gain was too high.

I noticed that something in LSC was (close to?) oscillation at maybe 13 or 14Hz and it was visible in MICH, PRCL and SRCL (when the IFO was not "mode hopping"). See reference traces in the attached.

I reduced MICH gain by a factor of 3 (H1:LSC-MICH1_GAIN=1) and the oscillation went away (current traces), and so did the "mode hopping"-like behavior. I'm going home now, but we must measure OLTF of LSC loops, paying attention to the coupling between DOFs.

It's not clear if MICH_GAIN=1 is good for acquisition so no change in the guardian yet. I'll leave it locked, and later will bring the guardian to DOWN from home.

Images attached to this comment
H1 General
anthony.sanchez@LIGO.ORG - posted 17:11, Monday 21 September 2026 (92002)
Monday OPS report.

TITLE: 09/22 Day Shift: 1430-2330 UTC (0730-1630 PST), all times posted in UTC
STATE of H1: Corrective Maintenance
INCOMING OPERATOR: Oli
SHIFT SUMMARY:
Beckhoff issues were resolved before noon

End X's Gatevalve GV 20 is still closed and will remian closed for now.

LOG:
 

Start Time System Name Location Lazer_Haz Task Time End
15:47 EE Fil MSR & EY N Checking Fiber connections to Beckhoff 17:47
15:49 FAC Chris X-arm N Talking to Randy about the Snorkle 15:19
15:51 FAC Randy X-arm N Tar snaking & other road maintenance. 18:51
15:57 LVEA Jordan LVEA n Checking on pumps 17:43
16:16 FAC Chris Outside CS n Using Snorkle lift to installing bird anti-perch near vents 17:44
16:16 ALS Elenna CTRL RM N Initial alignment & Locking DRMI 18:16
16:50 VAC Jordan & Gerardo EX N Checking for Leaks at EX 17:44
17:10 PEM Ryan C Optics Lab N Checking Dust monitor status. 17:48
18:57 VAC Jordan & gerardo LVEA N Craning Leak detector over the X arm 19:29
20:57 SUS Rahul Optics/prep n Checking ISS hardware 20:59
21:30 DetEng Betsy EX N Cleaning up from Vent 21:00
21:44 Contam Ryan C. CER N Putting boxes away 21:54
22:10 VAC Jordan Gerardo EX N Gate Valve 20 work 23:38

 

H1 SEI
oli.patane@LIGO.ORG - posted 15:57, Monday 21 September 2026 (91999)
ISI CPS Noise Spectra Check Weekly FAMIS

Closes FAMIS#62991, last checked 91877

Everything's looking okay. ETMX is obviously very noisy as expected. A few chambers are seeing a bit more noise at 30Hz compared to the last check, but nothing too out of the ordinary. HAM5 H3 is seeing 7-8x more noise at 60Hz for some reason.

Non-image files attached to this report
H1 SUS (CDS)
oli.patane@LIGO.ORG - posted 15:46, Monday 21 September 2026 (91998)
QOSEM BBSS M1 sat amp whitening modification Timeline and Comparison

 Wanted to compile a table of the whitening changes that we've made to the QOSEM BBSS M1 satamp and how each modification has lowered the time constant. With our current settings, our time constant is 4 seconds, which is much nicer for not saturating compared to the original design, whose time constant was 23 minutes.

  Whitening zpk Compensation zpk LHO implementation LLO implementation Time Constant (s)
Original Design zpk([720e-6],[145e-3],1,"n") zpk([145e-3],[720e-6],1,"n") -- -- ~1400
1st Modification (CIT:1028) zpk([0.0144],[2.89],1,"n") zpk([2.89],[0.0144],1,"n") 2026/07/13 - LHO:91003   70
2nd Modification zpk([0.263],[2.89],1,"n") zpk([2.89],[0.263],1,"n") 2026/09/09 - LHO:91853 2026/07/28 - LLO:82137 4
Images attached to this report
H1 SUS
oli.patane@LIGO.ORG - posted 13:23, Monday 21 September 2026 (91995)
ETMX Back in Vac TFs

ETMX is still looking healthy now that we're back in enough vacuum. Here are some transfer functions I took for ETMX M0 and R0 with the OPTICALIGN OFFSET sliders ON

Settings:
- In HEALTH_CHECK
- alignment sliders ON
- DAMP OFF
- SEI in ISI_DAMPED_HEPI_OFFLINE

M0
Data:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGM0/Data/2026-09-21_1745_H1SUSETMX_M0_WhiteNoise_{L,T,V,R,P,Y}_0p02to50Hz.xml
Results:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGM0/Results/2026-09-21_1745_H1SUSETMX_M0_ALL_TFs.pdf
r13155

R0
Data:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGR0/Data/2026-09-21_1830_H1SUSETMX_R0_WhiteNoise_{L,T,V,R,P,Y}_0p02to50Hz.xml
Results:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGR0/Results/2026-09-21_1830_H1SUSETMX_R0_ALL_TFs.pdf
r13156

Images attached to this report
Non-image files attached to this report
H1 SPI
jeffrey.kissel@LIGO.ORG - posted 12:31, Monday 21 September 2026 - last comment - 16:36, Monday 21 September 2026(91990)
2026-09-03 SPI L Calibration Run Results
J. Kissel

Sina has posted some of the first SPI L results in LHO:91794 and subsequent comments in LHO:91861. They conclude, via passive ASD measurement and minimal unit conversion, that "the visual agreement is remarkably good."

Here I post some retrospective results from the driven transfer function set I took on 2026-09-03 (LHO:91798) to get a more quantitative comparison.
Using all channel conversions described in LHO:91809, which are, in summary "just" calibrating the front-end channels into the SI order of magnitude units (i.e. diplacement channels from [nm] to [m], and inertial sensor channels "inertial sensor response asymptoting to 1 [nm/s] at high-frequency" to [m]), I compare the ASDs and transfer functions during the reference time and HAM2 injection times, 
    Reference Time  2026-09-03 17:09:49 UTC 
    HAM2 excitation 2026-09-03 18:34:14 UTC - 18:58:09 UTC

Note -- while I had thought the CRS as blended into the HAM3 sensor array during this time, Jim confirms that it was NOT in play in the HAM3 RY loop (LHO:91866).
Also -- there were questions why "I didn't just use the same excitation that Jim did for the optical lever signals;" the real answer is that I hadn't had the chance to talk to him, couldn't find it easily on my own, and assumed it was some matlab infrastructure that I wouldn't know how to use. I now have talked to him, and he's pointed me to LHO:91754, which points to LHO:91607, which points to the actual path to the file in LHO:91179. But, even if I did find that text file to drive awggui with, it has a low-frequency-focused tilt de-coupling color too it, which is different from what I ended up concocting in DTT. C'est la vie, I think both sets of TFs will be interesting. Certainly this one was.

Attachment 1
Building up an understanding of the front-end-computed HAM3-HAM2 super sensor signal, H1:ISI-DIFF_H23_SS_X_OUT_DQ.

This ASD collection compares the CPS and GS13s of HAM2 and HAM3 against the differential super sensor during the HAM2 excitation (only). Since HAM3 was NOT being driven, we can treat this like the "reference" performance for the HAM2 ISI -- because the HAM2 and HAM3 ISI typically perform similarly in the longitudinal, or ISI and IFO X direction (when the CRS is not engaged into the HAM3 blend). 

- Compare BLUE, DARK GREEN, and HOT PINK traces. We see that the drive on causes displacement on HAM2 is factors of 2x to 50x above the reference level
- Compare THIN DARK PURPLE against CYAN and BRIGHT GREEN traces. We see that the blended input to the super sensor for HAM3 has -- for some reason -- a lot more motion than the "raw" blended CPS and GS13s input. 
- COMPARE BLUE, DARK GREEN, HOT PINK, and BLACK traces. Where the CPS and GS13s are not noise limited (i.e. where're signals are used in the blend to form the super sensor sum), All of the HAM2 and the differential HAM3-HAM2 signal agree, showing the excitation on HAM2.

Conclusion: the front-end computed measure of the differential motion between HAM3 - HAM2 using the onboard CPS and GS13s is functional, comes with a calibration that makes sense, and is measuring the right thing.

Attachment 2
Building up more trust in the HAM3-HAM2 super sensor signal, H1:ISI-DIFF_H23_SS_X_OUT_DQ as a faithful signal for comparison with the SPI L signal H1:SPI-H23_DIFFDISP_MAIN_OUT_DQ.

This ASD collection compares the CPS- and GS13-computed differential X motion (BLACK) and SPI L measured differential X motion (RED) during both the reference quiescient time (DASHED traces) and during the HAM2 excitation (SOLID traces). The excitation is also shown (H1:ISI-HAM2-ISO_X_EXC, calibrated into displacement units [m]).

- During the reference time (DASHED), the SPI L and the on-board sensors only agree above 5 [Hz]. *very interesting* We know the low-frequency-end -- below ~2 [Hz] -- is dominated by the SPI seed laser's frequency noise -- which is dominated by the IMC's displacement. Remember, at the time of measurement, only the IMC is locked (but now with the JAC locked between the PSL and IMC). It looks like -- at least during this measurement -- that's larger or different or incoherent with the HAM3-HAM2 motion. So... maybe this is all suspension noise (or ISI tilt)? Needs more study / noise budgeting.

- During the excitation time (SOLID), the SPI L and the on-board sensors agree across a much broader frequency-band, only disagreeing between 1.5 and 10 [Hz]. *very interesting*. *great* that the excitation i.e. this amount of differential motion *makes* the SPI L and on-board sensors agree for the most part. I have even less of a guess at an explanation for the frequency region where they're not, tho.

Conclusion: Under large differential displacement, the SPI L agrees with the on-board sensors over a very broad range of frequencies, from 0.005 - 2 [Hz] and 10 - 60 [Hz] Lots still to investigate, tho.

Attachment 3
Linear transfer function between the HAM3-HAM2 super sensor signal, H1:ISI-DIFF_H23_SS_X_OUT_DQ and the SPI L signal H1:SPI-H23_DIFFDISP_MAIN_OUT_DQ, as well as the length/frequency control channel for the input mode cleaner (H1:IMC-F_OUT_DQ. 

I show the driven transfer function magnitude for these signals on a log-log plot. Coherence shown separately below.

- Where the SPI noise didn't match the ISI-DIFF noise between ~2 - 10 [Hz], the TF is incoherent (coherence shown separately below), so ignore that.
- At other frequencies, where the ASD "visually agree" the transfer function is NOT exactly 1.0 -- see more discussion of the values of the TF magnitude in the semilogx version of the plot below. *very interesting* 
- I don't understand the magnitude of the IMC-F transfer function at all below 1 [Hz]. The next plot shows it's coherent... *very interesting* or *I'm missing something obvious*

The IMC-F channel has the following calibration into [m]:
    Gain: 1.1683e-06
    Poles: 0
    Zeros: (none)
I don't remember how I calculated this, or where I got it from. To be (re)investigated... but I would have guessed -- since IMC-F_OUT_DQ is already calibrated into [kHz], that it *should* be something like a factor of (2 * L_IMC * lambda / c) = 1.1724e-13 [m/Hz] or 1.1724e-13 [m/kHz] with no poles at 0 [Hz], from df / f0 = dL / L_rt math, but that doesn't seem to be it at all. I probably just need to go back to the code used to produce plots in the SPI final design doc ... just haven't had time.

Also -- side note -- looked into the IMC_X calibration infrastructure that uses the length drive to MC2 to calibrate the control signal into displacement units and that doesn't work.

Attachment 4

Coherence between SPI L and the ISI-DIFF channel and the IMC-F channel for the two TFs shown above.
I also show the coherence between the SPI L channel and the individual ISI CPS and GS13s to understand from where the coherence comes (expecting more from HAM2 since this is during the HAM2 drive.)
I also show the coherence between the ISI-DIFF channel and the IMC just to see how that's different.

Conclusion: Lots to see here, but I haven't really digested it or tried to make sense of it.

Attachment 5
Same transfer function as in Attachment 3, just shown in semi-log x so we can read off what the magnitude of the TF is at coherent frequencies.

- The TF is indeed almost a flat 1.0 [m/m] above 10 Hz; but not quite. *very interesting*
- Between 0.1 and 1 [Hz], where the SPI and ISI-DIFF are *definitely* coherent, the TF magnitude is *not* 1.0, not is it flat. It's got bumps and wiggles between 1.0 and 0.7. Best first guess it that this has something to do with gain peaking in the blend filters. *very interesting*

Conclusion: this TF is going to be very interesting, and we won't be able to "just" blend the SPI "right in" with a simple filter. And, I need to try to get more coherence below 0.1 [Hz].

Very interesting! 
Images attached to this report
Comments related to this report
jim.warner@LIGO.ORG - 16:36, Monday 21 September 2026 (92000)

While Jeff was out, I took a somewhat different measurement for SPI differential motion. My excitation was narrower than the one Jeff did here, I just wanted to try to check the calibration  at .1hz and below. The first two attached plots are the transfer functions between the SPI DIFF length channel and mostly various ISI sensors. The third image compares the tfs from SPI diff length to differential (HAM3 - HAM2) CPS and GS13s. I'm adding this last plot because I have seen something that looks like the blend filter gain peaking above .1hz in the DIFF SS synthetic supersensor channels, as Jeff mentions above. I think this indicates a drawback to using this synthetic supersensor signals. 

For these tfs, it looks like around .1hz the SPI and CPS agree very well, within a percent for my tfs.

Images attached to this comment
H1 TCS
ryan.crouch@LIGO.ORG - posted 12:25, Monday 21 September 2026 (91989)
TCS Chiller Water Level Top-Off - Biweekly

FAMIS81871, last checked in alog91654.

For measurements below, measuring from the "top" of the red float ball.

H1 SUS (ISC)
elenna.capote@LIGO.ORG - posted 10:42, Monday 21 September 2026 (91988)
Monitored and SDFed OLDAMP matrix

I monitored the new OLDAMP matrix values on the BBSS (these are not guardianized).

Images attached to this report
H1 General
anthony.sanchez@LIGO.ORG - posted 09:05, Monday 21 September 2026 (91987)
Monday Morning Ops Report.

TITLE: 09/21 Day Shift: 1430-2330 UTC (0730-1630 PST), all times posted in UTC
STATE of H1: Corrective Maintenance
OUTGOING OPERATOR: None
CURRENT ENVIRONMENT:
    SEI_ENV state: CALM
    Wind: 7mph Gusts, 4mph 3min avg
    Primary useism: 0.02 μm/s
    Secondary useism: 0.17 μm/s 
QUICK SUMMARY:

Slow controls and Beckhoff are currently Down. -Fil is currently troubleshooting this.
EX has been pumping down all weekend and now down to 3.68e-7 Torr according to H0:VAC-EX_X4_PT525_MOD1_PRESS_TORR. 
Gate valve 20 Is still closed.

H1 CDS
david.barker@LIGO.ORG - posted 09:26, Sunday 20 September 2026 - last comment - 11:22, Monday 21 September 2026(91984)
Lost all Beckhoff Slow Controls communications to EY overnight

The EY Slow controls issue escalated overnight, DEV5 now has no communication with EY.

The link deteriorated over the course of 5 hours, starting at 23:24 Sat 19sep2026 and was completely lost by 04:23 Sun 20sep2026.

Trending the slave_count_actual for DEV5 shows it erratically drops from 127 to 1 over this time period.

Images attached to this report
Comments related to this report
filiberto.clara@LIGO.ORG - 11:22, Monday 21 September 2026 (91992)

WP 13633

The EK1501-0010 Coupler in the EY End Link Chassis was replaced.

Started troubleshooting in the CER. Found the CU1521 media converter for EY had all link lights OFF. The EY fiber was removed and the EX fiber connected. Link lights powered on. This indicated issue at EY.

Removed the cover from the End Link Slow Controls Chassis and found link and power lights OFF. EtherCAT coupler EK1501-0010 was replaced. The CER D1700494 had to be power cycled for terminals to begin communicating.

End Link Chassis Serial Number: S1103494

D. Barker, F. Clara, R. McCarthy, P. Thomas

H1 IOO
jennifer.wright@LIGO.ORG - posted 16:56, Friday 18 September 2026 - last comment - 23:11, Sunday 20 September 2026(91982)
Doing long term JAC measurement over weekend

I turned off the JAC heater servo at 23:45:00 UTC today to do a longer step response test over the weekend.

Comments related to this report
jennifer.wright@LIGO.ORG - 23:10, Sunday 20 September 2026 (91985)

Turned JAC heater controller back on at 06:00:49 UTC.

jennifer.wright@LIGO.ORG - 23:11, Sunday 20 September 2026 (91986)

Also put notification for temperature set point in main() instead of run() within guardian code so it doesn't spam the log.

H1 AOS (ISC)
louis.dartez@LIGO.ORG - posted 17:00, Thursday 17 September 2026 - last comment - 12:38, Monday 21 September 2026(91957)
checking powers at ports

[Elenna, Louis]

After the HAM2 work (91959) finished today, we decided to double check AS port powers in a couple states. I trended back about a week to September 10, long before the RCG upgrade (91936). We are seeing a ~20% drop in counts on AS_A and AS_C in PRX_LOCKED and SRY. Also, our PRMI buildup right now is about 56. Last time we locked PRMI without ALS it was 52.

 

ALIGN_IFO State

Reference Time AS_A (ref) AS_A (now)

AS_A
now/ref (%)

AS_C (ref) AS_C (now) AS_C 
now/ref
(%)
POP_A_LF (ref) POP_A_LF (now) POP_A_LF
now/ref
(%)
PRX_LOCKED (N=32) 2026/09/10 15:35:29 UTC 1240 ct 992 ct 80 % 0.01465 W 0.0118 W 81 % --- --- ---
MICH_DARK_LOCKED (N=43) 2026/09/10 15:41:13 UTC --- --- --- --- --- --- 4.18 2.25 54 % *
SRY (N=62) 2026/09/10 15:31:56 UTC 5147 4127 80 % 0.061 W 0.05 W 82 % --- --- ---
SR2_ALIGN (N=59) 2026/09/10 15:35:35 UTC 1868.5 1797 96 % 0.0224 W 0.0216 W 96 % --- --- ---

 

* Not sure how comparable this number is since we don't know much about the centering on the LSC POP diode at the reference time. POPX pit & yaw are ~ -1 during this reference time stretch.

Comments related to this report
elenna.capote@LIGO.ORG - 12:38, Monday 21 September 2026 (91993)

I want to add a clarifying point that the "SR2 align" values listed here are single bounce values off ITMY.

LHO VE (VE)
jordan.vanosky@LIGO.ORG - posted 17:57, Wednesday 16 September 2026 - last comment - 16:56, Monday 21 September 2026(91945)
EX Pumpdown 9-16-26

After closing up BSC9 yesterday we started pumpdown of the EX volume this morning using the two mobile ISP1000 scroll pumps.

There was minimal overpressure in the system, so I could not get a good dewpoint measurement of the blow down air.

It took ~6 hours to rough the system down from atmosphere to ~500 mtorr, where we start the turbopump.

The cooling water was adjusted on the turbopump stand so that the pump and controller pressures were <= 40C. Once the turbo was at full speed and the inlet pressure ~5e-5 Torr, I switched the backing pump to the dedicated ISP250 on the turbo stand.

Setpoints were adjusted to 5E-2 Torr on Channel 1 (Foreline) and 5E-5 Torr on Channel 2 (Turbo inlet).

We will need to leak check the TMDS port gate valve since it was removed to verify the gate o-ring was in place.

 

Also, the EX cleanroom was powered off at ~3:10 pm local time.

Images attached to this report
Comments related to this report
gerardo.moreno@LIGO.ORG - 18:46, Friday 18 September 2026 (91983)VE

Pumpdown update for X-End volume.

At this point only the turbo pump continues to pumpdown.  See attached plot for progress.

Images attached to this comment
jordan.vanosky@LIGO.ORG - 16:56, Monday 21 September 2026 (92001)

Today we leak checked the TMDS port gate valve flanges (2.75" CF). We removed the gate valve during the vent to inspcet the o-ring as it looked like it may have fallen out, but after inspecting once the valve was removed, everything looked ok.

The helium leak detector was set up to back the main turbopump. There was no He signal detected above the leak detector background of 1.5E-10 Torr-l/s.

Images attached to this comment
H1 SUS
oli.patane@LIGO.ORG - posted 13:59, Tuesday 15 September 2026 - last comment - 12:54, Monday 21 September 2026(91923)
ETMX not rubbing anymore

After various ETMX transfer functions and offset tests, it looks like ETMX isn't rubbing anymore!

I did these tests this morning and wasn't able to get any rubbing. For everthing I did, L1 LL (and everyone else) moved as expected and no one got stuck anywhere. The offset tests that I did involved putting offsets in the L1 COILOUTF banks, M0 TEST banks, and R0 TEST banks and making sure L1 osems were all responding how we expected them to.

We noticed that L1 UL has been a little more jaggedly compared to the other L1 osems since we went to air, but the osem spectra looked good (comparing to its brethren) and putting a drive in M0 to move L1 around shows that UL is moving and behaving normally. We think it's probably just related to its current flag vs osem position as we put air in the chamber.

Transfer Functions
Settings:
- HEALTH_CHECK
- OPTICALIGN OFFSETS ON
- DAMP OFF
- ISI in ISI_DAMPED_HEPI_OFFLINE

M0
Data:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGM0/Data/2026-09-15_1540_H1SUSETMX_M0_WhiteNoise_{L,P,Y}_0p02to50Hz.xml
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGM0/Data/2026-09-15_1540_H1SUSETMX_M0_WhiteNoise_{T,V,R}_0p03to50Hz.xml
r13152
Results:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGM0/Results/SAGM0/Results/2026-09-15_1540_H1SUSETMX_M0_ALL_TFs.pdf
r13153

R0
Data:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGR0/Data/2026-09-15_1615_H1SUSETMX_R0_WhiteNoise_{L,T,V,R,P,Y}_0p03to50Hz.xml
r13148
Results:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGR0/Results/2026-09-15_1615_H1SUSETMX_R0_ALL_TFs.pdf
r13150

Spectra:
L1
Data:
/ligo/svncommon/SusSVN/sus/trunk/QUAD/H1/ETMX/SAGL1/Data/2026-09-15_H1SUSETMX_L1_OSEMINF_spectra_invac_vs_inair.xml
r13149

Images attached to this report
Non-image files attached to this report
Comments related to this report
oli.patane@LIGO.ORG - 12:54, Monday 21 September 2026 (91994)
Non-image files attached to this comment
H1 SUS
marc.pirello@LIGO.ORG - posted 14:53, Monday 13 July 2026 - last comment - 15:23, Monday 21 September 2026(91003)
BBSS QOSEM Sat Amp Whitening Modifications Installed

WP13410

Replaced multiple signal path resistors to reduce gain and adjust the filter to match work done at Caltech linked here.

 

Comments related to this report
oli.patane@LIGO.ORG - 15:23, Monday 21 September 2026 (91997)

Satamp compensation filters installed Wednesday 15 July 2026: 91044

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