TITLE: 09/30 Eve Shift: 23:00-07:00 UTC (16:00-00:00 PST), all times posted in UTC STATE of H1: Observing at 117Mpc INCOMING OPERATOR: Corey LOG: 23:57 - 23:58 UTC TCS_ITMY_CO2 node knocked out of observing 00:23 - 00:25 UTC TCS_ITMY_CO2 node knocked out of observing 00:26 - 00:33 UTC TCS_ITMY_CO2 node knocked out of observing 00:45 - 00:47 UTC TCS_ITMY_CO2 node knocked out of observing 00:51 - 00:53 UTC TCS_ITMY_CO2 node knocked out of observing 02:54 UTC Lock loss Struggling to lock Y arm on green 03:12 UTC Locked Y arm on green 03:35 UTC Lock loss from ENGAGE_ASC_FOR_FULL_IFO 03:48 UTC Lock loss from ENGAGE_ASC_FOR_FULL_IFO 04:20 UTC Stable at PREP_ASC_FOR_FULL_IFO 04:41 UTC Observing 05:26 UTC mid X low temp alarm
Just lost lock. Struggling to lock Y arm on green.
TITLE: 09/29 Eve Shift: 23:00-07:00 UTC (16:00-00:00 PST), all times posted in UTC
STATE of H1: Observing at 118Mpc
OUTGOING OPERATOR: Cheryl
CURRENT ENVIRONMENT:
SEI_CONF state: WINDY
Wind: 13mph Gusts, 11mph 5min avg
Primary useism: 0.03 μm/s
Secondary useism: 0.16 μm/s
QUICK SUMMARY: No issues.
TITLE: 09/29 Day Shift: 15:00-23:00 UTC (08:00-16:00 PST), all times posted in UTC
STATE of H1: Observing at 118Mpc
INCOMING OPERATOR: Patrick
SHIFT SUMMARY: lockloss, and it appears that the impulse from atempting EQ mode for ISI may be the cause
LOG:
Matthew Ball, Adrian Helmling-Cornell, David Shoemaker, Cheryl Vorvick, Sharan Banagiri, Robert Schofield
We found that the 48 Hz peak in DARM was associated with the HAM3 chamber doors using a new technique to localize scattering sites on vacuum enclosure walls. We injected from two shaker locations at slightly different frequencies (e.g. 48 and 48.01). Because the injection locations are separated, the relative phase of the two signals varies with location on the vacuum enclosure. As a result, the phase of the beat envelope varies with position, and different sites experience maximum chamber wall motion at different times. The sites with accelerometer signals that have the same beat envelope phase as DARM are candidates for the scattering sites on the vacuum enclosure walls. We get reasonable resolution in part because propagation velocities on the steel membranes are only hundreds of m/s. The technique is illustrated in Figure 1 and there is a bit more detail in my Warsaw talk: https://dcc.ligo.org/LIGO-G1901683 . We first used a variant of this technique, injecting with two separated speakers, which, because it reaches everywhere in the LVEA, may be the best first step (BTW we could clearly hear the spatial variation in beat envelope). The beating shakers seemed better for finer-resolution localization.
We found that there were often a couple of locations with envelope phases indistinguishable from DARM’s, but when we injected at multiple frequencies, we could eliminate the chance phase alignments (e.g. instead of just 48 and 48.01, we also used 50 and 50.01 and 47 and 47.01 as well as beating frequency sweeps).
In the first set of injections, the best match in the LVEA was to the single accelerometer on HAM3, so we began focusing in that area. Previous studies using single shakers and impulses suggested coupling in the vertex area, but had not narrowed the location specifically to the HAM3 area. In order to increase the resolution of our accelerometer array, we mounted temporary accelerometers at various locations on HAM3, the HAM3-BSC2 spool and HAM3 side of the MC tube. Since we only have two spare accelerometers, we had to inject and move accelerometers multiple times. We also checked the GS13s on the table, H1,2,3 and V1,2,3, but their phases did not match DARM, consistent with other evidence pointing to the chamber walls. The accelerometer locations that had the best beat-envelope match to DARM were on central parts of the HAM3 doors, but not the edge.
We opened the viewports and found a lot of scattered light on the inside of the doors, including two “beams” that came right through two different viewports, so we were able to block them with black glass. It turned out that the “beam” that was mainly responsible for the 48 Hz peak was the beam coming through the illuminator port. We put black glass in this port (lower –X port on the –Y side of HAM3) and found that this eliminated the 48 Hz peak. I could easily see a misshapen “beam” on an IR card so I think it might be a milliwatt-scale “beam”. It was surprising that this worked so well since light was scattered all over the doors, but it may be that the illuminator port was the most important location because it has a flat bulb cover that was oriented in such a way that it may have retro-reflected scattered light back to the source (Figure 2).
The source of the “beam” of scattered light (and also the likely recombination point) appears to be the +Y edge of the PR2 scraper baffle aperture (see photos and diagrams in Figure 2).
Figure 3 shows a comparison of summary-page spectra for the day before and the day after we inserted the black glass (https://alog.ligo-wa.caltech.edu/aLOG/index.php?callRep=52136 ). The 48 Hz peak seems completely eliminated and has not re-appeared in a few days. So, fixing the scattered light source in HAM3 does not now seem to be an immediate priority. However, if we arent going to fix it during O3, we would like to make injections to estimate the remaining scattering noise since light is scattered all over the door. Finally, it is possible that there is a second problem on the table that produces the other “beam” that comes out through the lower +X port on the +Y side of HAM3, though Cheryl thinks it might also be from the PR3 scraper baffle. We also put black glass in this port.
Congratulations on finding and fixing a long-standing mystery noise source!
Nice! Did the little peak at 96 Hz go away as well? Looks promising in your fig. 3.
M 6.8 - 66km WSW of Constitucion, Chile (wa originally pegged at M7.2)
Usualy Iswitch right away, while Z BLRMS is around 40. Switched with Z BLRMS at around 300 (advice has been to wait, so maybe this was too long of a wait?), and CPSFF spiked to -2000 and broke the lock.
TITLE: 09/29 Day Shift: 15:00-23:00 UTC (08:00-16:00 PST), all times posted in UTC
STATE of H1: Observing at 116Mpc
OUTGOING OPERATOR: Ed
CURRENT ENVIRONMENT:
SEI_CONF state: WINDY
Wind: 22mph Gusts, 16mph 5min avg
Primary useism: 0.07 μm/s
Secondary useism: 0.18 μm/s
QUICK SUMMARY: locked 58 hours, in Observe 25 hours
TITLE: 09/29 Owl Shift: 07:00-15:00 UTC (00:00-08:00 PST), all times posted in UTC
STATE of H1: Observing at 116Mpc
INCOMING OPERATOR: Cheryl
SHIFT SUMMARY:
H1 locked for 57.25 hrs. Nothing o report. Handing off to Cheryl.
LOG:
TITLE: 09/29 Owl Shift: 07:00-15:00 UTC (00:00-08:00 PST), all times posted in UTC
STATE of H1: Observing at 16Mpc
OUTGOING OPERATOR: Corey
CURRENT ENVIRONMENT:
SEI_CONF state: WINDY
Wind: 22mph Gusts, 17mph 5min avg
Primary useism: 0.08 μm/s
Secondary useism: 0.21 μm/s
QUICK SUMMARY:
TITLE: 09/28 Eve Shift: 23:00-07:00 UTC (16:00-00:00 PST), all times posted in UTC
STATE of H1: Observing at 114Mpc
INCOMING OPERATOR: Ed
SHIFT SUMMARY:
Approaching 49.5hrs on a breezy, chilly, and rainy night. Had one borderline earthquake roll through, but H1 was taken to EARTHQUAKE & made it through.
LOG:
TITLE: 09/28 Eve Shift: 23:00-07:00 UTC (16:00-00:00 PST), all times posted in UTC
STATE of H1: Observing at 115Mpc
OUTGOING OPERATOR: Cheryl
CURRENT ENVIRONMENT:
SEI_CONF state: WINDY
Wind: 28mph Gusts, 24mph 5min avg
Primary useism: 0.08 μm/s
Secondary useism: 0.28 μm/s
Pretty blustery outside with sustained winds over 20mph & in the chilly upper 40degF. Between 12hrs & 2hrs ago microseism began a step up in intensity & is between the 50th & 90th percentile amplitude. Let's hope it stays there!
QUICK SUMMARY:
H1 continues with a lock that currently stands at 41.5hrs (let's hope we continue to ride through these high winds!) & a range which is averaging about 116Mpc.
Continue to have Guardian new-ish notifications for the following:
TITLE: 09/28 Day Shift: 15:00-23:00 UTC (08:00-16:00 PST), all times posted in UTC
STATE of H1: Observing at 115Mpc
INCOMING OPERATOR: Corey
SHIFT SUMMARY: locked in Observe all shift
LOG:
H1 continues to be locked in Observe, winds between 20mph to 30mph for the last 2 hours.
TITLE: 09/28 Day Shift: 15:00-23:00 UTC (08:00-16:00 PST), all times posted in UTC
STATE of H1: Observing at 117Mpc
OUTGOING OPERATOR: Ed
CURRENT ENVIRONMENT:
SEI_CONF state: WINDY
Wind: 9mph Gusts, 7mph 5min avg
Primary useism: 0.02 μm/s
Secondary useism: 0.19 μm/s
QUICK SUMMARY: in observe
TITLE: 09/28 Owl Shift: 07:00-15:00 UTC (00:00-08:00 PST), all times posted in UTC
STATE of H1: Observing at 118Mpc
INCOMING OPERATOR: Cheryl
SHIFT SUMMARY:
Quiet shift until squeezer came unlocked at 14:56UTC. uSeism shifting upward, slightly. Handing of to Cheryl
LOG:
14:56UTC Intention bit commissioning - suqeezer came unlocked
14:57 Squeezer re-locked - Intention bit Observing
TITLE: 09/28 Owl Shift: 07:00-15:00 UTC (00:00-08:00 PST), all times posted in UTC
STATE of H1: Observing at 119Mpc
OUTGOING OPERATOR: Corey
CURRENT ENVIRONMENT:
SEI_CONF state: WINDY
Wind: 6mph Gusts, 5mph 5min avg
Primary useism: 0.02 μm/s
Secondary useism: 0.14 μm/s
QUICK SUMMARY:
H1 humming. Corey doesn't like my Saints jersey. ;)
TITLE: 09/27 Eve Shift: 23:00-07:00 UTC (16:00-00:00 PST), all times posted in UTC
STATE of H1: Observing at 118Mpc
INCOMING OPERATOR: Ed
SHIFT SUMMARY:
Operator Note: Whitening for AS A RF45 from Evan/Craig---In case there are issues, see alog #52171. Issue would be losing lock around the CARM_OFFSET_REDUCTION state in ISC_LOCK.
Tour (about 46 visitors observed) on site around 1utc (6pm PDT); star party canceled due to cloudy weather.
LOG:
【Jeff, Evan】
We updated the DARM FOM with a reference from a few hours ago. The old reference (from May 2019) did not reflect several improvements in the noise; e.g., the elimination of certain lines. We do not want to lose track of these improvements during recovery from the vent.
In the attachment, gold is the new reference (116 Mpc) and black is the old reference.
A list of improvements major (hardware / configuration / controls) changes I would consider as the major contributors to the improvement: - Increase in input laser power from 35 W to 37 W (LHO:49783) - Notching of SR3's bounce mode at 27.71 Hz (LHO:49649) #LSCFellows - PRCL feedforward creation and improvements (LHO:51553) #LSCFellows - Finding and destroying the 48 Hz feature by blocking a beam at a HAM3 viewport (LHO:52136) #LSCFellows - Updated calibration (LHO:51819)
The DRMI FOM was also updated to today's noise curves (the old ones were from O1).