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  36   Tue Feb 28 19:31:05 2023 PeterUpdateVLC Electronics532 M2 Measurements
Took M2 measurements today. Configuration: Lens 1 (f = 50mm) at 0mm. Lens 2 (f = 150mm) at 200mm, camera at 350mm. The laser beam was being moved in -z direction on track (so further away from the first lens). Quick data shown in the sheets plot. Not a real fit. I was trying to see where the beam waist was if there even was one. Seems that it is much further than we have room for on the track. Will need to come back and take more data. I suggest maybe Dr. Richardson or Cao come and see the configuration in person and how the beam diverges for themselves on the detector card. Maybe they can offer pointers to make this go smoother.
Attachment 1: X_width_and_Y_width.png
X_width_and_Y_width.png
  37   Tue Feb 28 19:33:51 2023 PeterUpdate 532 M2 Measurements
Y axis of plot in units of micrometers. X axis in units of millimeters.
  48   Thu Mar 9 12:03:59 2023 PeterUpdateVLC Electronics532 M2 Measurements
Took more M2 Data today. Picture of the optical set up is shown below. lens1 f = 100mm, lens2 f = 50mm, lens3 f = 150mm. There was a nice converging/diverging beam profile, and the beam waist was able to be read by the camera. I took as much data as I could before clipping loss. The M2 value is quite high.
Attachment 1: OmegaY_M2_Fit_3.png
OmegaY_M2_Fit_3.png
Attachment 2: OmegaX_M2_Fit_3.png
OmegaX_M2_Fit_3.png
Attachment 3: optical_setup.jpg
optical_setup.jpg
  50   Fri Mar 10 12:08:09 2023 PeterUpdateVLC Electronics532 M2 Measurements
Took more M2 laser data today. The configuration is the same as before except now the beam camera is the only component moving. Pictures can be seen below. The beam shape in x and y is very consistent with low error. However, the M2 value is still a bit high.
Attachment 1: OmegaX_M2_Fit_4.png
OmegaX_M2_Fit_4.png
Attachment 2: OmegaY_M2_Fit_4.png
OmegaY_M2_Fit_4.png
  61   Tue Apr 4 09:39:58 2023 PeterUpdateVLC Electronics532 M2 Measurements
Final M squared measurements were taken Wednesday, 3/29/23 by Peter and Ryan Hinosawa. 5 separate sets of data were taken, and upon discussion, we declared the plots shown below in attachment 1 and 2 as the final plots of our M squared measurements. The optical design of the M squared measurement process is given in attachment 3. The laser and three lenses shown below are mounted on the optical table. The track is placed behind the third lens, and the camera is moved along the track to take successive measurements of the beam's width. This will allow us to see a change in the beam's width over its propagation direction. The raw data is given in attachment 4 as a Beam_Data_8_3lens.txt file. This is eventually what gets used to generate the plots shown below. The code to run the analysis on these measurements (as well as analysis on the Gaussian intensity profile fitting) can be found: git@git.ligo.org:uc_riverside/visible-light-cavity.git
Attachment 1: OmegaY_M2_Fit_8.pdf
OmegaY_M2_Fit_8.pdf
Attachment 2: OmegaX_M2_Fit_8.pdf
OmegaX_M2_Fit_8.pdf
Attachment 3: M2_Measurements_Set_Up.svg
M2_Measurements_Set_Up.svg
Attachment 4: Beam_Data_8_3lens.txt
z-z0	x_width	y_width	x_error	y_error
-50	267	304	30	30
-40	227	261	30	30
-30	192	223	30	30
-20	167	194	30	30
-10	153	169	50	50
0	149	154	50	50
10	166	152	50	50
20	198	169	50	50
30	233	195	50	50
... 17 more lines ...
  230   Fri Sep 29 11:53:54 2023 ShaneUpdateCleanroom5 zone particle count measurement in cleanroom
Today's 5 zone measurement of cleanroom particulate concentration is attached
Attachment 1: 23.png
23.png
Attachment 2: 23.png
23.png
  270   Fri Nov 17 14:06:01 2023 ShaneUpdateCleanroom5 zone particle count
Here's today's 5 zone particle count measurement for the cleanroom. Zone 5 (closest to back wall by fire cabinet) is still above the limit for the larger size ranges; everything else is in good shape and roughly 10 times under the limit. Not sure why zone 5 is still so dirty (maybe some of the electronics being stored in bags/bins on the upper shelf of the desk aren't clean?) but will focus cleaning efforts on this zone next time.
Attachment 1: 23.png
23.png
  260   Thu Nov 9 19:06:46 2023 shaneUpdateCleanroom5 zone cleanroom measurement
Here's today's five zone measurement, taken ~5 hours after the cleaning. Zone 5 (closest to fire cabinet and back wall) is a bit over the limit in all size ranges (about 1500 particles in 1.0u size range over), and zone 2 is slightly over the limit in the 1.0u range, but everything else is under the requirement.
Attachment 1: 23.jpeg
23.jpeg
  314   Fri Feb 2 19:08:20 2024 AidenUpdateVAC1st Hot Element RGA Scan
Here are the measurements for the RGA scan of the elements while on at around 160C. The pressure of the chamber during the test was 4.12 e-8 torr.
Attachment 1: bake10_240202_Elements_ArC.png
bake10_240202_Elements_ArC.png
Attachment 2: bake10_240202_Elements_ArO.png
bake10_240202_Elements_ArO.png
  274   Tue Nov 21 14:47:24 2023 TylerUpdateLore1129 Workbench Assembly Update 1

[Tyler, Shane, Mohak, Cynthia, Luke, Michael, Luis]

Started assembly of the workbench equipment today. We completed the stools, and have constructed the frames of each workbench. All that needs to be added are the tabletops and the top shelves, which will be done on Monday.
Attachment 1: IMG_7569.jpg
IMG_7569.jpg
Attachment 2: IMG_7568.jpg
IMG_7568.jpg
  278   Mon Nov 27 14:22:30 2023 TylerUpdateLore1129 Assembly Update
[Tyler, Michael, Luke, Cynthia]

The tabletops have been attached to the workbench frames. Unfortunately, one of the tabletops came out of the box with a large scratch and small dent in the middle. One of the electric top shelves is ready to be attached to the undamaged table, but the other is yet to be opened. Assembly will be completed Wednesday morning.

Attachment 1: IMG_7669.jpg
IMG_7669.jpg
Attachment 2: IMG_7668.jpg
IMG_7668.jpg
  75   Fri Apr 21 15:21:18 2023 PamellaUpdateFLIR 
FLIR project updates
  • 01:50 pm: Starting test position 34 mm distance to black wall.
  • Parameters : 0.100 A, 1.5 V and the temperature inside the mirrors 40°C.
  • 2:09 pm : Finished the test and figured out this position it is too far the black wall so now we change for more close position.
  • 2:17 pm: Starting test in another position: 10 mm distance to the black wall( this measurement is between the black wall and the aluminum lid)
  • 2:26 pm : Finished this second tried and take a snap. The image is attached below.
  • The name for the picture for this tried is “AcquisitionImage(Apr-21-2023_14 26)”.
    Note: The second tried the temperature didn't up more than 40°C for 8 minutes so I change the current for a few seconds. I started with 0.98 A with 1.7 V and up until 0.350 A with 2.5 V, just for a few seconds and in this way the temperature up to 72°C and I get the snap.
      The next step should be understand the problem with the shape and work in changes for get the triangle in the FLIR image.
Attachment 1: AcquisitionImage(Apr-21-2023_14_26).jpg
AcquisitionImage(Apr-21-2023_14_26).jpg
  249   Mon Oct 30 11:03:56 2023 TylerUpdateScripts/Programs 

FLIR: After some adjustments, the plot generated from the FLIR measurements look much more symmetric (see attachment). There are more included grid points, which smooths out the curve as compared to last week.

Red Pitaya: It looks like a new OS update was released for the RP, which includes a new Python API (was previously only available in C). I'm going to try and update the one we have currently running in lab.

Attachment 1: Screenshot_2023-10-23_at_12.39.05_PM.png
Screenshot_2023-10-23_at_12.39.05_PM.png
  299   Mon Jan 8 20:24:53 2024 AidenUpdateGeneral 
[Jon, Aiden]

Installed the heater elements into their fixture and prepped the cables by twisting the wires into pairs. We also installed the pins onto the wires and placed them into the peek DB 25 connector. The installation tool we had did not fit the pin size we had so the pins needed to be installed by hand by opening the connector and holding them in place. In the future we will need to make sure we twist the wires together, group them, and then splice them all to the same size for easier installation. We then grouped all the twisted pairs into a bundle and zipped them together. On the left with two peek zip ties is the power and on the right is the RTD with one peek zip tie. This orientation remains true when looking at the feed through flange from the outside with the power port on closest to the wall.

We also installed the heater elements numbered 1-8 starting from the left in image 3. These elements have numbers as resistance data was taken before as to identify the heaters after they are in the chamber. After installing the DB 25 connectors we tested that the pins were in the right orientation by using a volt meter and testing the resistance where the cable runs into the the actual power supply. It seems that all the pins were properly installed and the resistance values all match with each one gaining about 2 Ohms from the cable itself.

Then the pump down was started. The pump was very slow and we suspected a leak but after changing the o-ring pump down was not any faster and we decided to leave it over break as it seemed to just be water outgassing from the aluminum. The chamber is now able to be RGA scanned and leak tested before the next bake as it is low enough pressure.

Attachment 1: IMG_4888.jpg
IMG_4888.jpg
Attachment 2: IMG_4886.jpg
IMG_4886.jpg
Attachment 3: IMG_4887.jpg
IMG_4887.jpg
  306   Tue Jan 16 16:11:41 2024 AidenUpdateVAC 
[Aiden,Luis]

Below is the data for the most recent bake. I believe the chamber is cleaner than it is actually showing as the RGA data was still getting lower while the data was being taken. I will take the data again tomorrow just in case. Still, the data shows that the chamber is basically as clean as it was before bake 10 and this means further power testing can proceed.

Helium leak tested the chamber again today to check if the sealant changed anything. The two primary target flanges from last time have improved significantly with the flange from the RGA on the cross now being below 2e-14. While the turbo pump flange was leaking at a rate of 4e-13. Much better than what it has been before.

Attachment 1: bake10_240116_Elements_ArO.png
bake10_240116_Elements_ArO.png
Attachment 2: bake10_240116_Elements_ArC.png
bake10_240116_Elements_ArC.png
  391   Mon Jul 1 11:45:45 2024 SidUpdateInterferometer Simulations 
Progress update: Most of last week was spent getting set up with SIS, and learning how to do basic simulations. The goal for this week is to begin reproducing the methodology from T2000338. I have begun with studying perturbations to mirror curvature and position in a simple FP cavity, but thus far have been unable to get the same results.
  421   Tue Aug 6 13:07:07 2024 XuejunUpdateInterferometer Simulations 
[Xuejun]

The width and location of the measured in-air change in temperature profile has been determined to be 0.045m and 0.137m respectively. Subsequently, a fake irradiance profile was able to be generated that best resembled what the actual irradiance profile could be using this information for testing in COMSOL. The generated irradiance profile that output the most similar change in temperature profile as the measured in-air profile has been included as well as the change in temperature profile it produced on the blackbody screen "test mass" model in COMSOL.

Attachment 1: Thermal_model_image.png
Thermal_model_image.png
Attachment 2: generated_irradiance_profile.png
generated_irradiance_profile.png
  471   Wed Nov 13 14:06:00 2024 Luke UpdateGeneral 

slides

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