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  Richardson Lab Experimental Log, Page 6 of 13  Not logged in ELOG logo
ID Date Author Type Categorydown Subject
  359   Mon Apr 8 14:57:41 2024 Cynthia, PooyanUpdateInterferometer Simulationsperformed cavity scans for O4 O5, and coupled cavity
Attachment 1: LIGO_update_week1.pdf
LIGO_update_week1.pdf
  361   Mon Apr 15 15:25:10 2024 CynthiaUpdateInterferometer Simulationsprogress on simulation so far
Attachment 1: LIGO_update_week3_(2).pdf
LIGO_update_week3_(2).pdf
  363   Mon Apr 22 15:06:33 2024 Cynthia UpdateInterferometer Simulationscavity scan update
[Cynthia,Pooyan] Completed some simulations injecting 0-10th order modes. Some graphs will be used for the poster after some further titles, axis, and range adjustments.
Attachment 1: LIGO_4_22.pdf
LIGO_4_22.pdf
  374   Mon Jun 3 14:59:44 2024 CynthiaUpdateInterferometer SimulationsCreated cavity scan with LG modes
Attachment 1: ligo_update_6_3.pdf
ligo_update_6_3.pdf
  381   Mon Jun 24 14:28:51 2024 Cynthia UpdateInterferometer SimulationsSIS cavity with thermal effect
tried to run a cavity scan with thermal deformation and ring heater for ITM04 ETM08 (aLIGO mirrors). Not sure about the accuracy of the graph as there is some commands that still need to verified.
Attachment 1: ETM08thermal.png
ETM08thermal.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.
  392   Mon Jul 1 15:19:42 2024 Cynthia UpdateInterferometer SimulationsO4 and O5 mirror cavity scans with thermal effect
Attachment 1: cavityScan_07_01.pdf
cavityScan_07_01.pdf
  393   Fri Jul 5 13:17:44 2024 LiuUpdateInterferometer SimulationsFour-quadrant FROSTI-like RH for astigmatic thermal actuation for CE optics
In the CE corner layout design and down selection study, interferometer layouts with large incidence angles on some of the curved optics are being considered, such as the folding mirrors in the "long crab". This however generates astigmatic beams upon reflection and results in mode mismatches in coupled cavities that need to be mitigated. Astigmatic thermal actuation for the optics involved is thus essential. One way we are considering is to implement a FROSTI-like barrel RH that delivers different irradiance for the four quadrants. This post summarizes primitive results on the astigmatic thermal actuation for the HR surface by powering the heater elements from one diagonal differently compared to the other.

For this study, we looked at a simple case with an aLIGO-like test mass geometry (R=0.17m, H=0.2m) plus a barrel RH with 0.02m width at 0.03m from the AR surface with FEniCSx. The irradiance profiles are constant inside the width along the longitudinal direction, and zero outside the width. For the baseline non-astigmatic actuation with constant irradiance azimuthally. We have obtained roughly equal quadratic actuations along the x and y directions, as shown in figure. The total delivered power on the entire barrel is normalized to 1 W. The actuation on the curvature per power Delta S/Delta P in this non-astigmatic case thus is 0.835 uD/W.

For the astigmatic case however, the irradiance for the regions from one diagonal is increased by a given amount, compared to the non-astigmatic case, whereas for the other diagonal regions is decreased by the same amount (thus the total power is unchanged at 1 W). The HR deformation when the power is changed by 50%, for instance, is shown in picture, where the deformation along the x direction is larger than the y direction. The deformation in each direction however remains quadratic, with different curvature per powers for the x and y components, as shown in plot. The actuation on the curvature per power for an increasing amount of astigmatism is shown in plot. In terms of Zernike polynomials, the maximum amount of Z22 (astigmatism) for 1 W of total power is 2um while the remaining curvature content (Z20) is 6nm. This is shown in plot.

Attachment 1: SURF_05.png
SURF_05.png
Attachment 2: SURF_xy.pdf
SURF_xy.pdf
Attachment 3: SURF_dsdp_converge.pdf
SURF_dsdp_converge.pdf
Attachment 4: SURF_dsdp_astigs.pdf
SURF_dsdp_astigs.pdf
Attachment 5: overlaps_zers.pdf
overlaps_zers.pdf
Attachment 6: SURF_xy_nonastig.pdf
SURF_xy_nonastig.pdf
Attachment 7: SURF_xy_nonastig.pdf
SURF_xy_nonastig.pdf
  394   Fri Jul 5 14:12:32 2024 LiuUpdateInterferometer SimulationsCE BS Mechanical Resonances
The butterfly and drumhead mechanical modes for the aLIGO BS were calculated in COMSOL. The resonant frequencies for the two acoustic modes are 2.45 kHz and 3.61 kHz, matching the results in reference for instance.

For a quick projection for the resonant frequencies going from aLIGO to CE, the height and width of the BS are increased assuming the mass is increased from 14 kg to 70 kg, while keeping the aspect ratio fixed. The resonant frequencies for the two mechanical modes as a result becomes smaller, to 1.43 kHz and 2.11 kHz respectively, risking getting in the detection band.

Next step is to implement a mechanical ring with high stiffness outside the BS barrel to combat the decrement of the resonant frequencies of the relevant mechanical modes.

Attachment 1: butterfly.png
butterfly.png
Attachment 2: drumhead.png
drumhead.png
  395   Fri Jul 5 14:23:13 2024 LiuUpdateInterferometer SimulationsEngineering drawings for straight edge heater element designs for FROSTI
Step files and engineering drawings for the straight edge heater element designs have been created in COMSOL and SolidWorks. They are available in the group Git Repo. With those, we will initiate a discussion with the ceramics supplier for an estimate of the feasibility and benefits of the straight edge element over the curved element in terms of manufacturing cost and time.
  397   Mon Jul 8 12:26:10 2024 MichaelUpdateInterferometer SimulationsMinimizing Astigmatic Effects in the SRC of LIGO
This is the first look and analysis of the effects of astigmatism in the aLIGO optical layout which can lead to mode mismatch and therefore increased losses into higher order modes. Specifically I am currently looking at measuring the effect of changing the radii of curvature of the SRC mirrors https://docs.google.com/presentation/d/1qhIehqyNukg4g8S2fqfQZz83yr9aB76tEa6fn2J-TrM/edit?usp=sharing
  404   Mon Jul 15 09:36:44 2024 LiuUpdateInterferometer SimulationsETM Profile Optimization for FROSTI

This is to optimize the FROSTI heating profile for ETM, by minimizing the residual RMSE of the HR surface deformation after the beam size weighted curvature is removed by the current RH. The parameters of the profile being explored are the location, width, and total power for the Gaussian Annulus. As shown in the attached series of plots, the optimal location is 9.9 cm, with a width of 7.7 cm, and a total FROSTI power of 12.7 W (for 1 W of Gaussian beam absorption). The residual RMSE is 1.2 nm. About 0.5% of the FROSTI power is lost at the edges of the TM.

For comparison, without FROSTI, the residual RMSE after the beam size weighted curvature removed by the current RH is 44.5 nm. When the width of the Annulus is set to be 3 cm however, the residual RMS is 3.1 nm, with much smaller FROSTI power needed at 4.7 W, and less power loss at 0.02%.

Attachment 1: pdf_merged.pdf
pdf_merged.pdf
  406   Mon Jul 15 14:28:32 2024 PooyanUpdateInterferometer SimulationsaLIGO test mass surface profiles

Created a Google Slides presentation to summarize all the mirror surface map information that we use for simulating interferometers. 

A+ expected maps are based on correspondence with G. Billingsley. The estimate for the A+ ITMs will be to take the “as polished” data and add coating non-uniformity to it. (T2000398) Neither of these are scaled for the precise thickness of the Ti:Ge coatings.

Google Slides link: https://docs.google.com/presentation/d/1ge-ciAiEdNyyTvSShYdZz2JpACFRY2W3JDpxHRqMnOQ/edit?usp=sharing

 

 

 

  408   Mon Jul 15 15:44:52 2024 Cynthia UpdateInterferometer Simulationsperformed cavity scans with thermal effects and ring heater
Attachment 1: cavity_scan_07_15.pdf
cavity_scan_07_15.pdf
  409   Mon Jul 15 15:52:40 2024 MichaelUpdateInterferometer SimulationsaLIGO locking with varying SRC mirrors and measuring mode mismatch
Attachment 1: SRC_Astigmatism_Analysis_7_15_24.pdf
SRC_Astigmatism_Analysis_7_15_24.pdf
  413   Mon Jul 29 12:18:52 2024 LiuUpdateInterferometer SimulationsUpdate on FROSTI O5 ETM profile optimization
Update on FROSTI O5 ETM profile optimization is attached.
Attachment 1: pdf_merged.pdf
pdf_merged.pdf
  414   Mon Jul 29 12:20:56 2024 LiuUpdateInterferometer SimulationsUpdate on wavefront actuation with astigmatically driven RH for CE
Update on wavefront actuation with astigmatically driven RH for CE is attached.
Attachment 1: SURF_nonastig_merged.pdf
SURF_nonastig_merged.pdf
  415   Mon Jul 29 12:23:10 2024 LiuUpdateInterferometer SimulationsUpdate on mechanical resonances of CE BS with stiffener ring
Update on mechanical resonances of CE BS with stiffener ring is attached.
Attachment 1: eigen_freqs_merged.pdf
eigen_freqs_merged.pdf
  Draft   Sun Aug 4 09:01:01 2024 MichaelUpdateInterferometer SimulationsUpdate on SRC Mode Mismatch Analysis
An update on my analysis to minimize mode mismatch/scattering by introducing toroidal mirrors to the SRC.
Attachment 1: SRC_Mode_Mismatch_Update_8_2_24.pdf
SRC_Mode_Mismatch_Update_8_2_24.pdf
Attachment 2: SRC_Mode_Mismatch_Update_8-12-24.pdf
SRC_Mode_Mismatch_Update_8-12-24.pdf
  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
  424   Mon Aug 12 17:09:04 2024 Cynthia UpdateInterferometer SimulationsO4 vs O5 cavity scans with ITM plume guess or ETM
So far the proposed solution for what to use for O5 ITM mirror for SIS simulations is either the plume guess file or using the O5 ETM mirror for ITM. I had ran a cavity scan for both of these possibilities and it seems like the results produced are fairly different. The next step is most likely moving on to adding the Frosti effects including both of the proposed possibilities, and before this, a few confirmations and verifications are needed using similar previous studies to make sure my code produce the right result.
Attachment 1: O5_plots_and_tables.pdf
O5_plots_and_tables.pdf
Attachment 2: O4_plots_and_tables.pdf
O4_plots_and_tables.pdf
Attachment 3: ETM12mapO5.png
ETM12mapO5.png
Attachment 4: Screenshot_2024-08-12_at_5.05.31_PM.png
Screenshot_2024-08-12_at_5.05.31_PM.png
  426   Mon Aug 19 07:11:55 2024 CynthiaUpdateInterferometer Simulationscavity scans with FROSTI effects
Attachment 1: LIGO_update_8_19.pdf
LIGO_update_8_19.pdf
  428   Mon Aug 26 14:42:04 2024 Cynthia UpdateInterferometer Simulationscurrent status on cavity scan with effects of FROSTI
I used the code and arm cavity model used for previous O5 study on mirrors and HOM (the pdf of the study and the result can be found at https://dcc.ligo.org/LIGO-G2100878), but it seems like the result I obtained is different from the study result. Since my cavity scans codes have a large portion of it relying on this code, I will have to go over the study result and the code to make sure there is no issue with that code itself first. There are also some other updates or issued encountered when I tried to plot the mirror maps with effects of FROSTI.
Attachment 1: LIGO_updates_8_26.pdf
LIGO_updates_8_26.pdf
  430   Tue Aug 27 18:37:40 2024 LukeUpdateInterferometer SimulationsRingheater model update
Updated the model to produce a more circular deformation in the HR surface. The first three attachments are from irradiance patterns gotten from ray tracing. The last is from a pre-defined irradiance pattern.
Attachment 1: Initial_1W.png
Initial_1W.png
Attachment 2: Increased_rays_100W.png
Increased_rays_100W.png
Attachment 3: Increased_rays_more_100W.png
Increased_rays_more_100W.png
Attachment 4: Initial_100W.png
Initial_100W.png
  436   Mon Sep 9 12:36:45 2024 MichaelUpdateInterferometer SimulationsUpdate on Analysis of Mode Mismatch Minimization in A#
I have taken a closer look at the solution curve in the mirror parameter space which I have searched, focusing on the "resilience" of specific points, with the plan to analyze how certain conditions of the interferometer change as we move along this solution curve.
Attachment 1: SRC_Mode_Mismatch_Update_9_9_24.pdf
SRC_Mode_Mismatch_Update_9_9_24.pdf
  439   Mon Sep 16 07:28:16 2024 LukeUpdateInterferometer SimulationsRing heater update
Attachment 1: 20240916_Ringheater_updates.pptx
  443   Mon Sep 16 15:18:59 2024 Cynthia UpdateInterferometer Simulationsa breakdown of FROSTI and thermal effects and the resulting cavity scan
Attachment 1: ligo_update_9_16_(1).pdf
ligo_update_9_16_(1).pdf
  444   Mon Sep 23 08:29:49 2024 LukeUpdateInterferometer SimulationsRingheater update

Ringheater Update

If the link does not work here is the file.

Attachment 1: 20240923_Update.pptx
  446   Mon Sep 23 15:00:41 2024 Cynthia UpdateInterferometer Simulationscorrections on assumption for O5 coating
The document recording ETM07 and ETM08 coating (T2300093) was discussed: the current plume files are not necessarily correct in a way that LIGO lab have tried to add it on uncoated ETM such as ETM07 and it does not match what the coated ETM07 would look like. the plume should be added on top of the uncoated ETM instead of assuming an ideal ETM. According to Garilynn, the imperfection on uncoated ETM matters. So far the possible ETM data used for O5, ETM 11,14,19, and 20 are all uncoated, and different ways could be used to predict the plume, including the plume data on LIGO dcc or subtract the uncoated data from the coated for O4 ETM and use that as another guessed plume.
Attachment 1: Uncoated_S1_ETM07-v2.pdf
Uncoated_S1_ETM07-v2.pdf
  454   Wed Oct 2 13:38:00 2024 CynthiaUpdateInterferometer Simulationscavity scan with averaged O4 ETM coating as plume
Attachment 1: O5plumevsCoating.png
O5plumevsCoating.png
Attachment 2: O5CoatAvgpt5.png
O5CoatAvgpt5.png
Attachment 3: O5AVgcoatingFROSTIpt5.PNG
O5AVgcoatingFROSTIpt5.PNG
  469   Wed Nov 6 13:48:55 2024 LiuUpdateInterferometer SimulationsQN modeling update
Slides
  482   Mon Dec 2 00:11:23 2024 MichaelUpdateInterferometer SimulationsStatus Update on Toroidal Mirrors Project Work
As it has been significant time from my last update on this project, I compiled a few notes about what I have been working on, current issues, and my future plans. The past few weeks have been focused on me attempting to obtain a reliable symbolic expression for mismatch. This is important going forward as it allows us to determine optimal points in the parameter space and the surrounding behavior efficiently without significant computational cost. However this been quite difficult since I've encountered some fundamental discrepancies in the way values like the ABCD matrix and q-parameters are calculated/returned in Finesse. Since I have yet to resolve this, I'm focusing on next steps in developing tools for statistical simulations.

Update Slides

  523   Tue Feb 25 01:37:00 2025 MichaelUpdateInterferometer SimulationsUpdates and Current Next Steps for Toroidal Mirrors Project
Since the previous discussion of this project, I've worked on building finesse models to verify mathematical results which model the astigmatism in a two mirror system which we attempt to minimize. This left us with a single condition for an output non-astigmatic beam. However, as can be seen in finesse simulations, there does exist other configurations which have a negligibly small astigmatism, which we may want to consider. Below I've attached the link to my overleaf project which has some updated information which I plan on discussing.

https://www.overleaf.com/project/67968921426e61d5b2fd8c96
  526   Tue Feb 25 10:56:25 2025 CynthiaUpdateInterferometer Simulationsmirror coating added for simulation rerun
I have tried to rerun the simulation on finesse after adding the mirror coating. The result has a large fluctuation in required input power vs arm power that is concerning. I am currently working on potentially resolve this issue and get a reasonable graph before I proceed to optimizing the thermal maps.
Attachment 1: updats_(3).pdf
updats_(3).pdf
  530   Tue Mar 4 10:18:43 2025 CynthiaUpdateInterferometer Simulationsattempted to remove curvature and tilt for the coating
Attachment 1: 3_4_updates.pdf
3_4_updates.pdf
  540   Tue Mar 11 11:28:52 2025 CynthiaUpdateInterferometer Simulationsflattening mirror to study power discrepency
Attachment 1: updates_3_11_(1).pdf
updates_3_11_(1).pdf
  548   Tue Apr 8 00:17:01 2025 MichaelUpdateInterferometer SimulationsSqueezing Performance Graphs for Case With and Without Toroidal Mirrors in LIGO
I've created some graphs for the frequency dependent observed squeezing level in LIGO for both the nominal case and the case where we include toroidal mirrors, giving some interesting results. https://docs.google.com/presentation/d/1RBr47hNaxFTdGrwys5ZCUEUOgVOVHmZ2B_5EQwY62IY/edit?usp=sharing
  554   Tue Apr 15 11:37:17 2025 CynthiaUpdateInterferometer SimulationsFinishing up mirror coating map step
Attachment 1: updates_4_15_2025.pdf
updates_4_15_2025.pdf
  555   Thu Apr 17 12:12:29 2025 LiuHowToInterferometer SimulationsPreventing Thread Contention in Multiprocessing with Finesse and Cython

Avoiding Thread Contention When Using Multiprocessing with Finesse and Cython

When running Monte Carlo simulations or other computational workloads, it's common to use Python's ProcessPoolExecutor to parallelize multiple independent tasks. This approach works well—until it interacts with low-level libraries that themselves use multi-threading under the hood.

The Problem: Thread Over-Subscription

In a recent project, I ran into a significant performance issue while executing a large number of Monte Carlo trials using a process pool with 30 worker processes on Megatron (with 48 cores). Each trial ran a function that internally used cython.parallel.prange for fast, element-wise operations, which is what Finesse uses under the hood for many internal numerical calculations. Cython, via OpenMP, was configured to use all available CPU threads per process by default.

This resulted in severe thread over-subscription. With 30 parallel processes and each process attempting to use all 48 threads, the system was launching over 1,400 threads concurrently. The CPU quickly became saturated, and the tasks stalled. In some cases, the system became unresponsive, and the jobs had to be canceled repeatedly.

This happens because when the function calls into these libraries from within a Python multiprocessing context, each subprocess will attempt to use the full number of threads available to the machine.

The Solution: Limit Threads per Process

The solution is simple: explicitly limit the number of threads each subprocess is allowed to use. This can be done by setting the environment variable at the top of your script, before importing any thread-hungry libraries like Finesse.

      
import os
os.environ["OMP_NUM_THREADS"] = "1"

    

By setting OMP_NUM_THREADS to "1", we ensure that each multiprocessing worker uses only one thread internally, preventing them from overloading the system and allowing the tasks to run more efficiently.

  556   Mon Apr 21 16:56:42 2025 MichaelUpdateInterferometer SimulationsFixed Observed Squeezing Curve for Toroidal Mirror Case
We've resolved the issue with the observed squeezing curve for the toroidal mirror case showing worse performance at lower frequencies and better performance at higher frequencies compared to the nominal case. This issue was caused by the beam parameter at the squeezer being fixed before changing the radii of curvature of the mirrors. This has been changed to be fixed after changing the mirrors, and we see an improvement in the toroidal mirror case.
Attachment 1: updated_observed_squeezing_plot.png
updated_observed_squeezing_plot.png
  558   Tue Apr 22 11:04:31 2025 LiuUpdateInterferometer SimulationsTest Mass Thermal State Decoder Update with Interferometer Operation
Attachment 1: Update.pdf
Update.pdf
  564   Tue Apr 29 10:59:25 2025 LiuUpdateInterferometer SimulationsTest Mass Thermal State Decoder with Updated Comparison Cases
Attachment 1: Update.pdf
Update.pdf
  571   Tue May 6 13:07:34 2025 MichaelUpdateInterferometer SimulationsInitial Convergence Plots for Toroidal Mirrors Project
Attachment 1: Convergence_Plots_5_6_25.pdf
Convergence_Plots_5_6_25.pdf
Attachment 2: Convergence_Plots_5_6_25-1.pdf
Convergence_Plots_5_6_25-1.pdf
Attachment 3: aperture_num_points_convergence.png
aperture_num_points_convergence.png
  582   Mon May 26 23:24:33 2025 MichaelUpdateInterferometer SimulationsInitial Monte Carlo Simulations for Toroidal Mirrors Project
I've run an initial Monte Carlo simulation for statistical comparison of toroidal mirrors for the dual FROSTI TCS case. Below is the link to the slides.

slideshow

  587   Tue Jun 3 12:16:13 2025 Cynthia UpdateInterferometer SimulationsPoint absorber simulation on radially averaged profile
Attachment 1: update_6_3.pdf
update_6_3.pdf
  598   Tue Jun 24 13:47:58 2025 LiuUpdateInterferometer SimulationsAlternative FROSTI A# optimization approach
Alternative FROSTI A# optimization approach
Attachment 1: Update.pdf
Update.pdf
  616   Tue Jul 29 11:27:57 2025 LiuUpdateInterferometer SimulationsMulti-ring FROSTI optimization for A#
Attachment 1: Update.pdf
Update.pdf
Attachment 2: scene-export-temp.html
Attachment 3: scene-export-deformation.html
  622   Tue Aug 5 12:21:04 2025 LiuUpdateInterferometer SimulationsFROSTI A# optimization
A# multi-ring FROSTI optimization
Attachment 1: Update.pdf
Update.pdf
  625   Tue Aug 12 12:16:21 2025 LiuUpdateInterferometer SimulationsMulti-ring FROSTI optimization for A#
Multi-ring FROSTI optimization for A# with static polishing
Attachment 1: Update.pdf
Update.pdf
  628   Tue Aug 12 13:32:43 2025 LiuUpdateInterferometer Simulations 
Differences in Fused Silica parameters.
Attachment 1: Screenshot_2025-08-12_at_1.31.11_PM.png
Screenshot_2025-08-12_at_1.31.11_PM.png
Attachment 2: Screenshot_2025-08-12_at_1.31.17_PM.png
Screenshot_2025-08-12_at_1.31.17_PM.png
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