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* [Link to an err page](https://ldas-jobs.ligo-wa.caltech.edu/~gregory.ashton/bilby_review/bilby0.6.4-4436ec59-CLEAN_bilby_pipe0.3.9-82325e0-CLEAN/outdir_pp_test_4s_dynesty_distance-time_nact1/log_data_analysis/pp_test_4s_dynesty_distance-time_nact1_data0_0_analysis_H1L1_dynesty_par0.err) demonstrating phase marginalization is turned off (note that the phase-prior is not a Delta function as it would be when sampling with an analytically-phase-marginalized likelihood)
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* As of 14/02/2020, the set of injections is not complete. However, the `nact=1, n-parallel=1` case (top row of the table below) has completed 98/100 injections. The two failures were in the generation step and the two injections (`data2` and `data98`) have low SNR (network SNR < 5). As such, they are highly unlikely to change the overall PP test. Once the DAG is completed, these jobs will be resubmitted in order to finish the test.
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* ~~As of 14/02/2020, the set of injections is not complete. However, the `nact=1, n-parallel=1` case (top row of the table below) has completed 98/100 injections. The two failures were in the generation step and the two injections (`data2` and `data98`) have low SNR (network SNR < 5). As such, they are highly unlikely to change the overall PP test. Once the DAG is completed, these jobs will be resubmitted in order to finish the test.~~
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* 17/02/2020: Removed unnecessary nact=5 runs from the table below (still available on CIT [here](https://ldas-jobs.ligo-wa.caltech.edu/~gregory.ashton/bilby_review/bilby0.6.4-4436ec59-CLEAN_bilby_pipe0.3.9-82325e0-CLEAN/)).
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### PP tests and meta data
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| Setup | PP-test | Meta-data |
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| ------ | ------ | --------- |
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| `nact=1, walks=100, nlive=1000` | ![image](uploads/17e4344fdde4c0f4593109762fc39836/image.png) | ![image](uploads/cb1feea2875eef5b32f3de535c208dda/image.png) |
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| `nact=1, walks=100, nlive=1000, n-parallel=4`| ![image](uploads/b3970144eb593852a9e0dba697ae7078/image.png) | ![image](uploads/44b796fe4ab2a4631c915cde3aba0af1/image.png) |
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| `nact=5, walks=100, nlive=1000` | ![image](uploads/e52a5374855eef62b47760d345a7f3b7/image.png) | ![image](uploads/b8be92e3d2a8fe1698dd8bc3cb76c4f0/image.png) |
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| `nact=5, walks=100, nlive=1000, n-parallel=4`| ![image](uploads/0cb7927114effb12830cf0b50a12def7/image.png) | ![image](uploads/ccec6419d981e376cb2af5d895533fc5/image.png) |
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| `nact=1, walks=100, nlive=1000` | ![image](uploads/eb50de0ddb30ef40473d9e4d83da2024/image.png) | ![image](uploads/08dbf77ae99329bcee480369b10d215d/image.png)|
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| `nact=1, walks=100, nlive=1000, n-parallel=4`| ![image](uploads/fd1a5551eb46998cecc2a7f1e1a7bf89/image.png) | ![image](uploads/967b7125622942d4f80eae27326b46da/image.png) |
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### Corner plots for high-SNR events:
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* [Link to all plots](https://ldas-jobs.ligo-wa.caltech.edu/~gregory.ashton/bilby_review/bilby0.6.4-4436ec59-CLEAN_bilby_pipe0.3.9-82325e0-CLEAN/CORNER_PLOTS/)
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* The event below shows that for the highest SNR event in the PP test above, the posteriors do not look great. This is believed to be due to the "shredding" seen for high SNR events.
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| | par1 | merge |
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| ---- | ----- | ----- |
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| Intrinsic, data70, network SNR=20.8, | ![image](uploads/74b3c47512665cf180804e3cbd3f5148/image.png) | ![image](uploads/db470413088cb209692eec1b4d9cbad5/image.png)
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| Extrinsic, data70, network SNR=20.8, | ![image](uploads/9d3157b1aab6ac421fbb799c14047d11/image.png) | ![image](uploads/5d6bd9462d9f65afc91f4440fcdfb6dc/image.png) |
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| Spins, data70, network SNR=20.8 | ![image](uploads/692113fe6196b4c8943f5e1f194e241c/image.png) | ![image](uploads/bc47b239a6f226ae843d55a94425fec9/image.png)| |
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