Last modified by kutnyakd on 2025/04/03 15:34

From version 3.1
edited by kutnyakd
on 2023/10/06 17:37
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To version 1.1
edited by sndueste
on 2023/09/28 16:32
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1 -XWiki.kutnyakd
1 +XWiki.sndueste
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2 2  
3 3  {{toc/}}
4 4  
5 -\\
6 -
7 -\\
8 -
9 -== how to find the public data in the gamma portal ==
10 -
11 -\\
12 -
13 -[[image:attach:image2023-9-28_16-42-5.png||height="250"]]
14 -
15 -\\
16 -
17 -\\
18 -
19 19  == FL21 ==
20 20  
21 21  === **Data:  ** ===
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144 144  ===
145 145  (% style="color: rgb(51,51,51);" %)** Description:**(%%) ===
146 146  
147 -(% style="color: rgb(51,51,51);" %) Experiment: time-resolved momentum microscopy(%%)
133 +(% style="color: rgb(51,51,51);" %) Experiment: HEXTOF ????(%%)
148 148  (% style="color: rgb(51,51,51);" %) Beamline: PG2(%%)
149 149  (% style="color: rgb(51,51,51);" %) Instrument: HEXTOF(%%)
150 -(% style="color: rgb(51,51,51);" %) Samples: Chessy and Gd/W(110)(%%)
151 -\\
136 +(% style="color: rgb(51,51,51);" %) Sample: ????(%%)
137 +\\(% style="color: rgb(51,51,51);" %) .... to be filled in ....
152 152  
153 -Run 44762 was measured with a Hg lamp on the test "Chessy" sample to calibrate FoV in µm in the PEEM mode.
154 -
155 -Runs 44798 and 44799 - optical spot profile measured in PEEM mode under the same settings as run 44762
156 -with two different attenuations of the pump laser to determine the spot size of the pump laser.
157 -This is needed to estimate pump fluence during trMM runs (44824, 44825, 44826 and 44827) using values
158 -of I,,0,, monitor of the pump laser.
159 -
160 -Runs 44797 - measured with 36.2 eV in k-mode with manually variable sample bias from 28 to 32V by 1 V 
161 -every 2000 shots to calibrate the energy scale.
162 -This energy calibration has to be used for trMM data.
163 -
164 -Runs 44824, 44825, 44826 and 44827 were measured (% style="color: rgb(51,51,51);" %)from Gd/W(110) sample which was pumped with
165 -a 1030 nm s-polarized optical laser and probed with 36.2 eV for time-resolved momentum microscopy (trARPES)
166 -varying the time delay between the optical laser and FEL. The time delay was changed in ZigZag manner repeatedly
167 -from 1462.00 ps to 1464.85 ps with 200 steps and 1 sec waiting time at each step.
168 -
169 169  === **suggested reading:** ===
170 170  
171 171  1. D. Kutnyakhov, R.P. Xian, M. Dendzik, M. Heber, F. Pressacco, S.Y.  Agustsson, L. Wenthaus, H. Meyer, S. Gieschen, G. Mercurio, A. Benz, K. Bühlman, S. Däster, R. Gort, D. Curcio, K. Volckaert, M. Bianchi, Ch. Sanders, J A. Miwa, S. Ulstrup, A. Oelsner, C. Tusche, Y.-J. Chen, D. Vasilyev, K. Medjanik, G. Brenner, S. Dziarzhytski, H. Redlin, B. Manschwetus, S. Dong, J. Hauer, L. Rettig, F. Diekmann, K. Rossnagel, J. Demsar, H.-J. Elmers, Ph. Hofmann, R. Ernstorfer, G. Schönhense, Y. Acremann, and W. Wurth,
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172 172  //Time- and momentum-resolved photoemission studies using time-of-flight momentum microscopy at a free-electron laser//,
173 173  Rev. Sci. Instrum. **91**, 013109 (2020);
174 174  [[https:~~/~~/doi.org/10.1063/1.5118777>>url:https://doi.org/10.1063/1.5118777||rel="nofollow" shape="rect" class="external-link"]]
175 -1. Single Event Data Frame Processor used as a backend to handle photoelectron resolved datastreams
176 -[[https:~~/~~/github.com/OpenCOMPES/sed>>url:https://github.com/OpenCOMPES/sed||shape="rect"]]
177 177  
178 178  \\
179 179  
180 180  \\
149 +
150 +== how to find the public data in the gamma portal ==
151 +
152 +\\
153 +
154 +[[image:attach:image2023-4-6_11-0-45.png||height="250"]]
155 +
156 +\\
157 +
158 +\\
Example_analysis_THz_streaking_run41519.pdf
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PG1_data_analysis_Si_example.ipynb
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PG1_data_analysis_Si_example.pdf
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PG1_data_analysis_Si_example_FAB.ipynb
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PG1_data_analysis_Si_example_FAB.pdf
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