1 | \section{Requirements to start full GRB observations}
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2 |
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3 | In the previous sessions we described the status and tasks we still plan to do
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4 | in order to complete the GRB Alarm System.
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5 | Parallel to our system also the different subsystems of the MAGIC telescope have
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6 | to implement and test strategies for the GRB survey.
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7 |
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8 | \par
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9 |
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10 | We strongly push the responsible persons of the Drive-, Camera-, AMC- and Central
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11 | Control subsystems to fulfill the criteria defined in~\cite{design}. We suggest
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12 | to make a one week shift where the experts meet and test the GRB
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13 | strategies. In order to avoid good observation time we suggest to make the shift
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14 | during a moon period. This shift should take place, in arrangement with the
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15 | different subsystem managers, before April this year. The time limitation is
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16 | based on the moment when SWIFT will start to work fully automatically and send
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17 | alerts in real time to the ground stations.
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18 | \par
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19 |
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20 | We present now a list of tasks which are crucial for the GRB survey:
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21 |
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22 | \par
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23 |
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24 | \begin{itemize}
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25 | \item {\bf Fast slewing:}\
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26 |
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27 | One of the most important issues is to implement and test the fast slewing capability
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28 | of the telescope. Especially the communication between CC and Cosy has still to be implemented for
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29 | the case of fast movements.
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30 |
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31 | \item {\bf Use of look-up tables:}\
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32 |
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33 | The use of look-up tables to correct the mirror focus during the movement to the GRB
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34 | coordinates is desirable. In the alert situation it is a waste of time if we would have to
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35 | close the camera lids and carry out the full laser adjustment (\~5~min) before starting the observation.
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36 | The reproducibility of the focus with the use of look-up tables has to be proven.
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37 | In case of using lookup-tables during the slewing, it is necessary to change the protocol between the AMC and CC.
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38 |
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39 | \item {\bf Behaviour of the camera during moon:}\
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40 |
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41 | It has to be checked what happens when during the pointing to a GRB position the telescope move over the
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42 | moon. It is excluded by the GRB Alert System that a burst closer than 30$\deg$ to the moon will be pointed.
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43 | However, it can happen that during the movement of the telescope the moon will pass the FOV.
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44 | In this case the HV of the PMTs will be reduced automatically and will not increase fast enough for the
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45 | GRB observation.
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46 |
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47 | \end{itemize}
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48 |
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