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  377   Sat May 22 03:50:18 2021 Cobus, MicheleRunsRun 00642021
open file : e127b_run0064.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Reference measurement

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 03:49:36 22-05-2021
run stop: 04:49:37 22-05-2021
_______________________________________________________________________________

ON Rates
Si_ON_bdt: 60 Hz
Xray_ON_bdt: 500 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 1.0e8
ESR current at injection: 3.0e7
ESR particles after decel.: 2.5e6
Target ON density: 1.0e14
  376   Sat May 22 02:50:40 2021 Cobus, MicheleRunsRun 00632021
open file : e127b_run0063.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Reference measurement

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 02:50:16 22-05-2021
run stop: 03:49:22 22-05-2021
_______________________________________________________________________________

ON Rates
Si_ON_bdt: 60 Hz
Xray_ON_bdt: 600 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 1.25e8
ESR current at injection: 3.1e7
ESR particles after decel.: 2.5e6
Target ON density: 1.0e14

Comment: Beam back to normal.
Si off rate over 120 at ~ 03:32
  375   Sat May 22 02:48:44 2021 Cobus, MicheleRunsRun 00622021
open file : e127b_run0062.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Reference measurement

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 02:41: 22-05-2021
run stop: 02:48:21 22-05-2021
_______________________________________________________________________________

ON Rates
Si_ON_bdt: 30 Hz
Xray_ON_bdt: 300 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 3.0e7
ESR current at injection: 1.07e7
ESR particles after decel.:
Target ON density: 9.8e13

Comment: Running with low intensity beam (factor of 4 below normal).
Operator working on problem.
  374   Sat May 22 01:53:23 2021 Cobus, MicheleRunsRun 00612021
open file : e127b_run0061.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Reference measurement

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 01:52:23 22-05-2021
run stop: 02:36:18 22-05-2021
_______________________________________________________________________________

ON Rates
Si_ON_bdt: 70 Hz
Xray_ON_bdt: 650 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 1.1e8
ESR current at injection: 3.7e7
ESR particles after decel.: 2.5e6
Target ON density: 9.8e13

Comment: Beam intensity dropped by factor of 4 near end of run.
  373   Sat May 22 00:53:06 2021 Cobus, MicheleRunsRun 00602021
open file : e127b_run0060.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Reference measurement

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 00:52:17 22-05-2021
run stop: 01:52:18 22-05-2021
_______________________________________________________________________________

ON Rates
Si_ON_bdt: 60-70 Hz
Xray_ON_bdt: 520-650 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 1.2e8 - 1.0e8
ESR current at injection: 3.0e7 - 4.0e7
ESR particles after decel.: 2.5e6 - 3.5e6
Target ON density: 9.8e13
  372   Fri May 21 22:01:32 2021 Cobus, Michele, JanRunsRun 00592021
open file : e127b_run0059.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Reference measurement

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 23:51:28 21-05-2021
run stop: 00:51:28 22-05-2021
_______________________________________________________________________________

ON Rates
Si_ON_bdt: 50 Hz
Xray_ON_bdt: 500 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 6.5e7
ESR current at injection: 2.3e7
ESR particles after decel.: 3e6
Target ON density: 9.8e13
  371   Fri May 21 21:02:53 2021 JanRunsRun 00582021
open file : e127b_run0058.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Illumination of the detector to see if the gain settings are ok.
Spectra look reasonable, rates are low.

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 21:01:58 21-05-2021
run stop: 22:00:05 21-05-2021
_______________________________________________________________________________

ON Rates
Si_bdt: 94 Hz
Xray_35: 581 Hz
Xray_90: 15 Hz
Xray_145: 123 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 7.4e7
ESR current at injection: 2.8e7
ESR particles after decel.: 2.5e6
Target ON density: 9.8e13
  370   Fri May 21 20:09:00 2021 JanRunsRun 00572021
open file : e127b_run0057.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Illumination of the detector to see if the gain settings are ok.
Spectra look reasonable, rates are low.

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 20:08:08 21-05-2021
run stop: 21:01:58 21-05-2021
_______________________________________________________________________________

ON Rates
Si_bdt: 73 Hz
Xray_35: 584 Hz
Xray_90: 20 Hz
Xray_145: 130 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 9e7
ESR current at injection: 2.5e7
ESR particles after decel.: 4e6
Target ON density: 9e13
  369   Fri May 21 19:36:46 2021 JanRunsRun 00562021
open file : e127b_run0056.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Illumination of the detector to see if the gain settings are ok.
Spectra look reasonable, rates are low.

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 19:19:52 21-05-2021
run stop: 20:08:08 21-05-2021

_______________________________________________________________________________

ON Rates
Si_bdt: 81 Hz
Xray_35: 514 Hz
Xray_90: 20 Hz
Xray_145: 127 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 340 uA


SIS particles before: 9e7
ESR current at injection: 4e7
ESR particles after decel.: 4e6
Target ON density: 9e13
  368   Fri May 21 19:20:54 2021 LaszloGeneralmisalignment in the pattern2021
for some reason the event number of the target ON and OFF was misaligned with the pattern.
This means that the last few runs (run53, run52...) measured not in the target on phase but one before (at 10 instead of 11). Therefore, with these 
runs we measured the TargetOFF phase instead TargetON (that is why the pg peak seem to disappear...)
  367   Fri May 21 15:20:54 2021 Rui-Jiu ChenRunsStop DAQ2021
Sergey is optimizing beam cycle. 
  366   Fri May 21 15:15:59 2021 JanRunsRun 00552021
open file : e127b_run0055.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Illumination of the detector to see if the gain settings are ok.
Spectra look reasonable, rates are low.

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 15:14:48 21-05-2021
run stop: 15:10:10 21-05-2021

_______________________________________________________________________________

ON Rates
Si_bdt: 21 Hz
Xray_35: 143 Hz
Xray_90: 7 Hz
Xray_145: 63 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 350 uA


SIS particles before:
ESR current at injection:
ESR particles after decel.:
Target ON density: 10e13
  365   Fri May 21 14:06:23 2021 JanRunsRun 00542021
open file : e127b_run0054.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Illumination of the detector to see if the gain settings are ok.
Spectra look reasonable, rates are low.

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 14:06:04 21-05-2021
run stop: 15:14:48 21-05-2021

_______________________________________________________________________________

ON Rates
Si_bdt: 31 Hz
Xray_35: 145 Hz
Xray_90: 10 Hz
Xray_145: 56 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 350 uA


SIS particles before:
ESR current at injection: 3e7
ESR particles after decel.: 5e6
Target ON density: 9e13
  364   Fri May 21 12:21:57 2021 JanRunsRun 00532021
open file : e127b_run0053.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Illumination of the detector to see if the gain settings are ok.
Spectra look reasonable, rates are low.

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 12:21:34 21-05-2021
run stop: 14:05:27 21-05-2021

_______________________________________________________________________________

ON Rates
Si_bdt: 15 Hz
Xray_35: 20 Hz
Xray_90: 200 Hz
Xray_145: 70 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 360 uA


SIS particles before:
ESR current at injection: 3e7
ESR particles after decel.: 5e6
Target ON density: 9e13
  363   Fri May 21 11:55:24 2021 JanDetectorsSI MSCF settings v12021
attached are the settings for all MSCFs.
Settings are optimized for DSSD only, not BaF!
Attachment 1: setting_test.1621590878
1621590878
Fri May 21 11:54:38 CEST 2021
e127pi:mrcc:mscf1:getGainCommon 5
e127pi:mrcc:mscf1:getShapingTimeCommon 3
e127pi:mrcc:mscf1:getThresholdCommon 8
e127pi:mrcc:mscf1:getPzCommon  100
e127pi:mrcc:mscf2:getGainCommon 5
e127pi:mrcc:mscf2:getShapingTimeCommon 3
e127pi:mrcc:mscf2:getThresholdCommon 8
e127pi:mrcc:mscf2:getPzCommon  100
e127pi:mrcc:mscf1:getGain1     4
e127pi:mrcc:mscf1:getGain2     4
e127pi:mrcc:mscf1:getGain3     4
e127pi:mrcc:mscf1:getGain4     4
e127pi:mrcc:mscf1:getShapingTime1 1
e127pi:mrcc:mscf1:getShapingTime2 1
e127pi:mrcc:mscf1:getShapingTime3 1
e127pi:mrcc:mscf1:getShapingTime4 1
e127pi:mrcc:mscf2:getGain1     9
e127pi:mrcc:mscf2:getGain2     4
e127pi:mrcc:mscf2:getGain3     8
e127pi:mrcc:mscf2:getGain4     8
e127pi:mrcc:mscf2:getShapingTime1 2
e127pi:mrcc:mscf2:getShapingTime2 2
e127pi:mrcc:mscf2:getShapingTime3 2
e127pi:mrcc:mscf2:getShapingTime4 2
e127pi:mrcc:mscf1:getThreshold1 4
e127pi:mrcc:mscf1:getThreshold2 4
e127pi:mrcc:mscf1:getThreshold3 4
e127pi:mrcc:mscf1:getThreshold4 1
e127pi:mrcc:mscf1:getThreshold5 4
e127pi:mrcc:mscf1:getThreshold6 4
e127pi:mrcc:mscf1:getThreshold7 4
e127pi:mrcc:mscf1:getThreshold8 4
e127pi:mrcc:mscf1:getThreshold9 4
e127pi:mrcc:mscf1:getThreshold10 5
e127pi:mrcc:mscf1:getThreshold11 5
e127pi:mrcc:mscf1:getThreshold12 5
e127pi:mrcc:mscf1:getThreshold13 3
e127pi:mrcc:mscf1:getThreshold14 4
e127pi:mrcc:mscf1:getThreshold15 5
e127pi:mrcc:mscf1:getThreshold16 5
e127pi:mrcc:mscf1:getPz1       128
e127pi:mrcc:mscf1:getPz2       128
e127pi:mrcc:mscf1:getPz3       128
e127pi:mrcc:mscf1:getPz4       128
e127pi:mrcc:mscf1:getPz5       128
e127pi:mrcc:mscf1:getPz6       128
e127pi:mrcc:mscf1:getPz7       128
e127pi:mrcc:mscf1:getPz8       128
e127pi:mrcc:mscf1:getPz9       128
e127pi:mrcc:mscf1:getPz10      128
e127pi:mrcc:mscf1:getPz11      128
e127pi:mrcc:mscf1:getPz12      128
e127pi:mrcc:mscf1:getPz13      128
e127pi:mrcc:mscf1:getPz14      128
e127pi:mrcc:mscf1:getPz15      128
e127pi:mrcc:mscf1:getPz16      128
e127pi:mrcc:mscf2:getThreshold1 255
e127pi:mrcc:mscf2:getThreshold2 255
e127pi:mrcc:mscf2:getThreshold3 0
e127pi:mrcc:mscf2:getThreshold4 255
e127pi:mrcc:mscf2:getThreshold5 255
e127pi:mrcc:mscf2:getThreshold6 255
e127pi:mrcc:mscf2:getThreshold7 255
e127pi:mrcc:mscf2:getThreshold8 255
e127pi:mrcc:mscf2:getThreshold9 255
e127pi:mrcc:mscf2:getThreshold10 255
e127pi:mrcc:mscf2:getThreshold11 0
e127pi:mrcc:mscf2:getThreshold12 255
e127pi:mrcc:mscf2:getThreshold13 255
e127pi:mrcc:mscf2:getThreshold14 255
e127pi:mrcc:mscf2:getThreshold15 0
e127pi:mrcc:mscf2:getThreshold16 255
e127pi:mrcc:mscf2:getPz1       128
e127pi:mrcc:mscf2:getPz2       128
e127pi:mrcc:mscf2:getPz3       87
e127pi:mrcc:mscf2:getPz4       255
e127pi:mrcc:mscf2:getPz5       255
e127pi:mrcc:mscf2:getPz6       255
e127pi:mrcc:mscf2:getPz7       255
e127pi:mrcc:mscf2:getPz8       255
e127pi:mrcc:mscf2:getPz9       255
e127pi:mrcc:mscf2:getPz10      255
e127pi:mrcc:mscf2:getPz11      85
e127pi:mrcc:mscf2:getPz12      255
e127pi:mrcc:mscf2:getPz13      255
e127pi:mrcc:mscf2:getPz14      255
e127pi:mrcc:mscf2:getPz15      85
e127pi:mrcc:mscf2:getPz16      255
e127pi:mrcc:mscf1:getSingleChMode 0
e127pi:mrcc:mscf2:getSingleChMode 0
e127pi:mrcc:mscf1:getRcMode    1
e127pi:mrcc:mscf2:getRcMode    1
e127pi:mrcc:mscf1:getAutoPZ    0
e127pi:mrcc:mscf2:getAutoPZ    0
e127pi:mrcc:mscf1:getMultiplicityHi 8
e127pi:mrcc:mscf2:getMultiplicityHi 8
e127pi:mrcc:mscf1:getMultiplicityLo 4
e127pi:mrcc:mscf2:getMultiplicityLo 4
e127pi:mrcc:mscf1:getSumTrgThresh 10
e127pi:mrcc:mscf2:getSumTrgThresh 10
e127pi:mrcc:mscf1:getBlrOn     1
e127pi:mrcc:mscf2:getBlrOn     1
e127pi:mrcc:mscf1:getCoincTime 128
e127pi:mrcc:mscf2:getCoincTime 128
e127pi:mrcc:mscf1:getThreshOffset 100
e127pi:mrcc:mscf2:getThreshOffset 100
e127pi:mrcc:mscf1:getShaperOffset 100
e127pi:mrcc:mscf2:getShaperOffset 100
e127pi:mrcc:mscf1:getBlrThresh 25
e127pi:mrcc:mscf2:getBlrThresh 25
e127pi:mrcc:mscf1:getECLDelay  0
e127pi:mrcc:mscf2:getECLDelay  0
atpnuc006:mrcc:mscf1:getGainCommon 15
atpnuc006:mrcc:mscf1:getShapingTimeCommon 3
atpnuc006:mrcc:mscf1:getThresholdCommon 6
atpnuc006:mrcc:mscf1:getPzCommon 6
atpnuc006:mrcc:mscf1:getGain1  6
atpnuc006:mrcc:mscf1:getGain2  6
atpnuc006:mrcc:mscf1:getGain3  6
atpnuc006:mrcc:mscf1:getGain4  6
atpnuc006:mrcc:mscf1:getShapingTime1 3
atpnuc006:mrcc:mscf1:getShapingTime2 3
atpnuc006:mrcc:mscf1:getShapingTime3 3
atpnuc006:mrcc:mscf1:getShapingTime4 3
atpnuc006:mrcc:mscf1:getThreshold1 6
atpnuc006:mrcc:mscf1:getThreshold2 6
atpnuc006:mrcc:mscf1:getThreshold3 6
atpnuc006:mrcc:mscf1:getThreshold4 6
atpnuc006:mrcc:mscf1:getThreshold5 6
atpnuc006:mrcc:mscf1:getThreshold6 6
atpnuc006:mrcc:mscf1:getThreshold7 6
atpnuc006:mrcc:mscf1:getThreshold8 6
atpnuc006:mrcc:mscf1:getThreshold9 6
atpnuc006:mrcc:mscf1:getThreshold10 6
atpnuc006:mrcc:mscf1:getThreshold11 6
atpnuc006:mrcc:mscf1:getThreshold12 6
atpnuc006:mrcc:mscf1:getThreshold13 6
atpnuc006:mrcc:mscf1:getThreshold14 6
atpnuc006:mrcc:mscf1:getThreshold15 6
atpnuc006:mrcc:mscf1:getThreshold16 6
atpnuc006:mrcc:mscf1:getPz1    6
atpnuc006:mrcc:mscf1:getPz2    3
atpnuc006:mrcc:mscf1:getPz3    3
atpnuc006:mrcc:mscf1:getPz4    1
atpnuc006:mrcc:mscf1:getPz5    35
atpnuc006:mrcc:mscf1:getPz6    35
atpnuc006:mrcc:mscf1:getPz7    35
atpnuc006:mrcc:mscf1:getPz8    35
atpnuc006:mrcc:mscf1:getPz9    35
atpnuc006:mrcc:mscf1:getPz10   35
atpnuc006:mrcc:mscf1:getPz11   6
atpnuc006:mrcc:mscf1:getPz12   6
atpnuc006:mrcc:mscf1:getPz13   6
atpnuc006:mrcc:mscf1:getPz14   6
atpnuc006:mrcc:mscf1:getPz15   6
atpnuc006:mrcc:mscf1:getPz16   6
atpnuc006:mrcc:mscf1:getSingleChMode 0
atpnuc006:mrcc:mscf1:getRcMode 1
atpnuc006:mrcc:mscf1:getAutoPZ 0
atpnuc006:mrcc:mscf1:getMultiplicityHi 8
atpnuc006:mrcc:mscf1:getMultiplicityLo 1
atpnuc006:mrcc:mscf1:getSumTrgThresh 100
atpnuc006:mrcc:mscf1:getBlrOn  0
atpnuc006:mrcc:mscf1:getCoincTime 100
atpnuc006:mrcc:mscf1:getThreshOffset 1
atpnuc006:mrcc:mscf1:getShaperOffset 100
atpnuc006:mrcc:mscf1:getBlrThresh 10
atpnuc006:mrcc:mscf1:getECLDelay 0
  362   Fri May 21 11:27:31 2021 Sophia, Mario, LaszloRunsRun 00522021
open file : e127b_run0052.lmd

beam: 124Xe54+
energy: 7 MeV/u
cooler voltage:

purpose:
Illumination of the detector to see if the gain settings are ok.
Spectra look reasonable, rates are low.

Detector position (Si): -25 mm
GE01DD1IG position (Scraper): out/not used

run start: 11:23:58 21-05-2021
run stop: 12:13:53 21-05-2021

_______________________________________________________________________________

ON Rates
Si_bdt: 15 Hz
Xray_35: 20 Hz
Xray_90: 200 Hz
Xray_145: 70 Hz
BaF_OR: ---

Si voltage: 100.0 V
Si leakage current: 360 uA


SIS particles before:
ESR current at injection: 3e7
ESR particles after decel.: 5e6
Target ON density: 9e13
  361   Fri May 21 10:00:51 2021 JanAcceleratortarget bump2021
The target overlap was optimized on xray and si rates.
The setting now is -10mm in SC9
  360   Fri May 21 01:17:37 2021 LaszloAnalysissimple analysis code2021
//a simple code (template) for offline analysis
//made by Laszlo, serves as a simple demonstration for enthusiastic shifters
//it creates a "no double counting Si 2D pos" histo
//usage:
//
//save the file as eg. "simple_code.c"
//root -l
//.L simple_code.c++
//run()
//when counter finished: ".q"

#define INPUT1 "input.root"//first unpack the lmd, then give the path of the unpacked .root file.

#define OUTPUT "./"//folder of the output. minimum input: "./"

#define ROOT_NAME "dummy.root"//name of the output

#include <cmath>
#include <string>
#include <sstream>
#include <cstdlib>
#include <cstdio>
#include <ctime>
#include <fstream>
#include <iostream>
#include <stdint.h>
#include "TROOT.h"
#include "TAttText.h"
#include "TAxis.h"
#include "TCanvas.h"
#include "TChain.h"
#include "TCut.h"
#include "TF1.h"
#include "TFile.h"
#include "TGraph.h"
#include "TGraphAsymmErrors.h"
#include "TGraphErrors.h"
#include "TH1.h"
#include "TH2.h"
#include "THistPainter.h"
#include "TKey.h"
#include "TLatex.h"
#include "TLegend.h"
#include "TMath.h"
#include "TMatrixD.h"
#include "TMinuit.h"
#include "TMultiGraph.h"
#include "TNtuple.h"
#include "TPave.h"
#include "TPaveText.h"
#include "TPoint.h"
#include "TRandom.h"
#include "TRint.h"
#include "TStyle.h"
#include "TString.h"
#include "TTree.h"
#include "TH1F.h"
#include "TH2F.h"
#include "TSystem.h"
#include "TProfile.h"
#include "TVirtualFitter.h"
#include "TCanvas.h"
#include "TLegend.h"
#include "TColor.h"
#include <time.h>

using namespace std;

inline bool exists_test0 (const std::string& name) {
    ifstream f(name.c_str());
    return f.good();
}

///////////////////////////////////////////////////////////////////////////////////////////////

void loop(TChain *fChain){
	
	//setting pedestal values
	int PEDESTAL_LOW=400;
	int PEDESTAL_HIGH=8000;
	

	//this normally should be in a separate header, branches are defined.
	UInt_t          trigger;
	fChain->SetBranchAddress("TRIGGER",&trigger);
	UInt_t          E_SiY[17];
	UInt_t          E_SiX[17];
	UInt_t          t_SiY[17];
	UInt_t          t_SiX[17];
	for(int a=1;a<17;a++){
		fChain->SetBranchAddress(Form("E_SiY%d",a),&E_SiY[a]);
		fChain->SetBranchAddress(Form("E_SiX%d",a),&E_SiX[a]);
		fChain->SetBranchAddress(Form("t_SiY%d",a),&t_SiY[a]);
		fChain->SetBranchAddress(Form("t_SiX%d",a),&t_SiX[a]);
	}

	//creating histos
	TH2D *h_pos_si_xy=new TH2D("h_pos_si_xy", "h_pos_si_xy",16,0.5,16.5,16,0.5,16.5);

	//creating and initializing some variables used in the event loop (for "no double counting")
	int r_pos_x=0,r_pos_y=0;
	int dc_Ex_max=-999;
	int dc_Ey_max=-999;
	
	
	Long64_t nentries = fChain->GetEntries();
	Long64_t nbytes = 0;

	//starting the entry loop
	for (Long64_t i=0; i<nentries;i++){

		nbytes += fChain->GetEntry(i);
		//event countdown
		if ((float(i)/100000.)==int(i/100000)){cout << "event: " << i << " \tof " << nentries << endl;}


		if(trigger==1){//trigger 1 = TargetON

			dc_Ex_max=-999;
			dc_Ey_max=-999;

			for(int i_x=1;i_x<17;i_x++){
				for(int i_y=1;i_y<17;i_y++){

					if( ((int)t_SiX[i_x])>0 && ((int)t_SiY[i_y])>0){
						if( PEDESTAL_LOW<((int)E_SiX[i_x]) && PEDESTAL_HIGH>((int)E_SiX[i_x]) &&
						    PEDESTAL_LOW<((int)E_SiY[i_y]) && PEDESTAL_HIGH>((int)E_SiY[i_y])){

							//assign the hit to StripX and StripY where the most energy is deposited (rel. Ecalibration is needed, but roughly ok)
							if(dc_Ex_max<((int)E_SiX[i_x]) && dc_Ey_max<((int)E_SiY[i_y])){
								r_pos_x=i_x;
								r_pos_y=i_y;
								dc_Ex_max=E_SiX[i_x];
								dc_Ey_max=E_SiY[i_y];
							}
						
						}
					}
					
				}
			}

			//Filling pos. histo
			if(dc_Ex_max!=-999 && dc_Ey_max!=-999){h_pos_si_xy	-> Fill(r_pos_x,r_pos_y);}
			
		}//trigger==1

	}//entry loop
	

	//writing out the root output file
	TFile *graphfile = TFile::Open((OUTPUT + (string)("") + ROOT_NAME).c_str(), "RECREATE");
	graphfile -> mkdir("map");
	graphfile -> cd("map");
	h_pos_si_xy -> Write();
	graphfile -> Close();

}//loop

//////////////////////////////////////////////////////////////////////////////////////////////////////////////

void run(){

    const char *command = new char[1000];

    char filename[100];
    TChain *fChain = new TChain("h101");

    sprintf(filename,INPUT1);

    if(exists_test0(INPUT1) && exists_test0(OUTPUT)){

    cout<<"\033[0;37m//loading run: "<<filename << "\033[0m" <<endl;
    fChain->Add(filename);

    loop(fChain);
    }
    else{cout<<"\033[0;31mError 404: non-existing INPUT1 or OUTPUT file!\033[0m" <<endl;}

	command = "rm  *.so";
	gSystem->Exec(command);
	command = "rm  *.d";
	gSystem->Exec(command);

	return;
}

int main(){
    run();
    return(0);
}
  359   Thu May 20 18:13:55 2021 LaszloGeneralVacuum change while Si movement2021
The vacuum remained in the E-10 range after moving the dsssd. The oscillation in the vacuum.values are due to the 
magnets ramping up and down
Attachment 1: IMG_20210520_174632.jpg
IMG_20210520_174632.jpg
  358   Thu May 20 18:11:24 2021 LaszloGeneralTouching the beam with Dsssd - current change2021
Attachment 1: IMG_20210520_180857.jpg
IMG_20210520_180857.jpg
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