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AIDA
GELINA
BRIKEN
nToF
CRIB
ISOLDE
CIRCE
nTOFCapture
DESPEC
DTAS
EDI_PSA
179Ta
CARME
StellarModelling
DCF
K40
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AIDA |
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Message ID: 583
Entry time: Mon May 22 08:29:26 2017
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Author: |
TD |
Subject: |
Offline analysis R25_12 to R25_22 |
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Offline analysis of AIDA data files R25_12 to R25_22 using MIDASsort
Note
- no calibration (raw ADC data only)
- no thresholds
- no clustering
- events delimited by > 2us time difference between successive ADC data words
- HEC = high energy channel = 20GeV FSR range for high energy implants
- LEC = low energy channel = 20MeV FSR range for decays (and pulser)
Attachment 1-4
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s2000-s2005 per DSSSD LEC m_lec_p versus m_lec_n
following spectra require 0 < m_lec_p < 8 and 0 < m_lec_n < 8
all combinations of x & y plotted
s2010-s2015 per DSSSD LEC x versus y
s2020-s2025 per DSSSD LEC E_p versus E_n (20keV/ch nominal)
s2030-s2035 per DSSSD LEC-LEC time (2.56us/channel)
Attachment 5-8
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s2000-s2005 per DSSSD LEC m_hec_p versus m_hec_n
following spectra require 0 < m_hec_p < 8 and 0 < m_hec_n < 8
all combinations of x & y plotted
s2010-s2015 per DSSSD HEC x versus y
s2020-s2025 per DSSSD HEC E_p versus E_n (20MeV/channel nominal)
s2030-s2035 per DSSSD HEC-HEC time (2.56us/channel)
Attachment 9-11
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s2200-s2205 per pixel, per DSSSD HEC-LEC time (2.56us/channel)
Attachment 12-14
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s2210-s2215 per pixel, per DSSSD HEC-LEC time (163.840us/channel)
Attachments 15-17
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s2300-s2305 per DSSSD HEC Energy versus HEC-LEC time (20MeV/channel, 163.840us/channel)
s2400-s2405 per DSSSD LEC Energy versus HEC-LEC time (20keV/channel, 163.840us/channel)
s2500-s2505 per DSSSD x & y strips versus HEC-LEC time (163.840us/channel)
Attachment 18
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Projection s2503 y-strips 0-60 -> HEC-LEC time 163.804us/channel |
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$variables
dsssd_a( 1 ) = 17
dsssd_a( 2 ) = 18
dsssd_a( 3 ) = 9
dsssd_a( 4 ) = 10
dsssd_a( 5 ) = 1
dsssd_a( 6 ) = 2
dsssd_b( 1 ) = 20
dsssd_b( 2 ) = 19
dsssd_b( 3 ) = 12
dsssd_b( 4 ) = 11
dsssd_b( 5 ) = 4
dsssd_b( 6 ) = 3
dsssd_c( 1 ) = 22
dsssd_c( 2 ) = 21
dsssd_c( 3 ) = 14
dsssd_c( 4 ) = 13
dsssd_c( 5 ) = 6
dsssd_c( 6 ) = 5
dsssd_d( 1 ) = 23
dsssd_d( 2 ) = 24
dsssd_d( 3 ) = 15
dsssd_d( 4 ) = 16
dsssd_d( 5 ) = 7
dsssd_d( 6 ) = 8
offset = 4096*0.0
gain = 4096*1.0
c = 8*1.0
w = 32*0
$[end]
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