src
SimMuon
CSCDigitizer
src
CSCCrosstalkGenerator.h
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#ifndef MU_END_CROSSTALK_GENERATOR_H
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#define MU_END_CROSSTALK_GENERATOR_H
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class
CSCAnalogSignal
;
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class
CSCCrosstalkGenerator
{
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public
:
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CSCCrosstalkGenerator
() :
theCrosstalk
(0),
theDelay
(0),
theResistiveFraction
(0.){};
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void
setParameters
(
float
crosstalk,
float
delay
,
float
resistiveFraction) {
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theCrosstalk
= crosstalk;
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theDelay
=
delay
;
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theResistiveFraction
= resistiveFraction;
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}
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CSCAnalogSignal
getCrosstalk
(
const
CSCAnalogSignal
&inputSignal)
const
;
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float
ratio
(
const
CSCAnalogSignal
&crosstalkSignal,
const
CSCAnalogSignal
&signal)
const
;
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private
:
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float
theCrosstalk
;
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float
theDelay
;
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// what fraction of the neighboring signal goes unaltered onto this element
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float
theResistiveFraction
;
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};
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#endif
CSCCrosstalkGenerator::getCrosstalk
CSCAnalogSignal getCrosstalk(const CSCAnalogSignal &inputSignal) const
Definition:
CSCCrosstalkGenerator.cc:4
CSCCrosstalkGenerator::CSCCrosstalkGenerator
CSCCrosstalkGenerator()
Definition:
CSCCrosstalkGenerator.h:21
CSCCrosstalkGenerator
Definition:
CSCCrosstalkGenerator.h:19
CSCCrosstalkGenerator::ratio
float ratio(const CSCAnalogSignal &crosstalkSignal, const CSCAnalogSignal &signal) const
analyzes the ratio between two signals.
Definition:
CSCCrosstalkGenerator.cc:18
CSCCrosstalkGenerator::setParameters
void setParameters(float crosstalk, float delay, float resistiveFraction)
Definition:
CSCCrosstalkGenerator.h:23
CSCCrosstalkGenerator::theCrosstalk
float theCrosstalk
Definition:
CSCCrosstalkGenerator.h:35
CSCCrosstalkGenerator::theResistiveFraction
float theResistiveFraction
Definition:
CSCCrosstalkGenerator.h:38
CSCCrosstalkGenerator::theDelay
float theDelay
Definition:
CSCCrosstalkGenerator.h:36
phase2TrackerDigitizer_cfi.delay
delay
Definition:
phase2TrackerDigitizer_cfi.py:48
CSCAnalogSignal
Definition:
CSCAnalogSignal.h:32
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