diamant electronics upgrade at atomki ferenc nagy atomki, hungary

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DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

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Page 1: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

DIAMANT Electronics Upgrade at ATOMKI

Ferenc Nagy

ATOMKI, HUNGARY

Page 2: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

The DIAMANT

Light charged particle detector

Particle discrimination

Nearly 4 solid angle

80 channels (analog)

Page 3: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

The DIAMANT

CsI detectors mounted on the Flexi-Board (EXOGAM)

Folded-up Flexi-Board

CsI(Tl) + light guide + PIN-PD

“Like a diamond”

Page 4: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

DIAMANT Upgrade

Mechanical

Analog Front-end

PIN-PD => APD (better S/N)

Digital Signal Processing (digital implementation of former electronics)

Page 5: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

Particle Discrimination Concept

Particle dependent rise time

p

CsI crystal PD Charge sensitive preamp

Preamp signals for different particle types:

NIM. A458(2001)759

Page 6: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

Ballistic Deficit Method

Energy signal should be rise time independent

Particle signal should be rise time dependent

Slow Filter

Fast Filter

Preamp Signal

E (Energy signal)

P (Particle signal)

Page 7: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

Proposed DIAMANT DSP (1 Ch.)

DLS(10 μs)

MA(5 μs)

PD

DLS(1.2 μs)

MA(0.6 μs)

PD

ADC

S

RTDThreshold

Preamp Signal Event

Slow Shaping

Fast Shaping

Peak detector enable

DLS: Delay Line Shaper

MA: Moving Averager

PD: Peak Detector

TD: Threshold Detector

E

P

Event (128 bits)

PTimestamp StatusE

50 MHz

Page 8: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

Signal Shapes

Time (a.u.)

Fil

tere

d S

ign

als

(a.u

.)

Time (a.u.)

Fil

tere

d S

ign

als

(a.u

.)

Response for fast detector signal Response for slow detector signal

EP

EP

ballisticdeficit

10 μs

1.2 μs

Page 9: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

Particle-Energy Diagram

0 20 40 60 80 1000

20

40

60

80

100 Rise Time 1 Rise Time 2 Rise Time 3

P [

a.u

.]

E [a.u.]

particles

Protons Rays (CsI)

Rays (PIN-diode)

Normalization

An example: Particle ID = C – P / E

0 20 40 60 80 1000

10

20

30

40

50

60

70

80

90

100

110

Rise Time 1 Rise Time 2 Rise Time 3

P/E

[a.

u.]

E [a.u.]

Page 10: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

Feasibility Test of the DSP

ATOMKI DSP CARD

1 channel tested

CsI(Tl) + PIN-PD

CsI(Tl) + APD

128-bit events

list mode DAQ

CsI(Tl)PIN-PD/APD

Charge sensitive preamp

ATOMKIDSP Card

Ch1

Ch2

Ch3

Ch4

DAQ PC (event list)

1G Ethernet Event (128 bits)

PTimestamp StatusE

Page 11: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

ATOMKI DSP Card

Fro

nt-e

nd 4 Ch ADC

Virtex4

Eth

erne

t P

HY

Gigabit EthernetNetworkDSP

MAC

Event

Analog Inputs

Page 12: DIAMANT Electronics Upgrade at ATOMKI Ferenc Nagy ATOMKI, HUNGARY

Experimental Result

EnergyParticle ID

alphas

protons

gammas

Thank you for your attention!