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ntegration of a Clover Detector with t ntegration of a Clover Detector with t ecessary electronics and computer progr ecessary electronics and computer progr to utilize the ADDBACK method to utilize the ADDBACK method An SP496 and Capstone Research Project Midshipman First Class Jack Hathaway Advised by Assistant Professor Daryl Hartley, Ph.D.
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Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Dec 29, 2015

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Page 1: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Integration of a Clover Detector with the Integration of a Clover Detector with the necessary electronics and computer program necessary electronics and computer program

to utilize the ADDBACK methodto utilize the ADDBACK method

An SP496 and Capstone Research Project

Midshipman First Class Jack Hathaway

Advised byAssistant Professor Daryl Hartley, Ph.D.

Page 2: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Co60

Energy

Unstable Co60

1173 γ-ray

1332 γ-ray

Stable Ni60

Time

Emitted Beta Particle

Emitted Gamma rays

Unstable Ni60Beta Decay

Page 3: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

So how do we ‘see’ all of this happening? What kind of detector do we need?

Page 4: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

When my advisor was a student…

Bell bottoms were cool…

The Beetles first appeared on stage…

…and nuclear physicists used Sodium Iodide (NaI) Detectors…

Page 5: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

High Density = Great Efficiency

Poor Energy Resolution from detection system

Page 6: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

While I was busy watching Transformers…

Nuclear physicists developed Germanium (Ge) Crystal Detectors…

Page 7: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Low Density = Low Efficiency

Great Energy Resolution from detection system

Page 8: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Low Density = Low Efficiency

Great Energy Resolution from detection system

Can we have the best of both?

High efficiency

and

good resolution?

Page 9: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Clover detectorClover detectorAn array of four Germanium Crystals, physically and electronically independent

Page 10: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Clover Detector

Source Location

25 cm

Page 11: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Anode

Cathode

Page 12: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

The Basic Electronics:

Spec AmpKMAX

Program

Channel Number

NumberOf

Counts

Crystal 1

Channel Number

NumberOf

Counts

Crystal 3

Channel Number

NumberOf

Counts

Crystal 2

Channel Number

NumberOf

Counts

Crystal 4

Channel Number

Crystal 1 0

Crystal 2 600

Crystal 3 0

Crystal 4 0

ADC

The KMAX program displayed 5 counts, The KMAX program displayed 5 counts, but there were only 3 Events….but there were only 3 Events….

Were there 5 gamma rays or only 3?Were there 5 gamma rays or only 3?

Page 13: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Mission:Utilize the Clover Detector as an array rather

than four single detectors to give the researcher the best data possible

Solution:Integrate the Clover Detector into the necessary electronics and create a

computer program to utilize the ADDBACK Method

Page 14: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

What is ADDBACK?

Addback Flash created by Dave Campbell, Florida State University

Page 15: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Coding ADDBACKComputer Input

Channel Number

Crystal 1 0

Crystal 2 600

Crystal 3 0

Crystal 4 0

Define an event

Step 1:

Event 1

Each event corresponds to a single gamma ray interacting with the detector.

One Gamma ray = One Event = One Coincidence Window

Page 16: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Output group 1

Output group 2

Fast AmpLogic ‘OR’

Gate

Spec Amp

Analog to Digital Converter

1 2 3 4

Inputs

Output to Computer

Step 2: Creating an electronic Coincidence Window

Event 1 Channel Number

Crystal 1 600

Crystal 2 0

Crystal 3 400

Crystal 4 200

ADC Gate

GateDelay

Generator

Page 17: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Step 3: Applying calibrations

Event 1 Channel Number

Crystal 1 600

Crystal 2 0

Crystal 3 400

Crystal 4 200

Channel Number

Crystal 2

Channel Number

Crystal 1Counts

Channel Number

Crystal 3

Channel Number

Crystal 4

Counts

Counts

Counts

Energy

Energy

Energy

Energy

Page 18: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Step 4: Executing ADDBACK

ADDBACK = 560 + 0 + 412 + 201 = 1173

Event 1 Channel Number Energy

Crystal 1 600 560

Crystal 2 0 0

Crystal 3 400 412

Crystal 4 200 201

Event 1 1173

Event 2 1332

Event 3 1173

Event 4 997

TotalsADDBACK

Event 1 560, 412, 201

Event 2 1332

Event 3 1173

Event 4 746, 251

Separate Crystals

Event 2 Channel Number Energy

Crystal 1 1350 1332

Crystal 2 0 0

Crystal 3 0 0

Crystal 4 0 0

1332 + 0 + 0 + 0 = 1332

Event 3 Channel Number Energy

Crystal 1 0 0

Crystal 2 0 0

Crystal 3 1150 1173

Crystal 4 0 0

0 + 0 + 1173 + 0 = 1173

Event 4 Channel Number Energy

Crystal 1 0 0

Crystal 2 800 746

Crystal 3 0 0

Crystal 4 210 251

0 + 746 + 0 + 251 = 997

3:1 ratio (actual 25%) 2:5 ratio (actual 14%)Peak toBackground

Page 19: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Results

Page 20: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Results

- Longer Runs

- Proton Resonance

- Polarization

Future Goals

Page 21: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

AcknowledgementsAcknowledgements

Advisor: Assistant Professor Daryl Hartley, Ph.D.

Witty quips and technical advice: Professor Jeff Vanhoy, Ph.D.

Stunts and Modeling: MIDN 1/C Drew Barker, roommate

Page 22: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.
Page 23: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

125 250 400 650

Scratch-work slide

Background

Detector pictures?

Clover Picture

Page 24: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

The Basics:

Spec Amp ADCKMAX

Program

Channel Number

NumberOf

Counts

Crystal 1

Channel Number

NumberOf

Counts

Crystal 3

Channel Number

NumberOf

Counts

Crystal 2

Channel Number

NumberOf

Counts

Crystal 4

Coding ADDBACK

Event 1Event 1Event 2Event 2Event 3Event 3

1 Count

1 Count 1 Count

1 Count2 CountsThe KMAX program displayed 5 counts, The KMAX program displayed 5 counts,

but there were only 3 Events….but there were only 3 Events….

Were there 5 gamma rays or only 3?Were there 5 gamma rays or only 3?

Page 25: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Pre-Amp

Double outputs, same signal from each crystal

Interior to the Clover Detector

Page 26: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

What is a Coincidence Window?

Ekg thingermabober of science!

Input

32 microseconds

ADCGate

GateDelay

Generator

Output

Page 27: Integration of a Clover Detector with the necessary electronics and computer program to utilize the ADDBACK method An SP496 and Capstone Research Project.

Question slide on the PMT NaI detectors