Diamond membrane detectors - Indico · Applications for diamond detectors •Beam instrumentation...

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Diamond membrane detectorsGSI, 7.2.2019

Miha Červ, CIVIDEC Instrumentation

CVD diamonds

• CVD = Chemical Vapor Deposition

• Little impurities

• High temperature, low pressure

• Ionized hydrogen, methane gas

• 0.1 μm to 10 μm per hour

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Why diamond detectors

• Radiation resistant

• Low noise

• Low leakage current

• No cooling required

• Fast response – sub nanosecond

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Applications for diamond detectors

• Beam instrumentation and spectroscopy

• Neutron spectroscopy and flux monitoring

• X-ray and gamma beam position and beam intensity monitoring

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pCVD and sCVD

• Polycrystalline (pCVD)

– Cheaper per area

– Can be up to 75 cm2

• Single crystal (sCVD)

– Smaller sizes – up to 8mm * 8mm

– For spectroscopy, particle recognition

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pCVD diamond detector

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Ionization

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Particle detection

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Drift velocity

• Electrons and holes have different mobilities

• Holes have higher mobility

• Shockley-Ramo theorem :

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𝐼 =𝑞 ∗ 𝑣

𝑑

-𝑣

𝑑

𝑞

--

- -

Electron drift

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Hole drift

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Amplifiers

• Current amplifiers

– Counting

– Pulse shape analysis

• Charge amplifiers

– Spectroscopy

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Current amplifier

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Charge amplifier

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Particle Identification

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Particle Identification

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Particle identification

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My measurements

• Grace beam line at AEgIS at CERN

• Low energy antiprotons

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Measurement setup

• Knopf detector

• C2 current amplifier

• ROSY readout system

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• sCVD diamond

• 500 μm thickness

• 4mm * 4mm sensor area

• Fits directly onto the SMA connector

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Knopf detector

Measured waveforms

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Annihilation

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Second measurement

• Repeat measurements with thinner electrode

• Expected more annihilation in the sensor

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Thin electrode Knopf detector

Energy histogram

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Energy [MeV]

Measurements from 2017

Energy [MeV]

Measurements from 2018

Energy over time plots

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Delay [ns]

Measurements from 2017

Delay [ns]

Measurements from 2018

FWHM over time plots

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Delay [ns]

Measurements from 2017

Delay [ns]

Measurements from 2018

Nonlinearities

• Amplifier nonlinearity

• Pulse height defect

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Mea

sure

d e

ner

gy d

epo

siti

on

Pulse height defect (PHD)

Deposited energy

C2 amplifier nonlinearity Pulse height defect

Thin diamond detectors

• Maximum thickness 500 um

• Standard sizes 140 um and 50 um

• Experiments with 20 um diamonds

– Limit for producibility

– Extremely fragile

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Effects of thinning detectors

• Higher output signal

• Higher capacitance

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𝐼 =𝑞 ∗ 𝑣

𝑑

𝐶 = 𝜀𝑟𝜀0 ∗𝐴

𝑑

Crystal bending

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sCVD

glue

PCB

50 µm and 20 µm crystal comparison

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50 µm crystal 20 µm crystal

Bent crystal

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