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A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode
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A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Dec 19, 2015

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Page 1: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

A first look of the 10” High QE PMT

Shigeru Yoshida forYuusuke Hasegawa and Mina Inaba

Dep. of Physics, Chiba University

“Super Bialkali” photocathode

Page 2: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Which is which?

Our IceCube PMT Super Bialkali PMT

The Graduate Student

Page 3: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

DOM

Reference PMT Absolutely calibrated

NDfilterLED

Slit 1mm

X-stage

QE×CE Absolute calibration

Systematic error ~7% @ room

Photocathode calibration

Reflectivity : 14.5%±0.73Transmission : 50.7%±2.54

LED

motor

PMT

Page 4: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Absolute QE×CE

IceCubePMT

IceCubePMT

Page 5: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

PMT 2D Uniformity ScanAveraged PMT

2D CEMap(~94PMTs)

The direction of the first dynode

Page 6: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

17.8%

18.1% 15.5%

16.0% 18.7%

15.0% 16.7%

17.9%

TA1895 TA2026

TA2086 TA2146 TA2182

TA2259 TA2349

TA2374

Systematic error ~ 8%

20

0-0.15m 0.15m

@337nm

2D QE x CE Map of PMT

Page 7: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

70nsec

CAMACCAMACCrate

ControllerCrate

Controller

ADCADC

GP-IBGP-IBFunction

GeneratorFunction

Generator

NIMNIM

PCI CardPCI CardCAMAC

InterfaceCAMAC

Interface

GP-IBInterfaceGP-IB

Interface

GateGenerator

GateGenerator

LinuxPCSync.Sync.

PMTPMT

Freezer(-35℃)

Gate

Signal

DiscriminatorDiscriminator

TTL-NIM ConverterTTL-NIM Converter

2kHz, ~0.01 photo-electron/shot

4~6nsec

375 nmUV LED

diffuser

~100ns

The Test bench

Page 8: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Freezer -35℃

The Test Bench

Diffuser attached to the UV LED

375nmUV LED

In the Freezer box

2kHz, ~0.01 photo-electron/shot

Page 9: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

HV dependence of the PMT gainG

ain

(x

107

)

107 Gain

Super PMT

Page 10: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

@5x107 -35C

SPE Charge Historgram

pedestal SPE

Our IceCube PMTSuper Bialkali PMT

Page 11: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

P/V

Gain (x107)

Pe

ak/V

alle

y -35C

Super PMT

Page 12: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Charge Resolution

Gain (x107)

q/q

0-35C

30% line

Super PMT

Page 13: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

The IceCube PMT charge response

Average over 118 PMTs

One measurement

Peak of gaussian Peak of gaussian ~ 1 p.e.~ 1 p.e.

Charge resolution 29%

Mean 15% lessMean 15% less

Page 14: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Now “Super” PMT case

Average over 118 PMTs

One measurement

Page 15: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Dark Rate

Temperature [C]

Da

rk R

ate

[Hz]

Discri. threshold 0.25 p.e.

1kHz

Super PMT

Page 16: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Summary

• QE ~ 35 % @ 365 nm (IceCube PMT – 25%)• Charge response, cathode uniformity compar

able with the IceCube PMTs

– P/V is even better.• Dark Rate ~ 1kHz @ -35 C

(IceCube PMT ~ 600Hz)

Page 17: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

Backup slides

Page 18: A first look of the 10” High QE PMT Shigeru Yoshida for Yuusuke Hasegawa and Mina Inaba Dep. of Physics, Chiba University “Super Bialkali” photocathode.

18.3%16.3%

16.4%15.4%

11.3%10.4%

4.88%3.96%

Keno_Inuzaka(TA1056) Daikaku_Inumura(TA1176)

16.6%15.7%

15.0%12.5%

10.6%9.70%

4.69%4.30%

16.0%13.3%

13.2%14.2%

9.14%8.93%

4.23%3.74%

Red : measured at 24℃Blue : measured at -32℃

QE measured at -32℃  tend to 5~10% lowerlower than measured at 24℃However, they agree within the systematic error.

Sosuke_Inukawa(TA1181)

Absolute QE