Copyright © Hamamatsu Photonics K.K. All Rights Reserved. Latest developments in Hamamatsu Large...

40
Copyright © Hamamatsu Photonics K.K. All Rights Reserved. Latest development s in Hamamatsu Lar ge Format PMTs VLVnT09 in October, 200 9 Hamamatsu Photonics K.K. Electron Tube Division Yuji Hotta

Transcript of Copyright © Hamamatsu Photonics K.K. All Rights Reserved. Latest developments in Hamamatsu Large...

Page 1: Copyright © Hamamatsu Photonics K.K. All Rights Reserved. Latest developments in Hamamatsu Large Format PMTs VLVnT09 in October, 2009 Hamamatsu Photonics.

Copyright © Hamamatsu Photonics K.K. All Rights Reserved.

Latest developments in Hamamatsu Large Format

PMTsVLVnT09 in October, 2009

Hamamatsu Photonics K.K.

Electron Tube Division

Yuji Hotta

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Contents

1. Profile of Hamamatsu2. Developmental status for Large Format PMTs - 12 inch PMT - High QE - New photocathode for low temperature operation

Page 3: Copyright © Hamamatsu Photonics K.K. All Rights Reserved. Latest developments in Hamamatsu Large Format PMTs VLVnT09 in October, 2009 Hamamatsu Photonics.

Copyright © Hamamatsu Photonics K.K. All Rights Reserved.

Profile of Hamamatsu

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Copyright © Hamamatsu Photonics K.K. All Rights Reserved.

Where we are locatedWhere we are located

Hamamatsu is a name of a city.HONDA, YAMAHA and SUZUKI(famous motor cycle companies) are located in the same area.

Population : 824K (as of September, 2009)

KAWAI

ROLAND

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JAPAN

Japanese Standard MAP

Global Network of Global Network of HamamatsuHamamatsu

EuropeUSA

(Subsidiaries)

(Subsidiaries)

GREECE

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Copyright © Hamamatsu Photonics K.K. All Rights Reserved.

Established : Sept 29, 1953Employees : 2,580(As of Sept. 08)Net Sales : \99B ($950M)(FY2008)

Electron Tube DivisionElectron Tube DivisionSolid Sate DivisionSolid Sate Division Systems DivisionSystems Division

Laser GroupLaser GroupCentral Research LabCentral Research Lab

Hamamatsu Photonics Hamamatsu Photonics K.K.K.K.

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Copyright © Hamamatsu Photonics K.K. All Rights Reserved.

Developmental status for Large Format PMTs

- 12 inch PMT- High QE- New photocathode for low temperature operation

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8 inch 10 inch13 inch

20 inchApplication :Neutrino Experiment

Large Format PMTsLarge Format PMTs

too large!

too expensive!too small!

Experiment Name Type Number PMT Size Quantity

NESTOR R8055 13 inch 160

ANTARES R7081-20 10 inch 900

NEMO R7081SEL 10 inch 90

AMANDA R5912-02 8 inch 800

ICECUBE R7081-02 10 inch 5,300

ICECUBE/Deep Core R7081-02MOD 10 inch 400

Double-CHOOZ R7081MOD-ASSY 10 inch 800

Daya Bay R5912ASSY 8 inch 2,250

RENO R7081ASSY 10 inch 890

KamLAND R7250 20 inch 1,200

IMB R4558 8 inch 2,000

SNO R1408 8 inch 8,700

Kamiokande R1449-01 20 inch 1,000

Super-Kamiokande R3600-05 20 inch 11,200

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Development ofDevelopment of    12 inch 12 inch PMTPMT

Items 12-inch PMTR7081

10-inch PMTR5912

8-inch PMT

Diameter 305 mm 253 mm 202 mm

Effective Area 275 mm min. 220 mm min. 190 mm min.

Tube Length 330 mm 245 mm 220 mm

Dynodes LF/10-stage LF/10-stage LF/10-stage

Applied Voltage 2000 V 1500 V 1500 V

GAIN 1.0E+07 1.0E+07 1.0E+07

T.T.S. (FWHM) 2.7 ns 2.9 ns 2.4 ns

P/V Ratio 2.5 2.5 2.5

Dark Counts 10,000 cps 7,000 cps 4,000 cps

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Development of 12 inch Development of 12 inch PMTPMT

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Development ofDevelopment of    12 inch 12 inch PMTPMT

12 inch PMT

Some spacefor divider

17 inchGlass Sphere

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Development of 12 inch Development of 12 inch PMTPMT

10 inch PMT 12 inch PMT

NEW!

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Development ofDevelopment of    12 inch 12 inch PMTPMT12 inch PMT V- Gain

1E+03

1E+04

1E+05

1E+06

1E+07

1E+08

1000 1250 1500 1750 2000 2250 2500

SUPPLY VOLTAGE [V]

GA

IN

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Development ofDevelopment of    12 inch 12 inch PMTPMT

12 inch PMT Example QE data

0

5

10

15

20

25

30

35

40

200 300 400 500 600 700 800Wavelength [nm]

Qua

ntum

Effi

cien

cy [

%]

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Development ofDevelopment of    12 inch 12 inch PMTPMT

Supply Voltage : 2000 V

Rise Time : 4.0 ns 100 mV / Div , 10ns / Div

Fall Time : 6.7 ns

12inch PMT WAVEFORM

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Development ofDevelopment of    12 inch 12 inch PMTPMT12 inch PMT Cathode Uniformity

0

10

20

30

40

50

60

70

80

90

100

110

120

130

140

150

-90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90

Position angle [degree]

Rel

ativ

e O

utpu

t [%

]

X-AXIS

Y-AXISDate : 2009.09.11

Serial No. : ZN0038Spot Dia. : 5 [mm]

Wavelength : 410 [nm]Supply Voltage : 150 [V]

Y

X+-

+

-

D y 1

D y 2

( T O P V I E W )

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Development ofDevelopment of    12 inch 12 inch PMTPMT12 inch PMT Anode Uniformity

0

10

20

30

40

50

60

70

80

90

100

110

120

130

140

150

-90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90

Position angle [degree]

Rel

ativ

e O

utpu

t [%

]

X-AXIS

Y-AXISDate : 2009.09.11

Serial No. : ZN0038Spot Dia. : 5 [mm]

Wavelength : 410 [nm]Supply Voltage : 1920 [V]

Y

X+-

+

-

D y 1

D y 2

( T O P V I E W )

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Copyright © Hamamatsu Photonics K.K. All Rights Reserved.

Developmental status for Large Format PMTs

- 12 inch PMT- High QE- New photocathode for low temperature operation

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Copyright © Hamamatsu Photonics K.K. All Rights Reserved.

High QE Bialkali PhotocathodeHigh QE Bialkali Photocathode

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Definition of SBA/UBA

R9880New TO-8 typeMetal Package

R7600/R89001 inch SquareMetal Package

Min. Typ.

Photocathode(suffix)

Available Products

Ultra Bialkali"UBA" (-200)

38% 43%R7600/R8900

(Metal Package PMT)

QE at peakwavelength

Super Bialkali"SBA"

(-100/-110)32% 35%

R7600/R8900/R9880(Metal Package PMT)

1-1/8"-5"Glass Bulb types

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R7081 (10” PMT) with High R7081 (10” PMT) with High QEQE

Example QE data R7081 (10 inch)

0

5

10

15

20

25

30

35

40

200 300 400 500 600 700 800

Wavelength [nm]

Qua

ntum

Effi

cien

cy [

%] High QE Type

Champion Data

35.8 % at 380 nm

Standard

26 % at 380 nm

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R7081 (10” PMT) with High R7081 (10” PMT) with High QEQE

R7081HQE QE Histogram

0

20

40

60

80

100

120

- 32.5 - 33.0 - 33.5 - 34.0 - 34.5 - 35.0 35 -

QE [%] at 380 nm

Nu

mb

er

of

Tu

be

s (

pc

s)

Average : 34%Sample : 404 pcs

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Developmental status for Large Format PMTs

- 12 inch PMT- High QE- New photocathode for low temperature operation

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Development of Photocathode for Low

Temperature

Photocathode with Al pattern

Photocathode with Pt underlay QE becomes low due to decrease of transmittance

• Purpose of development– Dark matter experiment

– Liquid Xe : -110 deg. C / 175 nm emission

– Liquid Ar : -186 deg. C / 128 nm emission to be converted to 420 nm photons by WLS

   

1/40

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Example QE datafor R5912 (8 inch) Pt

underlay

0

5

10

15

20

25

30

35

40

200 300 400 500 600 700 800

Wavelength [nm]

Qua

ntum

Effi

cien

cy [

%]

Low QE

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QE data of New Photocathode

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Cathode Linearity of New Photocathode

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R5912 (8 inch) with new photocathode

0

5

10

15

20

25

30

35

40

200 300 400 500 600 700 800

Wavelength [nm]

Qua

ntum

Effi

cien

cy [

%]

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Summary

- Hamamatsu has been developing 12 inch PMT. Some sample PMTs will be available next year.

- Hamamatsu continues to improve QE.- Hamamatsu has found new photocathode for

low temperature operation. We are trying to apply the new photocathode for large format PMTs.

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END

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Back Up

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Metal Package PMTs

Metal Channel DynodesMicro processing technology

FeaturesCompact, Fast Time Response Position SensitiveImmunity to magnetic field

<Cross-section>

Array of LinearFocused Dynode

1 mm

1 mm

R9880

R7600

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R7600 & R8900 Various Anode Types

4 channelsM4 (2x2)

16 channelsM16 (4x4)

64 channelsM64 (8x8)

Cross-Plate

C12 (6+6)(R7600-M64 only) (R8900-C12 only)

X

Y

18.0 mm

25.7 mm

23.5 mm

26.2 mm

WI NDOWWI NDOW

Difference of R7600 & R8900

R7600 (R5900)

R8900

Multi-anodeFiber Coupling

ImagingRICH

Focusing

Proximity

MCD

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0

10

20

30

40

50

200 300 400 500 600 700

Wavelength [nm]

Qua

ntum

Effi

cien

cy [

%]

Latest Data of R7600-200 (UBA)

<<Specification>>Typical : 43 %Minimum : 38 %at peak Wavelength

Example data with 10 tubes

41%~45%

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Conventional PMTs with SBA

R6231-100

(2 inch)

R3998-100(1-1/8 inch)

R6233-100

(3 inch)For Better Energy Resolution

Applications:Radiation detectionGamma CameraRadiation Probe

R877-100 (5”) is now available!

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Energy Resolution vs. QEQE at 380 nm vs Energy Resolution (LaBr3 + Cs137)

y = 13.671x-0.4096

R2 = 0.9019

2

2.5

3

3.5

4

4.5

20 25 30 35 40 45QE at 380 nm (% )

Energ

y R

eso

luti

on (

FWH

M)

(%)

R7600

R7600-100 (SBA)

R7600-200 (UBA)

R3998-100 (SBA)

Radiation Source : Cs137 (662KeV)Scintillator : LaBr3 0.5"dia x 0.5"Supply Voltage : 400-500V (R3998-100) 800V (R7600)

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HPD Compared with PMTHPD Compared with PMT<HPD>

EB GAIN : 1000~2000

AD GAIN : 30~100

<PMT>

DYNODE GAIN : 3~10

GAIN = 4x4x4x…x4x4x4

Total gain: ~1x105

AD (Avalanche Diode)

Total gain: ~1x106

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Pulse Height DistributionPulse Height Distribution<HPD>

<PMT>

Prime Feature : Good Pulse Height DistributionPrime Feature : Good Pulse Height Distribution

1pe

2pe

3pe

4pe

5pe

K-APD = 12KV 1pe

2pe

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Large Format HPDLarge Format HPD

330mm

13 inches

280mm

<Collaboration>The Univ. of Tokyo and JST (JAPAN SCIENCE

AND TECHNOLOGY AGENCY)

Development will beDevelopment will befinished by spring 2012finished by spring 2012

AD Target : 5mm TTS(FWHM) : 440 ps

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EB Gain and Avalanche EB Gain and Avalanche GainGain

13 inch HPD13 inch HPDTotal : 2.3e+05Total : 2.3e+05