Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at...

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Recent Developments and Future Projects at the ESRF P. Berkvens 7th International Workshop on Radiation Safety at Synchrotron Radiation Sources BNL, May 8-10, 2013

Transcript of Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at...

Page 1: Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 20 BS1 BS2 BS3 36.22 m 39. m

Recent Developments and Future Projects at the ESRF

P. Berkvens

7th International Workshop on Radiation Safety at

Synchrotron Radiation Sources BNL, May 8-10, 2013

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Recent Developments and Future Projects at the ESRF

Contents

Update on clinical trial projects at the ESRF

Stereotactic Synchrotron Radiation Therapy (SSRT)

Micro-beam Radiation Therapy (MRT)

ESRF Phase I Upgrade Programme

Phase I Upgrade Beamlines:

UPBL1 – ID01

UPBL7 – ID32

UPBL2 – ID31

UPBL4 – ID16

ESRF Phase II Upgrade Programme

Storage Ring Phase II Upgrade

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1. Treatment Planning System: • Dose prescription D1 in tumour for given orientation. • Corresponding dose in water D2 at reference depth.

vz

3. Patient treatment: • Online measurement of delivered dose. • Patient Safety System.

2. Dosimetry calibration: • Calibration of therapy facility in terms of dose D2. • Cross-calibration of transmission ionisation

chamber.

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

Clinical trials at the ESRF: SSRT

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PTW TLD holder for external control

Nom. Energy [keV]

Fieldsize [cm × cm]

Measuring depth [cm]

Dose ESRF [Gy]

Dose TLD [Gy]

Deviation [%]

Uncertainty k=1 [%]

80 5 × 5 10 0.970 0.980 -1.0 2.5

80 5 × 5 10 0.968 0.981 -1.3 2.5

80 5 × 5 3 1.028 1.024 0.4 2.5

80 5 × 5 5 0.976 0.972 0.4 2.5

80 5 × 5 3 1.038 1.038 0.0 2.5

80 5 × 5 5 0.974 0.972 0.2 2.5

80 5 × 5 5 0.978 0.982 -0.4 2.5

80 5 × 5 3 1.032 1.032 0.0 2.5

Clinical trials at the ESRF: SSRT

External control: TLD exposure, PTW Germany

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Clinical trials at the ESRF: SSRT

Monte-Carlo based Treatment Planning System

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# port

I [mA]

PTW semiflex

[Gy]

PTW transmission

1 [nC]

PTW transmission

2 [nC]

PTW 1 [nC/Gy]

PTW 2 [nC/Gy]

1 152.30 1177 43.30 44.30 36.79 37.64

2 152.17 1178 44.65 45.65 37.90 38.75

3 152.05 1176 44.60 45.60 37.93 38.78

4 151.93 1178 45.40 46.45 38.54 39.43

5 151.81 1171 43.10 44.05 36.81 37.62

6 151.68 1175 44.60 45.65 37.96 38.85

7 151.57 1174 44.65 45.65 38.03 38.88

8 151.45 1175 45.45 46.45 38.68 39.53

Clinical trials at the ESRF: SSRT

Cross calibration of transmission ionisation chamber for each individual beam, using the patient-specific collimators

Speed chair: 20 mm/s Vertical scan height: 7 cm

Height beam: 2 mm T = 22.7 oC

# of scans: 10 P = 995.7 mbar

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# port

I [mA]

Dose

isocenter [Gy]

Dose ref. 2 cm [Gy]

Number of scans

Speed [mm/s]

Dose delivered

[Gy]

Difference dose

delivered / dose

prescribed [%]

1 172.3 0.6056 2.831 30 25.59 2.824 -0.24

2 172.1 0.6056 1.0429 11 26.92 1.041 -0.16

3 171.9 0.6056 0.9653 10 26.65 0.963 -0.22

4 171.7 0.6056 0.8177 9 28.6 0.816 -0.16

5 171.6 0.6056 1.7575 18 25.14 1.754 -0.20

6 171.4 0.6056 2.2954 24 25.4 2.291 -0.20

7 171.2 0.6056 3.6814 39 25.29 3.673 -0.24

8 170.9 0.6056 4.066 43 25.18 4.057 -0.21

Clinical trials at the ESRF: SSRT

Cross calibration of transmission ionisation chamber for each individual beam, using the patient-specific collimators

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8 Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

Clinical trials at the ESRF: SSRT

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9 Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

Clinical trials at the ESRF: SSRT

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0

2

4

6

8

10

12

14

16

18

0 50 100 150 200

Series1

Series2

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

stored beam current (mA)

measured dose rate (kGy/s)

Dw,Q = Dw,scan × zbeam

vz

2 × 2 cm2 field

Ion recombination effect MRT PTW pinpoint 31014 (0.015 cm3)

Ion collection time 20 s Dose rate 99.5%: 265 Gy/s 99.0%: 580 Gy/s Pulse dose 99.5 %: 3.5 mGy 99.0 %: 7 mGy

Clinical trials at the ESRF: MRT

10

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Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

stored beam current (mA)

normalised measured dose rate / mA

Dw,Q = Dw,scan × zbeam

vz

2 × 2 cm2 field

Ion recombination effect MRT PTW pinpoint 31014 (0.015 cm3)

Ion collection time 20 s Dose rate 99.5%: 265 Gy/s 99.0%: 580 Gy/s Pulse dose 99.5 %: 3.5 mGy 99.0 %: 7 mGy

0.9

0.95

1

1.05

1.1

1.15

1.2

0 50 100 150 200

without gas filter

1

Clinical trials at the ESRF: MRT

11

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ESRF Phase I Upgrade Program

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ESRF Phase I Upgrade Program

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Belledonne

Chartreuse

Chartreuse

EX2 Chartreuse and Belledonne Experimental Halls

Belledonne

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Phase I Upgrade Beamlines: UPBL01 – ID01

UPBL1: Diffraction imaging for nano-analysis

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horizontal slit 2 mm (± 0.074 mrad)

vertical slit 4 mm (± 0.089 mrad)

distance from middle of straight section

13.5

m

22

.5 m

Transmission through front end

6 GeV: 1/ = 0.085 mrad

vertical slit

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

10 m 26.1 m -5 cm

5 cm

Sv/h

16 Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

Phase I Upgrade Beamlines: UPBL01 – ID01

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1.E-02

1.E-01

1.E+00

1.E+01

1.E+02

1.E+03

1.E+04

1.E+05

1.E+06

1.E+07

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E-02-1.E-01

1.E-021.E-01

1.E+001.E+01

1.E+021.E+03

1.E+041.E+05

1.E+061.E+07

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E-02-1.E-01

Collimator

Horizontal slits

Movable absorber

1.E-021.E-01

1.E+001.E+01

1.E+021.E+03

1.E+041.E+05

1.E+061.E+07

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E-02-1.E-01 1.E-02

1.E-01

1.E+00

1.E+01

1.E+02

1.E+03

1.E+04

1.E+05

1.E+06

1.E+07

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E-02-1.E-01

Vertical slits

Collimator

Horizontal slits

Movable absorber

Vertical slits

Sv/h

Sv/h

Sv/h

Sv/h

1.E-02

1.E-01

1.E+00

1.E+01

1.E+02

1.E+03

1.E+04

1.E+05

1.E+06

1.E+07

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E-02-1.E-01

Sv/h

horizontal

vertical

Gas-bremsstrahlung transmission in ESRF Front End

17 Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

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1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E+06-1.E+07

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

Sv/h

0 mrad 1.5 mrad 1.75 mrad 2 mrad

Gas-bremsstrahlung transmission in ESRF Front End

18 Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

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Gas-bremsstrahlung transmission in ESRF Front End

Energy (MeV)

Number of photons / s / MeV

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BS1 BS2 BS3

36.22 m 39. m 42 m

OH1 Lead wall

EndOH1

InOH2

+ 7 mm

+ 27 mm

Impact +40.9 mmØ = (40.9-17)*2 =47.8

BS4

48.5m

29.6m

1 st Mirror WBMAngle 7.07 mrad

39.05 m 48.55m36.342m

Pipe Ø 60,3 ep 2With lead

BS1 BS2 BS329.6 m

36.22 m 36.342m 39 m 42.0 m

OH2

1 st Mirror WBM+ 7 mm

+ 27 mm

Angle 4005µradIncidence 2002 µrad

Angle 1057 µradIncidence 528 µrad

BS4

48.5 m39.05 m

42.05 m 55.9 m

Phase I Upgrade Beamlines: UPBL01 – ID01

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BS 5 BS 6

Angle 1 mrad

+ 7 mm

+ 27 mm

Axe sample WB +17 mm

54.08 m OH2

Angle 1.116 mrad

74 m

Impact +42.2 mmØ = (42.2-17)*2 =50.4mm

BS 1

36 m

BS 6

74.0 m20 * 4

Angle 0.529 mrad

If we have a pipe with a Ø 60 the beam hits it at 74 m + (28/0.529) = 127,7 m from the source in this case we are in EH1

28 mm20 mm30 mm

EndOH2

OH3

Pipe Ø 60,3 ep 2With lead

Pipe Ø 60,3 ep 2With lead

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 21

Phase I Upgrade Beamlines: UPBL01 – ID01

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BS1 BS2 BS329.6 m

36.22 m 36.342m 39 m 42.0 m

OH1 insidelead wall

OH2

1 st Mirror WBM+ 7 mm

+ 27 mm

Angle 4005µradIncidence 2002 µrad

Angle 1057 µradIncidence 528 µrad

Impact +37.6 mm

Axe sample +17 mm

Impact +20 mm

BS4

48.5 m

39.05 m

42.05 m 55.9 m

ndOH2

EndOH1 In

OH2

BS1 BS2 BS3

36.22 m 39. m 42 m

OH1 Lead wall

EndOH1

InOH2

+ 7 mm

+ 27 mm

Impact +40.9 mmØ = (40.9-17)*2 =47.8

BS4

48.5m

29.6m

1 st Mirror WBMAngle 7.07 mrad

Axe sample +17 mm

39.05 m48.55m

36.342m

Pipe Ø 60,3 ep 2With lead

Pipe Ø 60,3 ep 2With lead

W block 100 x 100 x W10 + Cu22 + W90

Impact WB Aperture 20mm x 4mm Center at 17 mm from WB

W block 50 x 30 x 50

Aperture 20mm x 4mm Center at 17 mm from WB

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Phase I Upgrade Beamlines: UPBL7 – ID32

UPBL7: Soft X-ray beamline for magnetic and electronic spectroscopy

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1.103 – 1.104

1.102 – 1.103

1.101 – 1.102

1.100 – 1.101

1.10-1 – 1.100

1.10-2 – 1.10-1

1.10-3 – 1.10-2

1.10-4 – 1.10-3

1.10-5 – 1.10-4

1.10-6 – 1.10-5

1.10-7 – 1.10-6

1.10-8 – 1.10-7

1.10-9 – 1.10-8

Sv/h

bremsstrahlung

neutrons

synchrotron radiation

Phase I Upgrade Beamlines: UPBL7 – ID32

Sv/h1.1012 – 1.1013

1.1011 – 1.1012

1.1010 – 1.1011

1.109 – 1.1010

1.108 – 1.109

1.107 – 1.108

1.106 – 1.107

1.105 – 1.106

1.104 – 1.105

1.103 – 1.104

1.102 – 1.103

1.101 – 1.102

1.100 – 1.101

1.10-1 – 1.100

1.10-2 – 1.10-1

1.10-3 – 1.10-2

,n X

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Phase I Upgrade Beamlines: UPBL7 – ID32

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Phase I Upgrade Beamlines: UPBL2 – ID31

UPBL2: High energy beamline for buried interface structures and materials processing

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horizontal slit 2 mm (± 0.074 mrad)

vertical slit 4 mm (± 0.089 mrad)

distance from middle of straight section

13.5

m

22

.5 m

Transmission through ID31 front end

6 GeV: 1/ = 0.085 mrad

vertical slit

23.18 m 23.33 m 23.48 m

10 cm 5 cm

2 cm

beam

beam 1 mm 1.5 mm

15 mm1 mm 1.5 mm

vertical slits horizontal slits

tungsten backing

15 mm

10 cm 5 cm

8 mm

8 mm

Side view

Top view ID31 special horizontal / vertical collimator

27 Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

Gas-bremsstrahlung transmission in ID31 Front End

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10 m 26.12 m -5 cm

5 cm

Sv/h

10 m 26.12 m -5 cm

5 cm

Gas-bremsstrahlung transmission in ID31 Front End

horizontal

vertical

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synchrotron

1.E-05

1.E-04

1.E-03

1.E-02

0 500 1,000 1,500

photons

neutrons

total

distance along side wall (cm)

effective dose rate ( Sv/h)

1.E-05

1.E-04

1.E-03

1.E-02

1.E-01

1.E+00

0 200 400 600 800 1,000 1,200 1,400

0 mm

3 mm

6 mm

9 mm

12 mm

15 mm

18 mm

21 mm

24 mm

27 mm

30 mm

distance along side wall (cm)

effective dose rate ( Sv/h)

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 29

bremsstrahlung 30 mm Pb side wall

1.E-04

1.E-03

1.E-02

1.E-01

1.E+00

1.E+01

1.E+02

1.E+03

1.E+04

1.E+05

-200 -100 0 100 200 300 400 500 600

3 mm

6 mm

9 mm

12 mm

15 mm

18 mm

21 mm

24 mm

27 mm

30 mm

Side wall 200 cm

distance along side wall (cm)

effective dose rate ( Sv/h)

Synchrotron radiation In-vacuum cryogenic undulator Bmax = 1.2 T Period: 14 mm 2 × 2 meters

Phase I Upgrade Beamlines: UPBL2 – ID31

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Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 30

Phase I Upgrade Beamlines: UPBL4 – ID16 (NiNa)

Nano-Imaging and Nano-Analysis beamline phase contrast imaging, chemical mapping and spectroscopy on the nano-scale

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1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E-02

1.E-01

1.E+00

1.E+01

1.E+02

1.E+03

1.E+04

1.E+05

1.E+06

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E-02-1.E-01

1.E-02

1.E-01

1.E+00

1.E+01

1.E+02

1.E+03

1.E+04

1.E+05

1.E+06

1.E+05-1.E+06

1.E+04-1.E+05

1.E+03-1.E+04

1.E+02-1.E+03

1.E+01-1.E+02

1.E+00-1.E+01

1.E-01-1.E+00

1.E-02-1.E-01

Sv/h

ID16 canted section Front end 2.7 mrad canting

200 mA 1. 10-9 mbar

Phase I Upgrade Beamlines: UPBL4 – ID16 (NiNa)

10 m 26.1 m

Page 32: Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 20 BS1 BS2 BS3 36.22 m 39. m

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 32

1.00E+04-1.00E+05

1.00E+03-1.00E+04

1.00E+02-1.00E+03

1.00E+01-1.00E+02

1.00E+00-1.00E+01

1.00E-01-1.00E+00

1.00E-02-1.00E-01

1.00E-03-1.00E-02

-5.00E+01

-4.00E+01

-3.00E+01

-2.00E+01

-1.00E+01

0.00E+00

1.00E+01

2.00E+01

3.00E+01

0.00E+002.00E+024.00E+026.00E+028.00E+021.00E+031.20E+031.40E+031.60E+031.80E+032.00E+03

Axis Title

Axis Title

Chart Title

Series1

ID16 Optics hutch 200 mA 1. 10-9 mbar

Photon effective dose rate ( Sv/h)

Phase I Upgrade Beamlines: UPBL4 – ID16 (NiNa)

Ni-branch

Page 33: Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 20 BS1 BS2 BS3 36.22 m 39. m

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 33

1.00E+04-1.00E+05

1.00E+03-1.00E+04

1.00E+02-1.00E+03

1.00E+01-1.00E+02

1.00E+00-1.00E+01

1.00E-01-1.00E+00

1.00E-02-1.00E-01

1.00E-03-1.00E-02

-5.00E+01

-4.00E+01

-3.00E+01

-2.00E+01

-1.00E+01

0.00E+00

1.00E+01

2.00E+01

3.00E+01

0.00E+002.00E+024.00E+026.00E+028.00E+021.00E+031.20E+031.40E+031.60E+031.80E+032.00E+03

Axis Title

Axis Title

Chart Title

Series1

ID16 Optics hutch 200 mA 1. 10-9 mbar

Photon effective dose rate ( Sv/h)

Phase I Upgrade Beamlines: UPBL4 – ID16 (NiNa)

Na-branch

Page 34: Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 20 BS1 BS2 BS3 36.22 m 39. m

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 34

Photon effective dose rate ( Sv/h) 1 100

1 10-1

1 10-2

1 10-3

1 10-4

1 10-5

1.00E-04

1.00E-03

1.00E-02

1.00E-01

1.00E+00

0 200 400 600 800 1,000 1,200

0 mm

3 mm

6 mm

9 mm

12 mm

15 mm

18 mm

21 mm

24 mm

27 mm

30 mm1.00E-05

1.00E-04

1.00E-03

1.00E-02

1.00E-01

1.00E+00

-150-100-50050100150200

0 cm

1 cm

2 cm

3 cm

4 cm

5 cm

6 cm

7 cm

8 cm

9 cm

10 cm

Side walls Back walls

1.00E-04

1.00E-03

1.00E-02

1.00E-01

1.00E+00

0 200 400 600 800 1,000 1,200

0 mm

3 mm

6 mm

9 mm

12 mm

15 mm

18 mm

21 mm

24 mm

27 mm

30 mm

ID16 Optics hutch 200 mA 1. 10-9 mbar

Phase I Upgrade Beamlines: UPBL4 – ID16 (NiNa)

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Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 35

Effective dose rate ( Sv/h)

ID16 Optics hutch 200 mA 1. 10-9 mbar

1.50 10-2

1.25 10-2

1.00 10-2

0.75 10-3

0.50 10-3

0.25 10-3

0

3 cm Pb 3 cm Pb 3 cm Pb 10 cm Pb 10 cm Pb

Phase I Upgrade Beamlines: UPBL4 – ID16 (NiNa)

Page 36: Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 20 BS1 BS2 BS3 36.22 m 39. m

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 36

Phase I Upgrade Beamlines: UPBL4 – ID16 (NiNa)

Page 37: Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 20 BS1 BS2 BS3 36.22 m 39. m

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 37

Phase II Upgrade: Storage ring upgrade

Parameter Existing Lattice New Lattice

Energy, E [GeV] 6.04 6.04

Circumference, C [m] 844 844

RF frequency, fRF [MHz] 352 352

Beam current [mA] 200 200

Horizontal Emittance [pm ·rad] 4000 150

Vertical Emittance [pm ·rad] 4 3

Beta at ID center, βx , βy [m] 37.6 , 3.0 (high β)

0.35 , 3.0 (low β)

3.6 , 3.6

Beam size at ID center, σx , σy [μm] 413 , 3.9 (high β)

50 , 3.9 (low β)

24 , 3.3

Beam div. at ID center, σx’ , σy’ [μrad] 10 , 1.3 (high β)

107, 1.3 (low β)

6.4 , 0.91

Page 38: Recent Developments and Future Projects at the ESRF · Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013 20 BS1 BS2 BS3 36.22 m 39. m

White paper

Injector Upgrade

Prototyping , R&D

Technical Design Study

Engineering Design

Calls for Tender

Manufacturing, Construction and Test

Vercors building construction

Assembly and preparation

End User mode

Beam back to BL

Installation

Commissioning

2 Beamlines in Chartreuse

2 Beamlines in Vercors

Recent Developments and Future Projects at the ESRF, P. Berkvens - RadSynch13, BNL, 8 May 2013

1 Year

Shutdown

User Mode

38

Phase II Upgrade: Storage ring upgrade