superconducting cavities for super-kekb

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Superconducting Cavities for Super-KEKB S. Mitsunobu

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Superconducting Cavities for Super-KEKB. S. Mitsunobu. Summary of KEKB SCC Operation. Max. Current 1 270m A Max. Power for Beam      380k W HOM Power 1 4k W Operation Voltage  1.4-2.0 MV Average Trip rate is once per month for good vacuum condition. KEKB SC  Super-KEKB SC. - PowerPoint PPT Presentation

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Page 1: Superconducting Cavities for Super-KEKB

Superconducting Cavities for Super-KEKBS. Mitsunobu

Page 2: Superconducting Cavities for Super-KEKB
Page 3: Superconducting Cavities for Super-KEKB

Summary of KEKB SCC Operation

Max. Current             1 270m A

Max. Power for Beam      380k W HOM Power              1 4k

W Operation Voltage  1.4-2.0 M

V Average Trip rate is once per month for good

vacuum condition.

.

Page 4: Superconducting Cavities for Super-KEKB

KEKB SC Super-KEKB SC

Cavity Field 1.4-2.0MV OK Input Coupler 380kw 460kW OK(500kW) Input Coupler Qext 7x104 5x104

HOM Power 10 kW 60kW (test 43 kW) Large Gate Valve D=220mm to be solved Add 4 Cavities Larger Sigma z should be studied

Page 5: Superconducting Cavities for Super-KEKB

Dedicated 1 MW klystron system for coupler test bench

Testing high power coupler, at D10 area new 1MW klystron power supply and klystron system have been constructed.

One of limitation of high power operation for KEKB coupler is heating at capacitor for bias voltage. An air duct is added near this capacitor to increase cooling power. Couplers could operate more than 500 kW.

Page 6: Superconducting Cavities for Super-KEKB
Page 7: Superconducting Cavities for Super-KEKB
Page 8: Superconducting Cavities for Super-KEKB

Cap of Doorknob

Air Duct

Page 9: Superconducting Cavities for Super-KEKB
Page 10: Superconducting Cavities for Super-KEKB

HOM Damper

Cooling limit (4.0m/sec ) 60kW Inner Surface Temperature Limit 200

℃ KEKB 80kw with 4A at 3mm BL(2.5pC) D=220 mm Beam Pipe 56 kW(4A,3mm) KWKB could be operate (4A, 4MM, 1.8pC)

P=k ( σz )・ I**2/frev/Nb

Page 11: Superconducting Cavities for Super-KEKB

A SBP HOM damper have been tested up to 18 kW and 25 kW for LBP HOM damper.

Page 12: Superconducting Cavities for Super-KEKB

Acoustic monitor attached

Page 13: Superconducting Cavities for Super-KEKB

Artificial acoustic signal breaking pencil lead of 0.5mm

Page 14: Superconducting Cavities for Super-KEKB

Crab cavity

Crab cavities will be install in KEKB ring next winter shutdown.

New crab cavity design for SKEKB have been proposed by Akai.

Page 15: Superconducting Cavities for Super-KEKB

New crab cavity (Coaxial type)

(Left) The cross-shaped waveguide dampers and coaxial dampers are attached at the squashed-cell.

(Right) Cross section of the coaxial damper at the cut plane of Y-Y’.

coaxial damper

cross-shaped waveguide dampers

Y

Y'

absorber

(cross section at Y-Y')

Proposed by Akai

Page 16: Superconducting Cavities for Super-KEKB

Summary

KEKB SC will be used with small modification for Super-KEKB.

Coupler already tested more than 500kW(800kW in short time),beam test will be done.

HOM damper is most important issue for Super-KEKB SC. (43kW reached)

Crab cavities going to be test soon.