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1

2 XFEL Project at SPring-8/RIKEN 加速器学会 2006

3 C A ST N

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5 Dr. Masashi Miyano

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8 SPring-8 FEL の特徴 低エミッタンス電子銃 FEL ゲイン大 高電界 C バンド加速器短い加速器トンネル 施設コスト低減 KEK C-band 35 MV/m x 30 m = 1 GeV 短周期の真空封止型アンジュレータ 電子ビームエネルギー低減 Kitamura s In-Vacuum Undulator : E = 1GeV, λu = 15 mm, λx = 3.6 nm

9 Milestone of SPring-8 8 X-FEL Visible VUV 10 Approved Project LEUTL 385 nm SPring-8 SCSSSPring8 XFEL DESY TESLA TTF2 250 MeV Test Accelerator 60 nm Proposal Target Wavelength 1 6 nm SLAC-LCLS TESLA XFEL 6 ~ 8 GeV SPring-8 XFEL X-ray nm Goal Year T. Shintake, Advanced Electron Beam Physics Laboratory

10 21 XFEL X C- 1

11 In-Vacuum Undulator for SCSS X-FEL Segment length 4.5 m N = 300/segment, λ u =15mm K~1.3, at Nominal gap 3.5 mm Mechanical minimum gap = 2mm 45-deg. tilted Halbach type More compact than ordinary ones First prototype model T. Shintake, Advanced Electron Beam Physics Laboratory Gap can full-open 25 mm, which provides optical alignment laser pass, and enough beam acceptance at the beam commissioning time.

12 X FEL FEL XFEL Radiation2D Self-Amplified Spontaneous Emission SASE T. Shintake, Advanced Electron Beam Physics Laboratory

13 Undurator Erectron Beam Magnetic Field X-ray Radiation Permanent Magnets

14 SCSS: SPring-8 Compact SASE Source Home Index Milestone What is SASE? Low Emittance Beam C-band Accelerator In-vacuum Undulator SCSS Beamline Optics 10 May 2005: SCSS conceptual design report has been released. Click here to download (6.7MB). SCSS is an abbreviation for the SPring-8 Compact SASE Source, and is a high peak-brilliance soft X- ray free electron laser project for R&D aiming at realization of an angstrom X-ray laser facility. SCSS will provide six order of magnitude peak-brilliance enhancement compared to the current thirdgeneration sources at 3 ~ 20 nm range. Information Publications Presentations Research members Page Links Real-time radiation simulator for Windows. To download, click right image and fill your information for the future announce. It is just single executable file: Radiation2D.exe. To run, double click. Grab the center electron, and try to move it. You will see radiation. Chose circle trajectory from Setup Menu, you will see synchrotron radiation. Note:Linux and Mac version are also available!! 25/Jul/2003 The Radiation2D Ver. 2.0 for Windows was released. 5:06:43

15 From SR to FEL SR or ERL Spontaneous Radiation FEL: Free Electron Laser Coherent Radiation λx N-electrons random distribution Espt ~ N E1 Pspt ~ N P1 N-electrons micro-bunched Ecoherent ~ N E1 2 Pcoherent ~ N P1 Optical Power Enhancement 5 8 x 10 ~ 10

16 from Linac or storage ring e-beam Undulator Mirror Electrons Micro bunching Optical wave (visible or infra-red) Linac Undulator UV or X-ray Electron gun e-beam e-beam SASE-FEL Electrons Micro bunching X-ray

17 Si ppm um/10m) PLC, FPGA) 80

18 IGBT, PLC, FPGA, ADC, DAC, VME, OE- EO,,,,,,,

19 Compact HV Pulse Modulator Supply March 2003 Driving 50 MW klystron, and 500 kv electron gun. Compact, Oil Filled Design W 1.7 m x D 1.2 m x H 1m. Good EMI shield. Better cooling for HV component. Eliminating cooling air fan. No dust accumulation due to high voltage in air. No environmental effects: moisture and temperature variation.

20 Cavity-BPM (Beam Position Monitor) Newly developed Cavity-BPM For SPring-8 XFEL. 4.7 GHz. TM110 mode excitation amplitude provides very linear beam position information. Slot-coupling design isolates TM110 BPM signal from TM010 common-mode mixing, which cause position offset. Electrical center meets very accurately with mechanical center in a few micron-meter (insensitive to variation of cable length, or detection circuit details).

21 CeB 6 Cathode & Heater Assembly CeB 6 Cathode 3 mm Diameter Emittance 0.4 π.mm.mrad (thermal emittance, theoretical ) Beam Current 3 Amp. at 1450 deg.c (using graphite heater) Current Density > 40 A/cm 2

22 C-band SAMURAIs C-band R&D

23 C-band R&D JLC C-band (5712 MHz) Main Linac Tunnel Granite: stable ground RF Pulse compressor 50 MW x 2 Klystron gallery Diameter: 3.0 m Diameter: 4.2 m Active Length: 14 km RF pulse compressor klystrons 50 MW 2.5 µsec 36 MV/m Gain: x 3.5 Conventional wave-guide system BPMs 36 MV/m (45 MV/m) 8m Accelerator 1.8 m each beam

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26 Stable Support using Cordierite Ceramic Beam line level is designed low: 800 mm. Low thermal expansion cordierite is used. For stable positioning and lower vibration, No screw is used for position adjustment, but machining the spacer. Filled with sand for damper.

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28 YUKA TO KENSAKU Shintake

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30 Y. Otake Iron Stand Cordierite

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35 C-band Accelerating Structure for SCSS Ver HOM Damping by Choke-Mode Cavity 1.8 m long, 91 Cells, CG-structure 3π/4-mode Brazing Bonding SiC by Tungsten wire-spring. Double-feed Coupler High-power test will be Summer 2003

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40 試験加速器 アンジュレータと C バンド加速器 加速器学会 2006 アンジュレータ 4.5 m x 2 台 15 mm period 4 mm gap C バンド加速器 クライストロン 2 本 加速管 1.8 m x 4 本 250 MeV

41 加速器学会 2006 最初のスペクトル Wavelength : 49 nm E-beam energy : 250 MeV Bunch charge: 0.25 nc Bunch length: (< 1 pse) Peak Current (> 300 A) At moment spectrum width 0.5 nm is dominated by e-beam energy fluctuation ~ 0.2%.

42 加速器学会 2006 レーザー増幅を SCSS にて初めて観測 June 15, 2006

43 8 GeV X FEL (8 GeV, JASRI/SPring-8 (RIKEN)

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