承建单位项目法人单位上海应用物理所概况-DESYIndico课件.ppt
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1、Design of a superconducting third harmonic cavity for SSRFHongtao HOU On behalf of RF group2018-06-28Hongtao Hou,TTC workshop,RIKEN,Japan,June 2018Contents1.Background2.Design Specification3.Harmonic Cryomodule Design4.SummaryHongtao Hou,TTC workshop,RIKEN,Japan,June 20181.Background:MotivationFSSRF
2、 beamline phase-II project Installation of more insertion devices will decrease the beam lifetimeFFunction Lifetime increase Beam performance improvement Instabilities suppressionFAdvantages Provide Landau damping of synchrotron oscillations:suppress coupled-bunch and microwave instabilities Increas
3、e threshold of single bunch instabilitiesFHarmonic cavities for bunch lengthening Resonant at fharm=n fRF (often n=3)Passive/active:no external power source required for passive system NC/SC:SC has sufficient impedance even at low currentHongtao Hou,TTC workshop,RIKEN,Japan,June 2018SSRF operation s
4、tatus(2017)Scheduled/hrsAccomplished/hrsAvailabilityMTBFMDT20092215209494.6%28.31.65201040033829.195.3%40.441.8420114477437097.6%55.31.57201246104535.498.469.81.19201347274638.798.1%70.31.36201446924624.598.6%81.11.220154634455698.3%79.91.5420164606453097%45.761.4520174246415297.8%54.61.25Hongtao Ho
5、u,TTC workshop,RIKEN,Japan,June 2018Hongtao Hou,TTC workshop,RIKEN,Japan,June 2018SLS:passiveFEmax=2.4 GeV Ibeam=400 mA 1 Nb/Cu HCs fharm=3 fRF 3 times length 2.2 times lifetime Elettra:passiveFEmax=2.0 GeV Ibeam=320 mA 1 Nb/Cu HCs fharm=3 fRF 3 times length 3.5 times lifetime APS-U:passive+FPCFEmax
6、=6.0 GeV Ibeam=200 mA 1 Nb cavity fharm=4 fRF 3 times length 3.5 times lifetime NSLS-II:passive,FEmax=3.0 GeV Ibeam=500 mA F2-cell Nb cavity fharm=3 fRF 2 times lifetime Worldwide SC harmonic cavitiesIn operationUnder developmentHongtao Hou,TTC workshop,RIKEN,Japan,June 2018Contents1.Background2.Des
7、ign Specification3.Harmonic Cryomodule Design4.Control and interlock5.SummaryHongtao Hou,TTC workshop,RIKEN,Japan,June 20182.Design SpecificationFGoal:Lifetime increase factor2,bunch lengthening factor2 Low transient beam loading:R/Q 90 Ohm;Passive cavity,1.5 GHz Q0 1.0 E10 Eacc=10 MV/m(VT)FHigh sta
8、ble and reliable SRF module:high performance niobium cavity,reliable tuner,HOM heavily damped;PLC-based control for cryomodule;FHarmonic cavity voltage control:constant voltage operation mode,digital LLRF,mechanic+pizeo tuner;FInterlock and machine protection system:PLC based,cryomodule monitoring,i
9、nterlock with main rf systemFLimited by installation space available(2 m)and higher harmonic voltage required(1.8 MV),resulting in one module with a double-cell cavity operation at 2.0 K.(low gradient,easier to reach and 2K operation stable)Hongtao Hou,TTC workshop,RIKEN,Japan,June 2018Specification
10、Harmonic systemFBunch lengthening factor:2FBeam lifetime increase factor:2ParameterDescriptionValueEBeam energy3.5 GeVCCircumference432 mIdcDC beam current0.2 0.3 AfrfRF frequency499.654 MHzhHarmonic number720Momentum compaction4.2e-4Energy spread0.001U0Radiation loss per turn1.4 MeVVrfMain rf volta
11、ge4.5 5.4 MVQsNominal synchrotron tune0.0075lNominal rms bunch length3.8 mmVhHarmonic rf voltage1.4 1.8 MVSchematic Diagram of Third Harmonic ModuleTable-1:Parameters of SSRF Storage Ring00.511.526420246Phase(rad)Voltage(MV)66V.tz()V.mz()V.hz()V.xz()20 z()Hongtao Hou,TTC workshop,RIKEN,Japan,June 20
12、18Physics calculation0.20.100.10.2010020030004080120Longitudinal position/mPotential(a.u.)Normalized bunch densitymo_nz()h_nz()z()hz()z 1)、Double rf system:optimal lengthening factor 4Bunch shape lengthenedMomentum acceptanceBunch shape with harmonic voltage01002003004005006007001.822.22.42.62.8Buck
13、et numberLengthening factor01002003004005006007003.844.24.44.64.85Bucket numberlengthening factor010020030040050060070012345Bucket numberLengthenling factor2)、Lengthening effect with different filling pattern:factor 2Long bunch train:500 filling+220 gapShort bunch train:100 filling+44 gaps,5 trains5
14、00 bunches+1 high current bunch(9mA)Hongtao Hou,TTC workshop,RIKEN,Japan,June 2018Contents1.Background2.Design Specification3.Harmonic Cryomodule Design4.SummaryHongtao Hou,TTC workshop,RIKEN,Japan,June 20183.1 Choice of cavity shapeSimilar to 3HC at SLS and ElettraRequired HOM couplers on the pipes
15、 between cellsThe HOM couplers will need cryogenic cooling2-cell wo coupling2-cell wo coupling2-cell wi coupling enlarged pipe2-cell wi coupling fluted pipe2-cell structure with cell couplingHOM propagation by the beam pipe;Fluted beam pipe resulted in a shorter niobium cavityBeam line HOM damper,ou
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