ERHIC Low-Energy (FFAG) Ring Progress Report 2 November 19, 2013Stephen Brooks, eRHIC FFAG meeting1.

Slides:



Advertisements
Similar presentations
12 PERIOD HYBRID WARM-COLD SYNCHROTRON FOR THE MUON COLLIDER Al Garren November 10, 2011.
Advertisements

EMMA Magnet Design Ben Shepherd Magnetics and Radiation Sources Group ASTeC STFC Daresbury Laboratory.
Study of the Luminosity of LHeC, a Lepton Proton Collider in the LHC Tunnel CERN June F. Willeke, DESY.
Electron Model Components and Costing C. Johnstone Summary talk, C. Johnstone FFAG04 Oct 12-16, 2004 KEK, Tsukuba, Japan.
1 Dejan Trbojevic EIC Collaboration Meeting, Hampton University, Virginia May 19, 2008 Dejan Trbojevic e-RHIC with non-scaling FFAG’s.
FFAG Workshopfermilab April 2005 f Summary: FFAG WORKSHOP nonscaling electron model muon FFAGs C. Johnstone Fermilab.
Poster reference: FR5PFP025 Extending the Energy Range of 50Hz Proton FFAGs S.J. Brooks RAL, Chilton, OX11 0QX, UK Magnetic.
Rough Power Estimates for Fully Electromagnetic Quadrupoles June 30, 2014Stephen Brooks, eRHIC FFAG meeting1.
Problem The basic cells of eRHIC’s two stacked FFAG accelerators are designed for the ~380m radius of curvature of the RHIC tunnel arcs. However, RHIC’s.
S.J. Brooks RAL, Chilton, OX11 0QX, UK Options for a Multi-GeV Ring Ramping field synchrotron provides fixed tunes and small.
June 14th 2005 Accelerator Division Overview of ALBA D. Einfeld Vacuum Workshop Barcelona, 12 th -13 th September 2005 General 10 th September 2005.
Scaling VFFAG eRHIC Design Progress Report June 24, 2013Stephen Brooks, eRHIC FFAG meeting1.
S.J. Brooks RAL, Chilton, OX11 0QX, UK Extending FETS with a Ring Electron models are not sufficient for simulating the beam.
FFAG Tune-stabilized, Linear-field FFAG C. Johnstone, Fermilab S. Koscielniak, TRIUMF FFAG06 Japan f Fermilab.
ERHIC: an Efficient Multi-Pass ERL based on FFAG Return Arcs June 9, 2015Stephen Brooks, ERL On behalf of the eRHIC design team.
Jun'15 eRHIC Baseline Arc Cells June 24, 2015Stephen Brooks, eRHIC meeting1 Design for 4+12 turn FFAGs.
Dynamic Aperture Study for the Ion Ring Lattice Options Min-Huey Wang, Yuri Nosochkov MEIC Collaboration Meeting Fall 2015 Jefferson Lab, Newport News,
Adiabatic eRHIC Extraction June 3, 2015Stephen Brooks, eRHIC meeting1 With emittance growth analysis.
Scaling VFFAG eRHIC Design Progress Report 4 July 15, 2013Stephen Brooks, eRHIC FFAG meeting1.
Making the ATF into an ERL-FFAG May 27, 2015Stephen Brooks, eRHIC R&D retreat1 In relation to eRHIC risks addressed.
Arc to Straight Matching In both eRHIC FFAG rings January 13, 2014Stephen Brooks, eRHIC FFAG meeting1.
Magnet Design & Construction for EMMA
ERHIC FFAG Design for 21GeV I.Final Arc Cells for Design Report II.eRHIC FFAGs in RHIC Tunnel January 27, 2014Stephen Brooks, eRHIC FFAG meeting1.
ERHIC High-Energy FFAG Magnet (49.5T/m) Analytic Model April 2, 2014Stephen Brooks, eRHIC FFAG meeting1 Optimised to use less magnetic material.
17 th November, 2008 LCWS08/ILC08 1 BDS optics and minimal machine study Deepa Angal-Kalinin ASTeC & The Cockcroft Institute Daresbury Laboratory.
Vertical Emittance Tuning at the Australian Synchrotron Light Source Rohan Dowd Presented by Eugene Tan.
New Gantry Idea for H + /C 6+ Therapy G H Rees, ASTeC, RAL 4 th September, 2008.
Blue Skies Magnets 1.Vertical orbit-excursion FFAG 2.Omni-Magnet for FETS 3MeV ring February 2013Stephen Brooks, ASTC meeting1.
HYBRID WARM-COLD SYNCHROTRON FOR THE MUON COLLIDER Al Garren July 28, 2011.
Dejan Trbojevic Non-Scaling Fixed Gradient FFAG Optimization and Proton Therapy Accelerator from 25 – 250 MeV 12 – 16, October 2004 CONTENT:
FFAG Lattice Design of eRHIC and LHeC Dejan Trbojevic and Stephen Brooks EIC 2014 Workshop – Dejan Trbojevic and Stephen Brooks 1.
Principals of fast injection and extraction R. Apsimon.
Off-momentum DA of RCS 3D_BM & QFF & CC AP meeting / December 8, 2004 Alexander Molodozhentsev Etienne Forest KEK.
Cornell ERL-FFAG Lattice Using Dejan’s doublet arc cell September 2014Stephen Brooks, FFAG’141.
FFAG’ J. Pasternak, IC London/RAL Proton acceleration using FFAGs J. Pasternak, Imperial College, London / RAL.
ERHIC Orbit Correction Studies (Minor Update) Using Oct’14 lattice and dispersion diagnostic January 5, 2015Stephen Brooks, eRHIC FFAG meeting1.
“2:1” Scaled eRHIC FFAG Design Featuring ≤30T/m quadrupoles August 18, 2014Stephen Brooks, eRHIC FFAG meeting1.
Operated by the Southeastern Universities Research Association for the U.S. Depart. Of Energy Thomas Jefferson National Accelerator Facility Alex Bogacz,
Hybrid Synchrotron Arc: 2 Dipoles per Half Cell J. Scott Berg Advanced Accelerator Group Meeting 28 July 2011.
An eRHIC FFAG Design for 21GeV I.Lattices & Muon1 Results II.Comparison with Other Options III.To-do List & Design Report December 30, 2013Stephen Brooks,
Suzie Sheehy DPhil Candidate, John Adams Institute 3/9/08 PAMELA lattice studies Dynamics of the Machida lattice.
Finalising Oct’14 eRHIC lattices Including low-energy ring October 27, 2014Stephen Brooks, eRHIC FFAG meeting1.
Beam dynamics and linac optics studies for medical proton accelerators
April 17, Dejan TrbojevicFFAG07 -Non-Scaling FFAG gantries1 Non-Scaling FFAG Gantries Introduction: Motives: The most challenging problem in the carbon/proton.
Ultra-low Emittance Coupling, method and results from the Australian Synchrotron Light Source Rohan Dowd Accelerator Physicist Australian Synchrotron.
First evaluation of Dynamic Aperture at injection for FCC-hh
Optimization of the Collider rings’ optics
Halbach magnets and correctors for the C and eRHIC projects
FFAG Recirculation and Permanent Magnet Technology for ERL’s
Generalised Halbach Magnets for a Non-Scaling FFAG Arc
Zgoubi tracking study of the decay ring
eRHIC FFAG Lattice Design
PROGRESS REPORT OF A NLNS-FFAG ADS MAGNET
Large Booster and Collider Ring
Non-linear Beam Dynamics Studies for JLEIC Electron Collider Ring
Isochronous, FFAG Rings with Insertions for Rapid Muon or Electron Acceleration G H Rees, RAL.
Cb Magnet and Lattice Status
A brief Introduction of eRHIC
CASA Collider Design Review Retreat Other Electron-Ion Colliders: eRHIC, ENC & LHeC Yuhong Zhang February 24, 2010.
PS2 Injection/Extraction Layout
Collider Ring Optics & Related Issues
Negative Momentum Compaction lattice options for PS2
Comparison of NMC rings for PS2
PS2 meeting NMC lattice for PS2 Y. Papaphilippou September 28th, 2007.
Towards an NMC Ring: Dispersion suppressor & long straight section
Negative Momentum Compaction lattice options for PS2
Yuri Nosochkov Yunhai Cai, Fanglei Lin, Vasiliy Morozov
Towards an NMC Ring: Dispersion suppressor & long straight section
Progress Update on the Electron Polarization Study in the JLEIC
Sha Bai CEPC AP meeting Work summary Sha Bai CEPC AP meeting
Presentation transcript:

eRHIC Low-Energy (FFAG) Ring Progress Report 2 November 19, 2013Stephen Brooks, eRHIC FFAG meeting1

Economising a Dual-FFAG Girder The low energy ring (LER) has now changed energy to 920, 1828MeV Idea: make cell length to a multiple of the high-energy ring cell and use a common girder – 2x length means 50% more components – 3x length means only 33% more, etc. This applies to correctors, power supplies, cables and diagnostics as well as the magnets – Only valid if comparing doublet to doublet lattice November 19, 2013Stephen Brooks, eRHIC FFAG meeting2

Muon1 FFAG Optimisation Attempts to progressively cover the energy range with closed orbits with stable optics Optional additional constraints: – TuneMin, TuneMax – TOFRange, TOFRangeRel (maximum TOF variation) – MaxRadius (maximum distance from x,y=0,0) – MaxExcursion (maximum distance from first orbit) These last two are at matching plane only – Bore limit within a given component November 19, 2013Stephen Brooks, eRHIC FFAG meeting3

Muon1 FFAG Optimisation Secondly, once the energy range is covered successfully, tries to optimise a final figure of merit Current options: – TuneRange (minimise tune range) – TOFrange (minimise TOF variation) – SR_eRHIC (minimise eRHIC synchrotron radiation) November 19, 2013Stephen Brooks, eRHIC FFAG meeting4

Stuff That Would Be Nice to Have |B| max along any orbit – Is in the output but not yet a constraint or goal x max -x min of all orbits everywhere in curvilinear coordinate system – Is in the output but not yet a constraint or goal Largest x max -x min of all orbits in the rectangular local coordinate system of a single quadrupole – Plus r max relative to magnetic centre November 19, 2013Stephen Brooks, eRHIC FFAG meeting5

November 19, 2013Stephen Brooks, eRHIC FFAG meeting6 Old energy range Not offset quads Main FFAG TOF = 35.4ppm Main FFAG |B| max = T

Notes on Muon1 Quad Alignment November 19, 2013Stephen Brooks, eRHIC FFAG meeting7 Tunnel reference arc, R=378.26m Black lines are those for which the integral of  x from the arc in the quad length equals zero Blue lines are magnetic centres of quads, displaced by equal and opposite directions from the reference arc (same direction displacement would be machine radius change!)

‘h’ Lattice in Global Coordinates November 19, 2013Stephen Brooks, eRHIC FFAG meeting8

‘h’ Lattice in Tunnel Coordinates November 19, 2013Stephen Brooks, eRHIC FFAG meeting9

‘h’ Lattice in Magnet Coordinates November 19, 2013Stephen Brooks, eRHIC FFAG meeting10

Conclusion Depends on Tradeoffs Fewer magnets vs. smaller apertures – How does the per-unit cost of magnet assembly, testing, corrector coils and cables compare to the cost of a larger bore? Lower field vs. magnet length – Is there a special field level where we can use a cheap material like ferrite? Offset quads vs. combined function – Field quality in quads? Matching CF to straight? November 19, 2013Stephen Brooks, eRHIC FFAG meeting11

What Did the Input Look Like? {eRHIC low-energy FFAG ring for 920 and 1828MeV passes 'h' variant is 'g' with magnet lengths fixed at 70cm to avoid short, high-field magnet syndrome} #QL=0.7; #RL=0.7; {Parameter Value} QX [-7cm,7cm] #CellLength= *3; #Drifts=CellLength-QL-RL; DL [0,#Drifts#] #EL=Drifts-DL; #BendRadius=378.26; {Drift Length Angle} D #DL# #DL/BendRadius# HE #EL/2# #EL/2/BendRadius# {Multipole Length Angle Quad Xhere Fringe AlignMode} Q #QL# #QL/BendRadius# [-5,5] #-QX# 7cm Integral R #RL# #RL/BendRadius# [-5,5] #QX# 7cm Integral Cell: HE,Q,D,R,HE; {MatchScan Estart Egoal Estep Species TuneMin TuneMax MaxRadius FOM} Match 1828MeV 920MeV 908MeV Positron cm TOFrange {Match-Aperture} MatchEnd Cell,Match,Cell,MatchEnd,Cell; November 19, 2013Stephen Brooks, eRHIC FFAG meeting12