(4 areas/website front)

Slides:



Advertisements
Similar presentations
Superconducting RF Cavities for Particle Accelerators: An Introduction Ilan Ben-Zvi Brookhaven National Laboratory.
Advertisements

February 17-18, 2010 R&D ERL Andrew Burrill R&D ERL SRF Electron Gun Andrew Burrill February 17-18, 2010 SRF Electron Gun.
SRF Cryomodule Assembly Facility Plans Tug Arkan AAC, May 10-12, 2005.
SM18 Vertical/Horizontal Test Setup LHC Crab Cavity Engineering Meeting Session: Cavity Cryostat Testing & Integration in SM18Cavity Cryostat Testing &
The HiLumi LHC Design Study (a sub-system of HL-LHC) is co-funded by the European Commission within the Framework Programme 7 Capacities Specific Programme,
Thin Films for Superconducting Cavities HZB. Outline Introduction to Superconducting Cavities The Quadrupole Resonator Commissioning Outlook 2.
Cryomodule Concept for the ODU RF Dipole Crab Cavity Tom Nicol* - Fermilab December 10, 2013 * With lots of help from HyeKyoung, Tom J, Shrikant, Ofelia,
Dr. Michael Peiniger Superconducting RF activities at RI Research Instruments with a focus on EXFEL cavity production.
제2회 국제선형충돌가속기(ILC) Workshop
SPX - Cavity WBS U , U , U Genfa Wu SRF Scientist Accelerator Systems Division/RF Group DOE Lehman CD-2 Review of APS-Upgrade.
Shekhar Mishra, Fermilab Mark J. Oreglia, Univ. of Chicago
1 Low-energy RHIC electron Cooler (LEReC) cost estimate December 2, 2014.
Accelerators for ADS March 2014 CERN Approach for a reliable cryogenic system T. Junquera (ACS) *Work supported by the EU, FP7 MAX contract number.
Summary of WG 2 - cavities W. Weingarten 15th SPL Collaboration Meeting CERN - 25/26 Nov Cavity WG.
Work toward Stainless Steel SRF Helium Vessels at Fermilab Tom Peterson (presenter), Information from Jeff Brandt, Serena Barbanotti, Harry Carter, Sergei.
STF plan overview H. Hayano, KEK LCPAC 02/25/2005.
July LEReC Review July 2014 Low Energy RHIC electron Cooling Sergey Belomestnykh SRF and RF systems.
D.Proch, DESY; GDE meeting Vancouver 06 Technical systems: Cavity Report Overview on costing activities for ILC –European costing method Overview industrial.
High Q R&D at JLab G. Ciovati, P. Dhakal, R. Geng, P. Kneisel, G. Myneni TTC Topical Meeting on CW SRF Cornell Univ., June 12 th -14 th, 2013.
SM18 INFRASTRUCTURE Crab Cavity CryoModule – Conceptual Design Meeting
The ESS Linear Accelerator
High pure Niobium Industrialisation, Alternative Production Ways, and Strategic Cooperation.
Comparison of Fermilab Proton Driver to Suggested Energy Amplifier Linac Bob Webber April 13, 2007.
February 17-18, 2010 R&D ERL Gary McIntyre R&D ERL ERL Status & Schedule Gary McIntyre February 17-18, 2010 ERL Status & Schedule.
October, 2009 Cost of SRF Components Gary McIntyre October, 2009 Internal Review.
IHEP GHz 9-cell Cavity R&D Status and Plan The Third IHEP-KEK 1.3GHz SC Technology Collaboration Meeting Dec. 7-8, 2010, IHEP, Beijing GAO Jie,
Satish Chandra Joshi Raja Ramanna Centre for Advanced Technology, Indore, India Presentation in Web Meeting with Fermilab April 20, 2009.
NML - RF Unit Test Facility Jerry Leibfritz Fermilab.
Overview on DESY Infrastructure and up date/ grade Activities schedule status and plans Axel Matheisen DESY.
26 April, 2016 LCLS II Cryomodules and Cryoplant, Joe Preble LCLS-II Overview JLAB Organization for LCLS-II JLAB responsibilities & Schedule and Status.
1 Project X Workshop November 21-22, 2008 Richard York Chris Compton Walter Hartung Xiaoyu Wu Michigan State University.
7th SRF Materials Workshop FRIB SRF Cavities 7/16/12 Chris Compton.
Andrew BurrillFall 2011 Project X Collaboration Meeting 650 MHz Developments at JLAB Andrew Burrill for the JLab Team.
Spoke section of the ESS linac: - the Spoke cryomodules - the cryogenic distribution system P. DUTHIL (CNRS-IN2P3 IPN Orsay / Division Accélérateurs) on.
Developing the Collaboration P McIntosh STFC Daresbury Laboratory.
SRF Test Facilities – Functions and Costs Alexander Romanenko Test Facilities Review 17 Mar 2015.
Shuichi NoguchiTTC Meeting at Milano, Injector Cryomodule for cERL at KEK Cavity 2 Prototypes were tested. Input Coupler 2 Couplers were tested.
ESS Cryomodule Status Meeting – Introduction | | Christine Darve Introduction to Cryomodules for the ESS 2013 January, 9 th Christine Darve.
Thomas Jefferson National Accelerator Facility Operated by the Southeastern Universities Research Association for the U.S. Department of Energy Jefferson.
26 October 2010IIFC meeting, RRCAT Indian Institutions and Fermilab Collaboration Activities at IUAC Presented by D. Kanjilal Inter-University Accelerator.
SRF Advances for ATLAS and Other 
650 MHz, Beta = 0.9, 11 April 2012Page 1650 MHz, Beta = 0.9, 11 April 2012Page 1 Project X Beta = 0.9, 650 MHz Cavity and Cryomodule Status Tom Peterson.
Infrastructure status and plans at CERN 1) W. Weingarten/CERN TTC Milano 28 February - 3 March W. Weingarten/CERN 1)Most of the slides are based.
CERN – ENGINEERING DEPARTMENT: A. Dallocchio on behalf of EN-MME
RF SC CAVITIES –a story AMICI Industry days – Padova April 2017.
Surface Resistance of a bulk-like Nb Film Sarah Aull, Anne-Marie Valente-Feliciano, Tobias Junginger and Jens Knobloch.
WP High Beta Cavities Delivery
CERN – Zanon discussions
Superconducting RF Photoelectron Source -
T5.2: Harmonization - Material and Component Reference
State of the Art and Future Potential of Nb/Cu Coatings
Progress and Issues with VTS Upgrade
Activities of Cavity Fabrication Facility at KEK
Hosting Orsay Walid KAABI
SC spoke cavity for China-ADS 3~10MeV injector
EZ Infrastructure for SC cavities production
Jiyuan Zhai ( IHEP ) TTC Meeting, JLAB, 6 Nov 2012
P. Maesen for CERN BE/RF-SRF team
Recent SCRF Activities in IHEP
BriXS – MariX WG 8,9 LASA December 13, 2017.
Superconducting RF Crab Cavities
UK RFD Pre-Series cryomodule
Presentation at the 2012 IEEE Nuclear Science Symposium
Operation experience of cryogenic system and cryomodules for the superconducting linear accelerator at IUAC, New Delhi. T S Datta ( On behalf of Cryogenics.
IHEP Cryomodule Status
RF Techniques and Developments at SSRF
IHEP ILC Cavity Status Jiyuan Zhai (IHEP)
Cryomodules Challenges for PERLE
Daresbury ESS In-Kind Contributions
HWR and Test Cryomodule for China ADS
Presentation transcript:

(4 areas/website front) Areas of Expertise (4 areas/website front) Recent News Products Niobium SRF Cavities SRF Electron Guns SRF Cryomodules Infrastructure Contact us Directions Careers In-Stock Niobium Niobium Cavities Electron Guns & Injectors Cryomodules & Turn-key Accelerators 1

Niobium Niobium In-Stock RRR Testing Other metals In-Stock: RRR300 and Reactor Grade Link to Nb RRR specifications Sheets of various thickness: 2.0mm, 2.8mm, 3.0mm, 4.0mm Rods and ingots, fine and large grain RRR Testing Residual Resistivity Ratio (RRR) Measurement of purity to qualify Niobium RRR results in 4 weeks after receipt of samples Other metals In-Stock: Niobium-Titanium alloy Titanium OFHC Copper Magnetic Shields Niobium and Mu-metal shields (DC & AC)

Niobium Cavities Electron Guns & Injectors Elliptical Cavities 100 – 500 MHz Quarter-wave Up to 7 MeV Elliptical Cavities 1.3 GHz nine-cell cavity (ILC / TESLA) 1.5 GHz Landau two-cell cavity Spoke Cavities 325 MHz single spoke resonator (Project-X) 500 MHz multi-spoke resonator for electrons Half-wave and Quarter-wave Cavities 28 MHz tunable quarter-wave cavity (RHIC) 56 MHz quarter-wave cavity (RHIC) 80.5 MHz β=.085 quarter-wave cavity (FRIB) 322 MHz β =.53 half-wave cavity Deflecting/Crab Cavities 400 MHz parallel-bar crab cavity (LHC) 3.9 GHz crab cavity (ILC) Flanges Niobium/Stainless Steel Niobium/Niobium-Titanium Other Niobium and Mu-metal magnetic shields (DC & AC) Niobium components machined and welded

SRF Electron Guns 500 MHz Quarter-wave Electron Gun Design energy: 1-5 MeV Peak energy: 4K operating temperature One year from design to successful cryogenic testing See more details from the ERL09 presentation (link) 200 MHz Quarter-wave Electron Gun 112 MHz Quarter-wave Electron Gun

Complete cryomodules SRF Cryomodules & Turnkey Accelerators Only company worldwide capable of building and testing turnkey accelerators Complete 4K and 2K cryogenic testing capability 5-10 Watt cryo-coolers and integration with larger cryo-plants License to operate radiation device from State of Michigan/NRC Complete cryomodules SRF cavity Buffered Chemical Polish (BCP) processing Ultra-Pure Water (UPW) high-pressure rinse Class 100 Cleanroom assembly Insulated Helium vessel Insulated Nitrogen shield for pre-cooling 1 mT Magnetic shield Helium level, temperature and pressure sensors

Infrastructure Design Fabrication Processing Accelerator Testing Complete electromagnetic and mechanical design capability Solidworks 2010, Superfish, Analyst Fabrication Complete CNC machine shop MasterCam 2010 Processing Buffered Chemical Polish (BCP) facility Class 100 Cleanroom large enough for ILC cryomodule 18 MΩ·cm Ultra-Pure Water (UPW) high-pressure rinse facility Accelerator Testing Complete 4K and 2K cryogenic testing capability Customized diagnostics for each system tested License to operate radiation device from State of Michigan/NRC