Published March 1, 2010 | Version v1
Journal article

Physical and mechanical metallurgy of high purity Nb for accelerator cavities

  • 1. Michigan State University, East Lansing, MI (United States)
  • 2. Texas A and M University, College Station, TX (United States)
  • 3. Oak Ridge National Laboratory, TN (United States)
  • 4. Argonne National Laboratory, Argonne, IL (United States)

Description

In the past decade, high Q values have been achieved in high purity Nb superconducting radio frequency (SRF) cavities. Fundamental understanding of the physical metallurgy of Nb that enables these achievements is beginning to reveal what challenges remain to establish reproducible and cost-effective production of high performance SRF cavities. Recent studies of dislocation substructure development and effects of recrystallization arising from welding and heat treatments and their correlations with cavity performance are considered. With better fundamental understanding of the effects of dislocation substructure evolution and recrystallization on electron and phonon conduction, as well as the interior and surface states, it will be possible to design optimal processing paths for cost-effective performance using approaches such as hydroforming, which minimizes or eliminates welds in a cavity.

Additional details

Publishing Information

Journal Title
Physical Review Special Topics. Accelerators and Beams
Journal Volume
13
Journal Issue
3
Journal Page Range
p. 031002
ISSN
1098-4402

Optional Information

Contract/Grant/Project number
KC0202010; ERKCS73; AC05-00OR22725
Notes
doi 10.1103/PhysRevSTAB.13.031002
Funding organization
SC USDOE - Office of Science (United States)