16
Muon Collider Targetry Workshop Princeton University, Feb. 27, 1998 Experience with High Flux Targets - Summary of presentation Colin Johnson, CERN The AA/ACOL antiproton production target received 26 GeV proton beams of around 1 x 10 13 protons per pulse at a repetition rate of 0.42 Hz (i.e. 1/200 of the mean power of the proton driver for the pion production target) AA/ACOL production targets. The AA/ACOL target/Li-lens assemblies are shown in the first 4 transparencies. This ACOL target incorporated several years of R&D studies, some resulting in catastrophic damage. The target lifetime of this version (from 1988 onwards) was effectively unlimited. The Mercury Jet target. This was a laboratory experiment to test the feasibility of liquid jet targets. Some constructional details are presented together with computer enhanced photographs of the experiment - 4 transparencies. REXCO hydrodynamic shock simulations of a proton beam hitting a mercury target, i) contained within a stainless steel tube, and ii) in the form of a jet in vacuum, have been worked up from hitherto neglected runs by A. Poncet and are presented - 3 transparencies. Radioactivity and radiation issues. With high-flux targetry comes the problems of radiation damage and induced activity. A great deal of effort went into studying and documenting our experience - mainly the work of A. Sullivan. Our empirical formulae have been applied to the pion production target and capture solenoids - 3 transparencies. Slurry jet targetry. This turns out to be more difficult than I had imagined. High-density slurries are very viscous due to effects at the microscopic level: irregular grain shapes and grain-to-grain bonding. A relatively low-viscosity slurry was achieved by mixing WSe 2 with water, but the density was no higher than 4 g cm -3 - 1 transparency.

SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

  • Upload
    others

  • View
    1

  • Download
    0

Embed Size (px)

Citation preview

Page 1: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

Muon Collider Targetry WorkshopPrinceton University, Feb. 27, 1998

Experience with High Flux Targets - Summary of presentationColin Johnson, CERN

The AA/ACOL antiproton production target received 26 GeV protonbeams of around 1 x 1013 protons per pulse at a repetition rate of0.42 Hz (i.e. 1/200 of the mean power of the proton driver for the pionproduction target)

AA/ACOL production targets. The AA/ACOL target/Li-lensassemblies are shown in the first 4 transparencies. This ACOL targetincorporated several years of R&D studies, some resulting incatastrophic damage. The target lifetime of this version (from 1988onwards) was effectively unlimited.

The Mercury Jet target. This was a laboratory experiment to testthe feasibility of liquid jet targets. Some constructional details arepresented together with computer enhanced photographs of theexperiment - 4 transparencies. REXCO hydrodynamic shocksimulations of a proton beam hitting a mercury target, i) containedwithin a stainless steel tube, and ii) in the form of a jet in vacuum,have been worked up from hitherto neglected runs by A. Poncet andare presented - 3 transparencies.

Radioactivity and radiation issues. With high-flux targetrycomes the problems of radiation damage and induced activity. Agreat deal of effort went into studying and documenting ourexperience - mainly the work of A. Sullivan. Our empirical formulaehave been applied to the pion production target and capturesolenoids - 3 transparencies.

Slurry jet targetry. This turns out to be more difficult than Ihad imagined. High-density slurries are very viscous due to effects atthe microscopic level: irregular grain shapes and grain-to-grainbonding. A relatively low-viscosity slurry was achieved by mixingWSe2 with water, but the density was no higher than 4 g cm-3

- 1 transparency.

Page 2: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

AA target - horn assembly with water cooled collimators

target magnetic horn

Page 3: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

ACOL target - lithium lens assembly

target

Li lens

Page 4: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

ACOL antiproton production target

Titanium alloy body

beam

cooling water

Iridium targetclad in nickel

Design issues:

Shock wave damage - radial acousticimpedance matching

Radiation induced voids - reduces density

Fatigue -container exit window at risk

graphite

Page 5: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

ACOL antiproton production target

titanium alloy body (IMI318)

graphite

iridium clad in nickel

alumina end plug

c.d.johnson

Page 6: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998
Page 7: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998
Page 8: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

Mercury jet target - laboratory installation CERN-PS-AAA. Poncet

Page 9: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

High-speed photographs of mercury jet target for CERN-PS-AA (laboratory tests)

4,000 frames per second, Jet speed: 20 ms-1, diameter: 3 mm, Reynold’s Number:>100,000A. Poncet

Page 10: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998
Page 11: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

t=0

t=2.5 µs

t=1.8 µs

t=0.6 µs

REXCO plots ofAA mercury jet

A. Poncet

Page 12: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998
Page 13: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998
Page 14: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998
Page 15: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998

For the pion production target the water will be radioactive. Maybe a liquid metal (e.g. lead) primary cooling circuit will be preferred.

The 4 MW cooling tower for AA

Page 16: SUMMARY - hep.princeton.eduhep.princeton.edu/mumu/johnson/all-figs.pdf · Title: SUMMARY.DOC Author: C.D. Johnson Subject: Summart of AA/ACOL target presentation Created Date: 3/31/1998