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Z-pinch plasma lens focusing of a heavy-ion beam

: Boggasch, E.; Jacoby, J.; Wahl, H.; Dietrich, K.-G.; Hoffmann, D.H.H.; Laux, W.; Elfers, M.; Haas, C.R.; Dubenkov, V.P.; Golubev, A.A.

Bulletin of the American Physical Society 66 (1991), Nr.13
ISSN: 0003-0503
Fraunhofer ILT ()
aberration; energy loss; focal length; high-energy beam; magnetic lens; magnetic rigidity; plasma lens; z-pinch

For the first time a heavy-ion beam was focused using a z-pinch plasma lens. The diameter of an incident, parallel, 460-MeV argon-ion beam was reduced from 8 mm (FWHM) to 2 mm within 230 mm downstream of the plasma. Inside a cylindrically symmetric plasma column a high-gradient, azimuthal magnetic field is produced during a z-pinch discharge. For axially moving, high-energy charged particles this field configuration provides strong, first-order focusing simultaneously in both transversal planes. The measured spot size agrees with numerical calculations taking into account the finite beam emittance, and charge exchange as well as energy-loss processes contributing to aberrations.