Literature DB >> 31472603

Gradient magnet design for simultaneous detection of electrons and positrons in the intermediate MeV range.

G Tiwari1, R Kupfer1, X Jiao1, E Gaul2, B M Hegelich1.   

Abstract

We report the design and development of a compact electron and positron spectrometer based on tapered neodymium iron boron magnets to characterize the pairs generated in laser-matter experiments. The tapered design forms a gradient magnetic field component allowing energy dependent focusing of the dispersed charged particles along a chosen detector plane. The mirror symmetric design allows for simultaneous detection of pairs with energies from 2 MeV to 500 MeV with an accuracy of ≤10% in the wide energy range from 5 to 110 MeV for a parallel beam incident on a circular aperture of 20 mm. The energy resolution drops to ≤20% for 4-90 MeV range for a divergent beam originating from a point source at 20 cm away (i.e., a solid angle of ∼8 milli steradians), with ≤10% accuracy still maintained in the narrower energy range from 10 to 55 MeV. It offers higher solid angle acceptance, even for the divergent beam, compared to the conventional pinhole aperture-based spectrometers. The proposed gradient magnet is suitable for the detection of low flux and/or monoenergetic type electron/positron beams with finite transverse sizes and offers unparalleled advantages for gamma-ray spectroscopy in the intermediate MeV range.

Entities:  

Year:  2019        PMID: 31472603     DOI: 10.1063/1.5099155

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  1 in total

1.  Compact spectroscopy of keV to MeV X-rays from a laser wakefield accelerator.

Authors:  A Hannasch; A Laso Garcia; M LaBerge; R Zgadzaj; A Köhler; J P Couperus Cabadağ; O Zarini; T Kurz; A Ferrari; M Molodtsova; L Naumann; T E Cowan; U Schramm; A Irman; M C Downer
Journal:  Sci Rep       Date:  2021-07-13       Impact factor: 4.379

  1 in total

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