Published 1975 | Version v1
Report

Intense synchrotron radiation from a magnetically compressed relativistic electron layer

  • 1. Univ. of California, Livermore

Description

Using a simple model of a relativistic electron layer rotating in an axial magnetic field, energy gain by an increasing magnetic field and energy loss by synchrotron radiation were considered. For a typical example, initial conditions were approximately 8 MeV electron in an approximately 14 kG magnetic field, at a layer radius of approximately 20 mm, and final conditions were approximately 4 MG magnetic field approximately 100 MeV electron layer energy at a layer radius of approximately 1.0 mm. In the final state, the intense 1 to 10 keV synchrotron radiation imposes an electron energy loss time constant of approximately 100 nanoseconds. In order to achieve these conditions in practice, the magnetic field must be compressed by an imploding conducting liner; preferably two flying rings in order to allow the synchrotron radiation to escape through the midplane. The synchrotron radiation loss rate imposes a lower limit to the liner implosion velocity required to achieve a given final electron energy (approximately 1 cm/μsec in the above example). In addition, if the electron ring can be made sufficiently strong (field reversed), the synchrotron radiation would be a unique source of high intensity soft x-radiation

Additional details

Publishing Information

Imprint Title
Proceedings of the international topical conference on electron beam research and technology
Imprint Pagination
p. 78-95.
Report number
SAND--76-5122(Vol.2)

Conference

Title
1. international topical conference on electron beam research and technology.
Dates
3 Nov 1975.
Place
Albuquerque, New Mexico, USA.

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
7266774
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ELECTRON BEAMS; ENERGY LOSSES; MAGNETIC FIELDS; SYNCHROTRON RADIATION; TOROIDAL CONFIGURATION
Descriptors DEC
ANNULAR SPACE; BEAMS; BREMSSTRAHLUNG; CONFIGURATION; ELECTROMAGNETIC RADIATION; LEPTON BEAMS; PARTICLE BEAMS; RADIATIONS