This report deals with the radiological considerations of operations using 7700-MeV positron and electron beams in the storage ring (SR) tunnel. The radiological considerations addressed include the following: prompt secondary radiation (bremsstrahlung, giant resonance neutrons, medium and high energy neutrons, and muons) produced by electrons/positrons interacting in a beam stop or by particle losses in the component structures; skyshine radiation, which produces a radiation field in nearby areas and at the nearest off-site location; radioactive gases produced by neutron irradiation of air in the vicinity of a particle loss site; noxious gases (ozone and others) produced in air by the escaping bremsstrahlung radiation that results from abs...
Synchrotron radiation interacting with the vacuum chamber walls in a storage ring produce photoelect...
High energy electron accelerators installed in hospitals to provide routine electron and X-ray thera...
Abstract Table I. The nominal parameters for the storage ring The spectrum of the 1.3 GeV storage ri...
Radiological considerations for the operation of the storage ring prior to top-up operation have bee...
The Low-Energy Undulator Test Line (LEUTL) is a facility that uses the existing APS linac to acceler...
High energy electron storage rings generate energetic bremsstrahlung photons through radiative inter...
There are more and more third-generation synchrotron radiation (SR) facilities in the world that uti...
The Advanced Photon Source (APS) currently under construction at Argonne National Laboratory will be...
Abstract Active interrogation methods are being investigated to detect shielded special nuclear mate...
The Advanced Photon Source (APS) is a third-generation synchrotron radiation source that stores posi...
The 3rd generation synchrotron radiation (SR) facilities are storage ring based facilities with many...
In this document we present the characteristics of the electromagnetic radiation from various types ...
The Advanced Photon Source (APS) at Argonne National Laboratory is a national synchrotron-radiation ...
The SPEAR3 storage ring at the Stanford Synchrotron Radiation Laboratory (SSRL) is an upgrade of the...
The 2.5 GeV electron storage ring of the Photon Factory is a dedicated synchrotron radiation source?...
Synchrotron radiation interacting with the vacuum chamber walls in a storage ring produce photoelect...
High energy electron accelerators installed in hospitals to provide routine electron and X-ray thera...
Abstract Table I. The nominal parameters for the storage ring The spectrum of the 1.3 GeV storage ri...
Radiological considerations for the operation of the storage ring prior to top-up operation have bee...
The Low-Energy Undulator Test Line (LEUTL) is a facility that uses the existing APS linac to acceler...
High energy electron storage rings generate energetic bremsstrahlung photons through radiative inter...
There are more and more third-generation synchrotron radiation (SR) facilities in the world that uti...
The Advanced Photon Source (APS) currently under construction at Argonne National Laboratory will be...
Abstract Active interrogation methods are being investigated to detect shielded special nuclear mate...
The Advanced Photon Source (APS) is a third-generation synchrotron radiation source that stores posi...
The 3rd generation synchrotron radiation (SR) facilities are storage ring based facilities with many...
In this document we present the characteristics of the electromagnetic radiation from various types ...
The Advanced Photon Source (APS) at Argonne National Laboratory is a national synchrotron-radiation ...
The SPEAR3 storage ring at the Stanford Synchrotron Radiation Laboratory (SSRL) is an upgrade of the...
The 2.5 GeV electron storage ring of the Photon Factory is a dedicated synchrotron radiation source?...
Synchrotron radiation interacting with the vacuum chamber walls in a storage ring produce photoelect...
High energy electron accelerators installed in hospitals to provide routine electron and X-ray thera...
Abstract Table I. The nominal parameters for the storage ring The spectrum of the 1.3 GeV storage ri...