Multi-energy cargo inspection system based on an electron accelerator
A multi-energy cargo inspection system features a compact electron accelerator is used that is more compact, more efficient and less expensive than a single linear accelerator with the same energy. The system has enhanced capabilities to recognize the elemental content of a container which can be used to detect concealed explosive and fissionable materials.
1. A cargo inspection system which comprises a compact multi-energy electron accelerator comprising a race-track microtron having a maximum electron energy of 10 MeV.
2. The cargo inspection system of claim 1 , wherein the electron accelerator generates electron beams of at least three different exit electron energies.
3. The cargo inspection system of claim 2 , wherein the electron accelerator generates electron beams of four different exit electron energies, each of which is no greater than 10 MeV.
4. The cargo inspection system of claim 1 , wherein the microtron includes an electron gun that injects the electron beam directly into a linear accelerator without the use of compensation dipoles.
5. The cargo inspection system of claim 1 , wherein the microtron comprises an electron gun which creates an electron beam, a linear accelerator through which the beam is accelerated, and a pair of end magnets which deflect the beam back through the linear accelerator several times.
6. The cargo inspection system of claim 1 , wherein the microtron includes end magnets made of rare earth permanent magnet material.
7. The cargo inspection system of claim 1 , comprising in addition a bremsstrahlung target at which the electron beam from the microtron is directed generating bremsstrahlung radiation in response thereto, and a detector which senses attenuation of radiation from an object.
8. The cargo inspection system of claim 1 , wherein the microtron is substantially no more than 1 meter in length.
9. The cargo inspection system of claim 1 , wherein the microtron is substantially no heavier than 60 kg.