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Coherent Bremsstrahlung, Coherent Pair Production, Birefringence and Polarimetry in the 20-170 GeV energy range using aligned crystals

The processes of coherent bremsstrahlung (CB) and coherent pair production (CPP) based on aligned crystal targets have been studied in the energy range 20-170 GeV. The experimental arrangement allowed these phenomena as well as their polarization dependence to be evaluated under conditions where sin...

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Detalles Bibliográficos
Autores principales: Apyan, A., Avakian, R.O., Badelek, B., Ballestrero, S., Biino, C., Birol, I., Cenci, P., Connell, S.H., Eichblatt, S., Fonseca, T., Freund, A., Gorini, B., Groess, R., Ispirian, K., Ketel, T.J., Kononets, Yu.V., Lopez, A., Mangiarotti, A., van Rens, B., Sellschop, J.P.F., Shieh, M., Sona, P., Strakhovenko, V., Uggerhoj, E., Uggerhoj, Ulrik Ingerslev, Unel, G., Velasco, M., Vilakazi, Z.Z., Wessely, O.
Lenguaje:eng
Publicado: 2005
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevSTAB.11.041001
http://cds.cern.ch/record/913585
Descripción
Sumario:The processes of coherent bremsstrahlung (CB) and coherent pair production (CPP) based on aligned crystal targets have been studied in the energy range 20-170 GeV. The experimental arrangement allowed these phenomena as well as their polarization dependence to be evaluated under conditions where single-photon cross-sections could be measured. This proved very important as the theoretical description of CB and CPP is an area of active theoretical debate and development. The theoretical approach used in this paper predicts both the cross sections and polarization observables very well for the experimental conditions investigated, indicating that the understanding of CB and CPP is reliable up to energies of 170 GeV. A birefringence effect in CPP was studied and it was demonstrated this enabled new technologies for high energy photon beam optics, such as polarimeters (for both linear and circular polarization) and phase plates. We also present new results regarding the features of coherent high energy photon emission for the Strings-Of-Strings (SOS) orientation, where the coherent enhancement of hard photon radiation is larger than for the CB case. The photon polarization in this case has been controversial. Our measurements commented on this situation as well.