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Strong reduction of the effective radiation length in an axially oriented scintillator crystal

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arxiv 1803.10005 v5 pith:M7K7N2HQ submitted 2018-03-27 physics.ins-det hep-ex

Strong reduction of the effective radiation length in an axially oriented scintillator crystal

classification physics.ins-det hep-ex
keywords scintillatorcrystalorientedradiationaxiallybeamcasecompared
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We measured a considerable increase of the emitted radiation by 120 GeV/c electrons in an axially oriented lead tungstate scintillator crystal, if compared to the case in which the sample was not aligned with the beam direction. This enhancement resulted from the interaction of particles with the strong crystalline electromagnetic field. The data collected at the external lines of CERN SPS were critically compared to Monte Carlo simulations based on the Baier Katkov quasiclassical method, highlighting a reduction of the scintillator radiation length by a factor of five in case of beam alignment with the [001] crystal axes. The observed effect opens the way to the realization of compact electromagnetic calorimeters/detectors based on oriented scintillator crystals in which the amount of material can be strongly reduced with respect to the state of the art. These devices could have relevant applications in fixed-target experiments as well as in satellite-borne gamma-telescopes.

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