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Spectroscopy / Luminescence / Fluorescence / Photochemistry / Scintillator / Scintillation / Polaron / Ionizing radiation / Phosphor / Chemistry / Physics / Particle detectors


QUENCHING PROCESS IN AN IONIZING PARTICLE TRACK FOR ORGANIC CRYSTALLINE SCINTILLATION DETECTORS N.Z. Galunov1 , V.P. Seminozhenko2 , E.V. Martynenko1 , O.A. Tarasenko1∗ 1
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Document Date: 2013-06-19 10:35:59


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City

Kharkov / Riga / Dresden / London / Crimea / New York / Kiev / Oxford / /

Company

Molecular Electronics / N.Z. Galunov B.V. / Clarendon Press / /

Country

Germany / Ukraine / /

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Facility

American Institute / /

IndustryTerm

considered energy / excitation energy exchange / Charge carrier transport phenomena / radiation energy / high-energy secondary electrons / energy conversion efficiency / crystalline substitution solution / radiation energy exchange / geological applications / high-energy radiation / organic condensed media / charge carrier / excitation energy / uncompensated charge carrier / energy loss dE/dr increase / energy loss / appreciable additional energy loss / energy exchange / charge carrier scattering / carrier genvestigation / energy loss dE/dr / surplus charge carrier / alpha particle energy / energy / /

Organization

American Institute / Korean Association for Radiation Protection / Institute for Single Crystals / Institute for Scintillation Materials / State Scientific Institution / National Academy of Sciences / /

Person

E.A. Silinsh / V / M.V. Kurik / V / A. Syntfeld-Kazuch / N.Z. Galunov / V / A.M. Stepanenko / V / Ai / E.V.Martynenko / V / R. Voltz / /

Position

author / Fisher / R. Spohr / Mp / negative molecular quasi-ion Mp / V.P. / King / /

Technology

alpha / radiation / semiconductors / v. 42 / recombination / /

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