Cargando…

Non-Linear Optical Phenomena in Detecting Materials as a Possibility for Fast Timing in Detectors of Ionizing Radiation

The time resolution of the detectors currently in use is limited by 50-70 ps due to the spontaneous processes involved in the development of the response signal, which forms after the relaxation of carriers generated during the interaction. In this study, we investigate the feasibility of exploiting...

Descripción completa

Detalles Bibliográficos
Autores principales: Korjik, M. V., Auffray, E., Buganov, O., Fedorov, A. A., Emelianchik, I., Griesmayer, E., Mechinsky, V., Nargelas, S., Sidletskiy, O., Tamulaitis, G., Tikhomirov, S. N., Vaitkevicius, A.
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: IEEE Trans. Nucl. Sci. 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TNS.2016.2617461
http://cds.cern.ch/record/2255690
_version_ 1780953708866043904
author Korjik, M. V.
Auffray, E.
Buganov, O.
Fedorov, A. A.
Emelianchik, I.
Griesmayer, E.
Mechinsky, V.
Nargelas, S.
Sidletskiy, O.
Tamulaitis, G.
Tikhomirov, S. N.
Vaitkevicius, A.
author_facet Korjik, M. V.
Auffray, E.
Buganov, O.
Fedorov, A. A.
Emelianchik, I.
Griesmayer, E.
Mechinsky, V.
Nargelas, S.
Sidletskiy, O.
Tamulaitis, G.
Tikhomirov, S. N.
Vaitkevicius, A.
author_sort Korjik, M. V.
collection CERN
description The time resolution of the detectors currently in use is limited by 50-70 ps due to the spontaneous processes involved in the development of the response signal, which forms after the relaxation of carriers generated during the interaction. In this study, we investigate the feasibility of exploiting sub-picosecond phenomena occurring after the interaction of scintillator material with ionizing radiation by probing the material with ultra-short laser pulses. One of the phenomena is the elastic polarization due to the local lattice distortion caused by the displacement of electrons and holes generated by ionization. The key feature of the elastic polarization is its short response time, which makes it prospective for using as an optically detectable time mark. The nonlinear optical absorption of femtosecond light pulses of appropriate wavelength is demonstrated to be a prospective tool to form the mark. This study was aimed at searching for inorganic crystalline media combining scintillation properties and non-linear absorption of ultra-short laser pulses. The nonlinear pump-and-probe optical absorption technique with 200 fs laser pulses was used to study the effects in lead tungstate, garnet-type, and diamond scintillator crystals.
format info:eu-repo/semantics/article
id cern-2255690
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
publisher IEEE Trans. Nucl. Sci.
record_format invenio
spelling cern-22556902022-08-10T12:47:14Z doi:10.1109/TNS.2016.2617461 http://cds.cern.ch/record/2255690 eng Korjik, M. V. Auffray, E. Buganov, O. Fedorov, A. A. Emelianchik, I. Griesmayer, E. Mechinsky, V. Nargelas, S. Sidletskiy, O. Tamulaitis, G. Tikhomirov, S. N. Vaitkevicius, A. Non-Linear Optical Phenomena in Detecting Materials as a Possibility for Fast Timing in Detectors of Ionizing Radiation Detectors and Experimental Techniques 14: Infrastructure for advanced calorimeters The time resolution of the detectors currently in use is limited by 50-70 ps due to the spontaneous processes involved in the development of the response signal, which forms after the relaxation of carriers generated during the interaction. In this study, we investigate the feasibility of exploiting sub-picosecond phenomena occurring after the interaction of scintillator material with ionizing radiation by probing the material with ultra-short laser pulses. One of the phenomena is the elastic polarization due to the local lattice distortion caused by the displacement of electrons and holes generated by ionization. The key feature of the elastic polarization is its short response time, which makes it prospective for using as an optically detectable time mark. The nonlinear optical absorption of femtosecond light pulses of appropriate wavelength is demonstrated to be a prospective tool to form the mark. This study was aimed at searching for inorganic crystalline media combining scintillation properties and non-linear absorption of ultra-short laser pulses. The nonlinear pump-and-probe optical absorption technique with 200 fs laser pulses was used to study the effects in lead tungstate, garnet-type, and diamond scintillator crystals. info:eu-repo/grantAgreement/EC/FP7/654168 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/2255690 IEEE Trans. Nucl. Sci. IEEE Trans. Nucl. Sci., 6 (2016) pp. 2979-2984 2016
spellingShingle Detectors and Experimental Techniques
14: Infrastructure for advanced calorimeters
Korjik, M. V.
Auffray, E.
Buganov, O.
Fedorov, A. A.
Emelianchik, I.
Griesmayer, E.
Mechinsky, V.
Nargelas, S.
Sidletskiy, O.
Tamulaitis, G.
Tikhomirov, S. N.
Vaitkevicius, A.
Non-Linear Optical Phenomena in Detecting Materials as a Possibility for Fast Timing in Detectors of Ionizing Radiation
title Non-Linear Optical Phenomena in Detecting Materials as a Possibility for Fast Timing in Detectors of Ionizing Radiation
title_full Non-Linear Optical Phenomena in Detecting Materials as a Possibility for Fast Timing in Detectors of Ionizing Radiation
title_fullStr Non-Linear Optical Phenomena in Detecting Materials as a Possibility for Fast Timing in Detectors of Ionizing Radiation
title_full_unstemmed Non-Linear Optical Phenomena in Detecting Materials as a Possibility for Fast Timing in Detectors of Ionizing Radiation
title_short Non-Linear Optical Phenomena in Detecting Materials as a Possibility for Fast Timing in Detectors of Ionizing Radiation
title_sort non-linear optical phenomena in detecting materials as a possibility for fast timing in detectors of ionizing radiation
topic Detectors and Experimental Techniques
14: Infrastructure for advanced calorimeters
url https://dx.doi.org/10.1109/TNS.2016.2617461
http://cds.cern.ch/record/2255690
http://cds.cern.ch/record/2255690
work_keys_str_mv AT korjikmv nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT auffraye nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT buganovo nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT fedorovaa nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT emelianchiki nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT griesmayere nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT mechinskyv nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT nargelass nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT sidletskiyo nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT tamulaitisg nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT tikhomirovsn nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation
AT vaitkeviciusa nonlinearopticalphenomenaindetectingmaterialsasapossibilityforfasttimingindetectorsofionizingradiation