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proceeding

Method and device for tests of the laser optical calibration system for the Baikal-GVD underwater neutrino Cherenkov telescope

Konrad KopańskiInstitute of Nuclear Physics Polish Academy of Sciences ( IFJ PAN) , Krakow , Poland, 60179W. NogaInstitute of Nuclear Physics Polish Academy of Sciences ( IFJ PAN) , Krakow , Poland, 60179Pa. MaleckiInstitute of Nuclear Physics Polish Academy of Sciences (IFJ PAN), Krakow, Poland, 60179V. A. AllakhverdyanJoint Institute for Nuclear Research , Dubna , Russia, 141980А. В. АвроринInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312V. M. AynutdinovInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312R. BannaschEvoLogics GmbH , Berlin , Germany, 13355Z. BardаčováComenius University , Bratislava , Slovakia, 81499И. А. БелолаптиковJoint Institute for Nuclear Research , Dubna , Russia, 141980I. V. BorinaJoint Institute for Nuclear Research , Dubna , Russia, 141980V. BrudaninJoint Institute for Nuclear Research , Dubna , Russia, 141980Н. БудневIrkutsk State University , Irkutsk , Russia, 664003V. Y. DikJoint Institute for Nuclear Research , Dubna , Russia, 141980G. DomogatskyInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312А. А. ДорошенкоInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312R. DvornickýComenius University , Bratislava , Slovakia, 81499A. N. DyachokIrkutsk State University , Irkutsk , Russia, 664003Ж.-А. М. ДжилкибаевInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312E. EckerováComenius University , Bratislava , Slovakia, 81499T. V. ElzhovJoint Institute for Nuclear Research , Dubna , Russia, 141980L. FajtCzech Technical University in Prague , Prague , Czech Republic, 16000S.V. FialkovskyА. Р. ГафаровIrkutsk State University , Irkutsk , Russia, 664003K.V. GolubkovInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312N.S. GorshkovJoint Institute for Nuclear Research , Dubna , Russia, 141980Т. И. ГрессIrkutsk State University , Irkutsk , Russia, 664003M. S. KatulinJoint Institute for Nuclear Research, Dubna, Russia, 141980К. Г. КебкалEvoLogics GmbH, Berlin, Germany, 13355O.G. KebkalInstitute for Nuclear Research, Russian Academy of Sciences, Moscow, Russia, 117312E. KhramovJoint Institute for Nuclear Research , Dubna , Russia, 141980М. М. КолбинJoint Institute for Nuclear Research , Dubna , Russia, 141980K. V. KonischevJoint Institute for Nuclear Research , Dubna , Russia, 141980А. В. КоробченкоJoint Institute for Nuclear Research , Dubna , Russia, 141980А. П. КошечкинInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312V. A. KozhinSkobeltsyn Institute of Nuclear Physics MSU , Moscow , Russia, 119991М. В. КругловJoint Institute for Nuclear Research , Dubna , Russia, 141980M.K. KryukovInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312В. Ф. КулеповNizhny Novgorod State Technical University, Nizhny Novgorod, Russia, 603950Yury MalyshkinJoint Institute for Nuclear Research , Dubna , Russia, 141980M. Б. MиленинInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312Р. Р. МиргазовIrkutsk State University , Irkutsk , Russia, 664003D. NaumovJoint Institute for Nuclear Research , Dubna , Russia, 141980V. NazariJoint Institute for Nuclear Research , Dubna , Russia, 141980Д. П. ПетуховInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312E. N. PliskovskyJoint Institute for Nuclear Research , Dubna , Russia, 141980М. И. РозановSt. Petersburg State Marine Technical University , St. Petersburg , Russia, 190008V.D. RushayJoint Institute for Nuclear Research , Dubna , Russia, 141980E. V. RyabovIrkutsk State University , Irkutsk , Russia, 664003Grigory SafronovInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312B. A. ShaybonovJoint Institute for Nuclear Research , Dubna , Russia, 141980M.D. ShelepovF. ŠimkovicComenius University, Bratislava, Slovakia, 81499A.E. SirenkoJoint Institute for Nuclear Research , Dubna , Russia, 141980А. В. СкурихинSkobeltsyn Institute of Nuclear Physics MSU , Moscow , Russia, 119991A.G. SolovjevJoint Institute for Nuclear Research , Dubna , Russia, 141980М. Н. СороковиковJoint Institute for Nuclear Research , Dubna , Russia, 141980I. ŠteklCzech Technical University in Prague , Prague , Czech Republic, 16000A. P. StromakovInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312E. O. SushenokJoint Institute for Nuclear Research , Dubna , Russia, 141980О. В. СувороваInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312В. А. ТаболенкоIrkutsk State University , Irkutsk , Russia, 664003B. TarashanskyIrkutsk State University , Irkutsk , Russia, 664003Y. V. YablokovaJoint Institute for Nuclear Research , Dubna , Russia, 141980S. A. YakovlevEvoLogics GmbH , Berlin , Germany, 13355D. ZaborovInstitute for Nuclear Research , Russian Academy of Sciences , Moscow , Russia, 117312
2021en
ABI

Аннотация

The large-scale deep underwater Cherenkov neutrino telescopes like Baikal-GVD, ANTARES or KM3NeT, require calibration and testing methods of their optical modules. These methods usually include laser-based systems, which allow to check the telescope responses to the light and for real-time monitoring of the optical parameters of water such as absorption and scattering lengths, which show seasonal changes in natural reservoirs of water. We will present a testing method of a laser calibration system and a set of dedicated tools developed for Baikal-GVD, which includes a specially designed and built, compact, portable, and reconfgurable scanning station. This station is adapted to perform fast quality tests of the underwater laser sets just before their deployment in the telescope structure. The testing procedure includes the energy stability test of the laser device, 3D scan of the light emission from the diffuser and attenuation test of the optical elements of the laser calibration system. The test bench consists primarily of an automatic mechanical scanner with a movable Si detector, beam splitter with a reference Si detector and, optionally, Q-switched diode-pumped solid-state laser used for laboratory scans of the diffusers. The presented test bench enables a three-dimensional scan of the light emission from diffusers, which are designed to obtain the isotropic distribution of photons around the point of emission. The results of the measurement can be easily shown on a 3D plot immediately after the test and may be also implemented to a dedicated program simulating photons propagation in water, which allows to check the quality of the diffuser in the scale of the Baikal-GVD telescope geometry.

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