73 research outputs found

    DarkSide-50 532-day dark matter search with low-radioactivity argon

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    FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOThe DarkSide-50 direct-detection dark matter experiment is a dual-phase argon time projection chamber operating at Laboratori Nazionali del Gran Sasso. This paper reports on the blind analysis of a (16 660 +/- 270) kg d exposure using a target of low-radioactivity argon extracted from underground sources. We find no events in the dark matter selection box and set a 90% C. L. upper limit on the dark matter-nucleon spin-independent cross section of 1.14 x 10(-44) cm(2) (3.78 x 10(-44) cm(2), 3.43 x 10(-43) cm(2)) for a WIMP mass of 100 GeV/c(2) (1 TeV/c(2), 10 TeV/c(2)).9810117FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOFAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULO2016/09084-0Agências de fomento estrangeiras apoiaram essa pesquisa, mais informações acesse artig

    DarkSide status and prospects

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    Sem informaçãoDarkSide uses a dual-phase Liquid Argon Time Projection Chamber to search for WIMP dark matter. The current detector, DarkSide-50, is running since mid 2015 with a target of 50 kg of Argon from an underground source. Here it is presented the latest results of searches of WIMP-nucleus interactions, with WIMP masses in the GeV-TeV range, and of WIMP-electron interactions, in the sub-GeV mass range. The future of DarkSide with a new generation experiment, involving a global collaboration from all the current Argon based experiments, is presented.422-315Sem informaçãoSem informaçãoSem informaçã

    Constraints on sub-GeV dark-matter-electron scattering from the DarkSide-50 experiment

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    FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOWe present new constraints on sub-GeV dark-matter particles scattering off electrons based on 6780.0 kg d of data collected with the DarkSide-50 dual-phase argon time projection chamber. This analysis uses electroluminescence signals due to ionized electrons extracted from the liquid argon target. The detector has a very high trigger probability for these signals, allowing for an analysis threshold of three extracted electrons, or approximately 0.05 keVee. We calculate the expected recoil spectra for dark matterelectron scattering in argon and, under the assumption of momentum-independent scattering, improve upon existing limits from XENON10 for dark-matter particles with masses between 30 and 100 MeV/c(2).1211117FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOFAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULO2016/09084-0Agências de fomento estrangeiras apoiaram essa pesquisa, mais informações acesse artig

    CMS physics technical design report : Addendum on high density QCD with heavy ions

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    SiPM-matrix readout of two-phase argon detectors using electroluminescence in the visible and near infrared range

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    Proportional electroluminescence (EL) in noble gases is used in two-phase detectors for dark matter searches to record (in the gas phase) the ionization signal induced by particle scattering in the liquid phase. The “standard” EL mechanism is considered to be due to noble gas excimer emission in the vacuum ultraviolet (VUV). In addition, there are two alternative mechanisms, producing light in the visible and near infrared (NIR) ranges. The first is due to bremsstrahlung of electrons scattered on neutral atoms (“neutral bremsstrahlung”, NBrS). The second, responsible for electron avalanche scintillation in the NIR at higher electric fields, is due to transitions between excited atomic states. In this work, we have for the first time demonstrated two alternative techniques of the optical readout of two-phase argon detectors, in the visible and NIR range, using a silicon photomultiplier matrix and electroluminescence due to either neutral bremsstrahlung or avalanche scintillation. The amplitude yield and position resolution were measured for these readout techniques, which allowed to assess the detection threshold for electron and nuclear recoils in two-phase argon detectors for dark matter searches. To the best of our knowledge, this is the first practical application of the NBrS effect in detection science

    Design and construction of a new detector to measure ultra-low radioactive-isotope contamination of argon

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    Large liquid argon detectors offer one of the best avenues for the detection of galactic weakly interacting massive particles (WIMPs) via their scattering on atomic nuclei. The liquid argon target allows exquisite discrimination between nuclear and electron recoil signals via pulse-shape discrimination of the scintillation signals. Atmospheric argon (AAr), however, has a naturally occurring radioactive isotope, 39Ar, a β emitter of cosmogenic origin. For large detectors, the atmospheric 39Ar activity poses pile-up concerns. The use of argon extracted from underground wells, deprived of 39Ar, is key to the physics potential of these experiments. The DarkSide-20k dark matter search experiment will operate a dual-phase time projection chamber with 50 tonnes of radio-pure underground argon (UAr), that was shown to be depleted of 39Ar with respect to AAr by a factor larger than 1400. Assessing the 39Ar content of the UAr during extraction is crucial for the success of DarkSide-20k, as well as for future experiments of the Global Argon Dark Matter Collaboration (GADMC). This will be carried out by the DArT in ArDM experiment, a small chamber made with extremely radio-pure materials that will be placed at the centre of the ArDM detector, in the Canfranc Underground Laboratory (LSC) in Spain. The ArDM LAr volume acts as an active veto for background radioactivity, mostly γ-rays from the ArDM detector materials and the surrounding rock. This article describes the DArT in ArDM project, including the chamber design and construction, and reviews the background required to achieve the expected performance of the detector

    підручник

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    Кримінальне право України. Загальна частина : підручник / [Харченко В. Б., Житний О. О., Орлов Ю. В. та ін.] ; за заг. ред. О. М. Литвинова; МВС України, Харків. нац. ун-т внутр. справ. – Харків, 2020. – 428 с. – ISBN 978-966-610-097-2.Lytvynov O.M. (ed.), 2020. Criminal Law of Ukraine. General Part [Kryminalne pravo Ukrainy. Zahalna chactyna]. Kharkiv: Kharkivskyi natsionalnyi universytet vnutrishnikh sprav.У підручнику розглянуто основні питання навчальної дисципліни «Кримінальне право України. Загальна частина». У матеріалах курсу під час розгляду основних інститутів і вчень Загальної частини кримінального права України використано актуальні нормативні акти й судову практику. Для курсантів і студентів вищих навчальних закладів юридичного профілю, викладачів, аспірантів та ад’юнктів, науковців і практичних працівників, а також широкого кола читачів, які цікавляться проблематикою протидії злочинності.The textbook examines the main issues of the discipline "Criminal law of Ukraine". In the course materials, when considering the main institutions and teachings of the General Part of the Criminal Law of Ukraine, the current regulations and judicial practice were used. For cadets and students of higher educational institutions of a legal profile, teachers, graduate students and adjuncts, scientific and practical workers, as well as a wide range of readers interested in the problems of combating crime.В учебнике рассмотрены основные вопросы учебной дисциплины «Уголовное право Украины. Общая часть ». В материалах курса при рассмотрении основных институтов и учений Общей части уголовного права Украины использованы актуальные нормативные акты и судебная практика. Для курсантов и студентов высших учебных заведений юридического профиля, преподавателей, аспирантов и адъюнктов, научных и практических работников, а также широкого круга читателей, интересующихся проблематикой противодействия преступности

    Non-ionic Thermoresponsive Polymers in Water

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