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Showing papers by "D. M. Asner published in 2017"


Journal ArticleDOI
P. Agnes1, Ivone F. M. Albuquerque2, Thomas Alexander3, A. K. Alton4  +148 moreInstitutions (27)
TL;DR: In this article, a Geant4-based Monte Carlo (G4DS) was used to simulate the response of the DarkSide-50 WIMP detector, which has achieved two fundamental milestones: the rejection of electron recoil background with a power of ~10(7), using the pulse shape discrimination technique, and the measurement of the residual (39)Ar contamination in underground argon, ~3 orders of magnitude lower with respect to atmospheric argon.
Abstract: A Geant4-based Monte Carlo package named G4DS has been developed to simulate the response of DarkSide-50, an experiment operating since 2013 at LNGS, designed to detect WIMP interactions in liquid argon. In the process of WIMP searches, DarkSide-50 has achieved two fundamental milestones: the rejection of electron recoil background with a power of ~10(7), using the pulse shape discrimination technique, and the measurement of the residual (39)Ar contamination in underground argon, ~3 orders of magnitude lower with respect to atmospheric argon. These results rely on the accurate simulation of the detector response to the liquid argon scintillation, its ionization, and electron-ion recombination processes. This work provides a complete overview of the DarkSide Monte Carlo and of its performance, with a particular focus on PARIS, the custom-made liquid argon response model.

40 citations


Journal ArticleDOI
Craig E. Aalseth1, Fabio Acerbi2, P. Agnes3, Ivone F. M. Albuquerque4  +299 moreInstitutions (43)
TL;DR: In this paper, the authors report on the cryogenic characterization of RGB-HD SiPMs developed at Fondazione Bruno Kessler (FBK) as part of the DarkSide program of dark matter searches with liquid argon time projection chambers.
Abstract: We report on the cryogenic characterization of Red Green Blue - High Density (RGB-HD) SiPMs developed at Fondazione Bruno Kessler (FBK) as part of the DarkSide program of dark matter searches with liquid argon time projection chambers. A cryogenic setup was used to operate the SiPMs at varying temperatures and a custom data acquisition system and analysis software were used to precisely characterize the primary dark noise, the correlated noise, and the gain of the devices. We demonstrate that FBK RGB-HD SiPMs with low quenching resistance (RGB-HD-LRq) can be operated from 40 K to 300 K with gains in the range 10(5) to 10(6) and noise rates at a level of around 1 Hz/mm(2).

16 citations


Journal ArticleDOI
P. Agnes1, Ivone F. M. Albuquerque2, Thomas Alexander3, Thomas Alexander4  +185 moreInstitutions (29)
TL;DR: CALIS as discussed by the authors deploys radioactive sources into the liquid scintillator veto to characterize the detector response and detection efficiency of the DarkSide-50 Liquid Argon Time Projection Chamber.
Abstract: This paper describes the design, fabrication, commissioning and use of a CALibration source Insertion System (CALIS) in the DarkSide-50 direct dark matter search experiment. CALIS deploys radioactive sources into the liquid scintillator veto to characterize the detector response and detection efficiency of the DarkSide-50 Liquid Argon Time Projection Chamber, and the surrounding 30 t organic liquid scintillator neutron veto. It was commissioned in September 2014 and has been used successfully in several gamma and neutron source campaigns since then. A description of the hardware and an excerpt of calibration analysis results are given below.

12 citations


Journal ArticleDOI
G. Zuzel1, P. Agnes2, Ivone F. M. Albuquerque3, Thomas Alexander4  +184 moreInstitutions (29)
07 Mar 2017-Scopus
TL;DR: DarkSide-50 is a multi-stage program devoted to direct searches of Dark Matter particles with detectors based on double phase liquid Argon Time Projection Chamber as mentioned in this paper. But it has not yet achieved a WIMP-nucleon spin-independent cross-section of 2.0×10(−)(44) cm(2) with a mass of 100 GeV/c(2).
Abstract: DarkSide is a multi-stage program devoted to direct searches of Dark Matter particles with detectors based on double phase liquid Argon Time Projection Chamber. The DarkSide-50 setup is running underground at the Laboratori Nazionali del Gran Sasso. First it was operated with Atmospheric Argon and during that run (1422 ± 67) kg×d of truly background-free exposure has been accumulated. Obtained data made it possible to set a 90% C.L. upper limit on the WIMP-nucleon cross section of 6.1 × 10(−)(44) cm(2) (for a WIMP mass of 100 GeV/c(2)). Presently the detector is filled with Underground Argon, which is depleted in (39)Ar by a factor of (1.4 ± 0.2)×10(3) with respect to Atmospheric Argon. Acquired so far (2616 ± 43) kg×d (71 live days) in combination with the data from the Atmospheric Argon run give us the 90% C.L. upper limit on the WIMP-nucleon spin-independent cross section of 2.0×10(−)(44) cm(2) for a WIMP mass of 100 GeV/c(2). Up to date this is the best limit obtained with an argon target.

9 citations


Journal ArticleDOI
P. Agnes1, P. Agnes2, Ivone F. M. Albuquerque3, Thomas Alexander4  +184 moreInstitutions (32)
TL;DR: The DarkSide-50 experiment at the Laboratori Nazionali del Gran Sasso is a search for dark matter using a dual phase time projection chamber with 50 kg of low radioactivity argon as target as discussed by the authors.
Abstract: The DarkSide-50 experiment at the Laboratori Nazionali del Gran Sasso is a search for dark matter using a dual phase time projection chamber with 50 kg of low radioactivity argon as target. Light signals from interactions in the argon are detected by a system of 38 photo-multiplier tubes (PMTs), 19 above and 19 below the TPC volume inside the argon cryostat. We describe the electronics which processes the signals from the photo-multipliers, the trigger system which identifies events of interest, and the data-acquisition system which records the data for further analysis. The electronics include resistive voltage dividers on the PMTs, custom pre-amplifiers mounted directly on the PMT voltage dividers in the liquid argon, and custom amplifier/discriminators (at room temperature). After amplification, the PMT signals are digitized in CAEN waveform digitizers, and CAEN logic modules are used to construct the trigger; the data acquisition system for the TPC is based on the Fermilab artdaq software. The system has been in operation since early 2014.

8 citations


Journal ArticleDOI
P. Agnes1, Ivone F. M. Albuquerque2, Thomas Alexander3, A. Alton4  +161 moreInstitutions (30)
TL;DR: In this article, the authors measured the scintillation light yield of alpha particles from the 222Rn decay chain within the DarkSide-50 liquid argon time projection chamber.
Abstract: Measurements were made of scintillation light yield of alpha particles from the 222Rn decay chain within the DarkSide-50 liquid argon time projection chamber. The light yield was found to increase as the applied electric field increased, with alphas in a 200 V/cm electric field exhibiting a ~2% increase in light yield compared to alphas in no field.

4 citations


Journal ArticleDOI
B. Bottino1, Craig E. Aalseth2, Giulia Acconcia3, Giulia Acconcia4  +314 moreInstitutions (41)
TL;DR: DarkSide-50 as discussed by the authors is a two-phase time projection chamber (TPC) filled with ultra-pure liquid argon, which is used to detect rare nuclear recoils possibly induced by hypothetical dark matter particles.
Abstract: DarkSide is a dark matter direct search experiment at Laboratori Nazionali del Gran Sasso (LNGS). DarkSide is based on the detection of rare nuclear recoils possibly induced by hypothetical dark matter particles, which are supposed to be neutral, massive (m > 10 GeV) and weakly interactive (WIMP). The dark matter detector is a two-phase time projection chamber (TPC) filled with ultra-pure liquid argon. The TPC is placed inside a muon and a neutron active vetoes to suppress the background. Using argon as active target has many advantages, the key features are the strong discriminant power between nuclear and electron recoils, the spatial reconstruction and easy scalability to multi-tons size. At the moment DarkSide-50 is filled with ultra-pure argon, extracted from underground sources, and from April 2015 it is taking data in its final configuration. When combined with the preceding search with an atmospheric argon target, it is possible to set a 90% CL upper limit on the WIMP-nucleon spin-independent cross section of 2.0×10−44 cm2 for a WIMP mass of 100 GeV/c2. The next phase of the experiment, DarkSide-20k, will be the construction of a new detector with an active mass of ∼ 20 tons.

1 citations