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Artykuły w czasopismach na temat "Discrimination double-Beta / gamma"

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Beeman, Jeff W., Fabio Bellini, Laura Cardani, et al. "Discrimination of a and b/c interactions in a TeO2 bolometer." Astroparticle Physics 35, no. 9 (2012): 558–62. https://doi.org/10.1016/j.astropartphys.2011.12.004.

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TeO2 crystals have proven to be superb bolometers for the search of neutrinoless double beta decay in many respects. However, if used alone, they do not exhibit any feature that allows to discriminate an alpha energy deposit from a beta/gamma one. This fact limits their ability to reject the background due to natural radioactivity and eventually affects the sensitivity of the search. In this paper we show the results of a TeO2 crystal where, in coincidence with its bolometric heat signal, also the luminescence light escaping the crystal is recorded. The results show that we are able to measure
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Kim, G. B., S. Choi, F. A. Danevich, et al. "A CaMoO4Crystal Low Temperature Detector for the AMoRE Neutrinoless Double Beta Decay Search." Advances in High Energy Physics 2015 (2015): 1–7. http://dx.doi.org/10.1155/2015/817530.

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We report the development of a CaMoO4crystal low temperature detector for the AMoRE neutrinoless double beta decay(0νββ)search experiment. The prototype detector cell was composed of a 216 g CaMoO4crystal and a metallic magnetic calorimeter. An overground measurement demonstrated FWHM resolution of 6–11 keV for full absorption gamma peaks. Pulse shape discrimination was clearly demonstrated in the phonon signals, and 7.6 σof discrimination power was found for theαandβ/γseparation. The phonon signals showed rise-times of about 1 ms. It is expected that the relatively fast rise-time will increas
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Kim, W. T., S. C. Kim, B. Sharma, et al. "Optimization of cryogenic calorimetric detection with lithium molybdate crystals for AMoRE-II experiments." Journal of Instrumentation 17, no. 07 (2022): P07034. http://dx.doi.org/10.1088/1748-0221/17/07/p07034.

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Abstract The AMoRE collaboration is preparing for the second phase of the experiment, AMoRE-II, which will exploit a 100 kg of 100Mo isotopes to search for neutrinoless double beta decay from the isotope. Most of the 100Mo isotopes will be contained in the lithium molybdate (Li2MoO4) crystals, which will act as absorbers of cryogenic calorimeters coupled to MMC (metallic magnetic calorimeter) sensors. The detector array will have a total mass of approximately 200 kg with hundreds of detector modules. Hence, considerable effort has been taken to optimize the lithium molybdate crystal detector i
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Dai, W. H., H. Ma, Z. Zeng, L. T. Yang, Q. Yue, and J. P. Cheng. "Virtual segmentation of a small contact HPGe detector: inference of hit positions of single-site events via pulse shape analysis." European Physical Journal C 84, no. 3 (2024). http://dx.doi.org/10.1140/epjc/s10052-024-12645-5.

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AbstractExploring hit positions of recorded events can help to understand and suppress backgrounds in rare event searches. We propose a pulse shape analysis method to discriminate single-site events (SSEs) in the inner and outer layer of a small contact P-type germanium detector (HPGe). SSEs in the inner and outer layer have different pulse shape features, of which the rise time of the $$(T_{Q})$$ ( T Q ) and current pulse $$(T_{I})$$ ( T I ) are selected for discrimination. A 500 Bq Thorium-228 (Th-228) source is used to determine the boundaries between the two layers. The double escape peak
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Agrawal, A., V. V. Alenkov, P. Aryal, et al. "Development of MMC-based lithium molybdate cryogenic calorimeters for AMoRE-II." European Physical Journal C 85, no. 2 (2025). https://doi.org/10.1140/epjc/s10052-024-13498-8.

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Abstract The AMoRE collaboration searches for neutrinoless double beta decay of $$^{100}$$ 100 Mo using molybdate scintillating crystals via low temperature thermal calorimetric detection. The early phases of the experiment, AMoRE-pilot and AMoRE-I, have demonstrated competitive discovery potential. Presently, the AMoRE-II experiment, featuring a large detector array with about 90 kg of $$^{100}$$ 100 Mo isotope, is under construction. This paper discusses the baseline design and characterization of the lithium molybdate cryogenic calorimeters to be used in the AMoRE-II detector modules. The r
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Mathew, Jerin, Divya Bharatkumar Adhia, Mark Llewellyn Smith, Dirk De Ridder, and Ramakrishnan Mani. "Closed-Loop Infraslow Brain–Computer Interface can Modulate Cortical Activity and Connectivity in Individuals With Chronic Painful Knee Osteoarthritis: A Secondary Analysis of a Randomized Placebo-Controlled Clinical Trial." Clinical EEG and Neuroscience, July 26, 2024. http://dx.doi.org/10.1177/15500594241264892.

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Introduction. Chronic pain is a percept due to an imbalance in the activity between sensory-discriminative, motivational-affective, and descending pain-inhibitory brain regions. Evidence suggests that electroencephalography (EEG) infraslow fluctuation neurofeedback (ISF-NF) training can improve clinical outcomes. It is unknown whether such training can induce EEG activity and functional connectivity (FC) changes. A secondary data analysis of a feasibility clinical trial was conducted to determine whether EEG ISF-NF training can significantly alter EEG activity and FC between the targeted corti
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Jung, Moon. "Development of accurate SARS-CoV-2 RT-PCR with Omicron/stealth/Delta diagnosis." December 21, 2021. https://doi.org/10.5281/zenodo.5860249.

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Recently (November 24, 2021), a new concern mutant, Omicron Corona 19 virus(BA.1) was reported in South Africa, which has 32 mutations with more mutations than Delta in the spike protein is becoming Omicron mutation is rapidly spreading to 54 countries within two weeks, and the number of confirmed cases in Korea has reached 36. Even stealth-type omicron mutations (BA.2) have been reported. There is an urgent need for a test that can quickly diagnose Omicron in large numbers in the field, but the reality is that they are still stuck on a high-cost and time-consuming sequencing method. <strong>&
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Rozprawy doktorskie na temat "Discrimination double-Beta / gamma"

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Lobasenko, Andrii. "The neutrino nature through the study of the Xenon 136 double-beta decays on the PandaX-III experiment." Electronic Thesis or Diss., université Paris-Saclay, 2024. http://www.theses.fr/2024UPASP051.

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La recherche de la désintégration double bêta sans neutrino (0νββ) est cruciale pour faire progresser notre compréhension de la physique et explorer la physique au-delà du modèle standard. Cependant, cette recherche est incroyablement difficile en raison de l'extrême rareté de la désintégration, qui nécessite une interprétation approfondie et une dépendance aux contraintes expérimentales et aux modèles nucléaires théoriques. L'expérience PandaX-III est dédiée à la recherche de 0νββ dans 136-Xe. Il s'agit d'une chambre de projection temporelle (TPC) gazeuse à haute pression équipée de détecteur
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