Showing 1,021 - 1,040 results of 2,055 for search '"scintillator"', query time: 0.12s Refine Results
  1. 1021

    In-Situ Seawater Gamma Spectrometry with LaBr<sub>3</sub> Detector at a Nuclear Power Plant Outlet by Daowei Dou, Zhi Zeng, Wen Yu, Ming Zeng, Wu Men, Feng Lin, Hao Ma, Jianping Cheng, Junli Li

    Published 2021-06-01
    “…The results show that the LaBr<sub>3</sub> scintillator has excellent energy resolution and detection efficiency, making it a promising detector for emergency monitoring.…”
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    Article
  2. 1022

    Direct measurement of the ionization quenching factor of nuclear recoils in germanium in the keV energy range by A. Bonhomme, H. Bonet, C. Buck, J. Hakenmüller, G. Heusser, T. Hugle, M. Lindner, W. Maneschg, R. Nolte, T. Rink, E. Pirovano, H. Strecker

    Published 2022-09-01
    “…The energy dependence of the ionization quenching factor was directly measured via kinematically constrained coincidences with surrounding liquid scintillator based neutron detectors. The systematic uncertainties of the measurements are discussed in detail. …”
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    Article
  3. 1023

    Development of a real-time gamma camera for high radiation fields by Minju Lee, Yoonhee Jung, Sang-Han Lee

    Published 2024-01-01
    “…The gamma camera is composed of a pinhole collimator, NaI(Tl) scintillator, position sensitive photomultiplier (PSPMT), signal processing board, and data acquisition (DAQ). …”
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    Article
  4. 1024

    Neutron Computerized Tomography (CT) of the non-irradiated fuel rod by E. Nazemi, A. Movafeghi, B. Rokrok, M. Dinca, M.H. Choopan Dastjerdi

    Published 2020-12-01
    “…In the present work, neutron computerized tomography (CT) of a depleted TRIGA fuel rod is investigated using a digital detection system which includes a scintillator screen, a mirror, and a CCD camera. The experiments were performed in the INUS neutron radiography facility. …”
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    Article
  5. 1025

    Calibration of the CMS hadron calorimeters using proton-proton collision data at √ s = 13 TeV by The CMS Collaboration

    Published 2021
    “…The hadron calorimeters of the CMS experiment are sampling calorimeters of brass and scintillator, and are in the form of one central detector and two endcaps. …”
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    Article
  6. 1026

    The GlueX beamline and detector by Hardin, John Melvin, Williams, Michael

    Published 2021
    “…The energy and arrival time of beam photons are tagged using a scintillator hodoscope and a scintillating fiber array. …”
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    Article
  7. 1027

    Limits on Astrophysical Antineutrinos with the KamLAND Experiment by Axani, Spencer Nicholas, Winslow, Lindley, Fu, Z., Ouellet, Jonathan L

    Published 2022
    “…In an exposure of 6.72 kton-year of the liquid scintillator, we observe 18 candidate events via the inverse beta decay reaction. …”
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    Article
  8. 1028

    Measurements of the neutron-proton and neutron-carbon total cross section from 150 to 800 keV by Daub, Brian, Henzl, V., Kovash, Michael A., Matthews, June L.

    Published 2013
    “…We measured the np and nC total cross sections in this energy region by transmission; a collimated neutron beam was passed through CH[subscript 2] and C samples and transmitted neutrons were detected by a BC-501A liquid scintillator. Cross sections were obtained with a precision of 1.1–2.0% between 150 and 800 keV using ratios of normalized neutron yields measured with and without the scattering samples in the beam. …”
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    Article
  9. 1029

    Construction and performance of the ATLAS SCT barrels and cosmic tests by Demirköz, B, Bilge Melahat Demirkoz

    Published 2007
    “…This dataflow chain has been exercised during the cosmics run at CERN, where a 5*10^5 cosmics sample for the combined SCT and TRT detectors was collected with a scintillator based trigger. It is now being commissioned in the ATLAS pit.…”
    Thesis
  10. 1030

    Investigation of the dynamic fragmentation process in ceramics by using ultra-high speed x-ray imaging with synchrotron radiation by Forquin, P, Lukic, B, Duplan, Y, Saletti, D, Eakins, D, Rack, A

    Published 2019
    “…A Shimadzu HPV-X2 camera lens-coupled to a fast scintillator was used to visualise the fragmentation process through the thickness with an interframe time set to 1065 ns. …”
    Conference item
  11. 1031

    The Electromagnetic Calorimeter for the T2K Near Detector ND280 by Allan, D, Andreopoulos, C, Angelsen, C, Barker, G, Barr, G, Bentham, S, Bertram, I, Boyd, S, Briggs, K, Calland, R, Carroll, J, Cartwright, S, Carver, A, Chavez, C, Christodoulou, G, Coleman, J, Cooke, P, Davies, G, Densham, C, Lodovico, F, Dobson, J, Duboyski, T, Durkin, T, Evans, D, Finch, A

    Published 2013
    “…A key element of the near detector is the ND280 electromagnetic calorimeter (ECal), consisting of active scintillator bars sandwiched between lead sheets and read outwith multi-pixel photon counters (MPPCs). …”
    Journal article
  12. 1032

    Advance data logging software for gamma-ray scanning technology by Mohd. Zain, Rasif, Abdul Rahim, Ruzairi

    Published 2010
    “…Meanwhile, Vasquez et al. [2] had developed a scintillator detector system for gamma-ray scanning of industrial distillation columns. …”
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    Book Section
  13. 1033
  14. 1034

    The use of Tb activator and Gd sensitizer in silicate glass and glass-ceramics to increase the luminescence response of samples excited by high-energy radiation by Ayda Fayeghinia, Hossein Jahanbakhsh

    Published 2015-08-01
    “…In this work, Lithium-Aluminum-Silicate (LAS) scintillator glass as a host for Tb activator, was prepared in order to reach the visible emission by UV, Gamma, X-Ray and charged particles excitation. …”
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    Article
  15. 1035

    Recent Advances in Optical Fiber Enabled Radiation Sensors by Jing Zhang, Yudiao Xiang, Chen Wang, Yunkang Chen, Swee Chuan Tjin, Lei Wei

    Published 2022-02-01
    “…The relevant advanced fiber materials and structures, including silica glass, doped silica glasses, polymers, fluorescent and scintillator materials, were also categorized and summarized based on their characteristics. …”
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    Article
  16. 1036

    Populating α-unbound states in 16O via 19F (p, αy)16O reaction by Távora V.G., Tengblad O., Borge M.J.G., Briz J.A., Fernandez Ruiz D., Jensen E.A.M., Nerio A.N., Perea A.

    Published 2023-01-01
    “…A detection system consisting of single and telescope configurations of Si detectors was used to detect 2α-particles and a 12C particle in coincidence. Scintillator detectors were included in the setup to study the de-excitation of the states populated in 16O to the ground state. …”
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    Article
  17. 1037

    Compact Back-End Electronics with Temperature Compensation and Efficient Data Management for In Situ SiPM-Based Radiation Detection by Nile E. J. Dixon, Stephen D. Monk, James Graham, David Cheneler

    Published 2023-04-01
    “…This system has been designed to fit within a 46 mm cylindrical diameter for in situ characterization, and can be attached to one or more SiPMs used in conjunction with a range of scintillators. LED blink tests have been used to optimise the trapezoidal shaper coefficients to maximise the resolution of the recorded spectra. …”
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    Article
  18. 1038

    ملاءمة وصلاحية الكواشف من النوع Ga-As من أجل التصوير بأشعة X by هاني شعبان, جبور جبور, ج. ك. بورغوان

    Published 2018-12-01
    “… The rate of indirect photon-electron conversion for scintillator materials coupled with arrays of photodiodes is at least 25 times smaller than the rate of direct conversion. …”
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    Article
  19. 1039

    The Impact of Cross-Talk in a Flat Panel Detector on CT Image Quality by Seemeen Karimi, James Hall, Jerel A. Smith, Joseph Tringe

    Published 2023-01-01
    “…We modeled the spatial resolution and noise of a CT scanner that uses a flat-panel detector with 0.2-mm pixels and a gadolinium oxysulfide scintillator, and a 450 kVp, dual-focus X-ray tube. Our noise model agrees with measurements from experimental data and simulations to within 10&#x0025;. …”
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    Article
  20. 1040

    Material Screening with Mass Spectrometry by Francesca Marchegiani, Francesco Ferella, Stefano Nisi

    Published 2021-02-01
    “…Here, the inductively coupled plasma mass spectrometry (ICP-MS) measurements of the chemical purity of a <inline-formula><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><semantics><mrow><msub><mrow><mi>Cs</mi></mrow><mn>2</mn></msub><msub><mrow><mi>HfCl</mi></mrow><mn>6</mn></msub></mrow></semantics></math></inline-formula> crystal scintillator used to study α decay of naturally occurring Hf isotopes and its own raw materials are reported. …”
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    Article