Makale detayı · 2020
Volume IV. The DUNE far detector single-phase technology
Dergi
Journal of Instrumentation- Yıl
- 2020
- Tür
- article
Veri kaynağı ayrımı
- YÖKSİS dergi adı Journal of Instrumentation
- OpenAlex OpenAlex zenginleştirmesi (özet, atıf, konular)
Özet
OpenAlex · İngilizce
The preponderance of matter over antimatter in the early universe, the dynamics of the supernovae that produced the heavy elements necessary for life, and whether protons eventually decay—these mysteries at the forefront of particle physics and astrophysics are key to understanding the early evolution of our universe, its current state, and its eventual fate. DUNE is an international world-class experiment dedicated to addressing these questions as it searches for leptonic charge-parity symmetry violation, stands ready to capture supernova neutrino bursts, and seeks to observe nucleon decay as a signature of a grand unified theory underlying the standard model. Central to achieving DUNE's physics program is a far detector that combines the many tens-of-kiloton fiducial mass necessary for rare event searches with sub-centimeter spatial resolution in its ability to image those events, allowing identification of the physics signatures among the numerous backgrounds. In the single-phase liquid argon time-projection chamber (LArTPC) technology, ionization charges drift horizontally in the liquid argon under the influence of an electric field towards a vertical anode, where they are read out with fine granularity. A photon detection system supplements the TPC, directly enhancing physics capabilities for all three DUNE physics drivers and opening up prospects for further physics explorations. The DUNE far detector technical design report (TDR) describes the DUNE physics program and the technical designs of the single- and dual-phase DUNE liquid argon TPC far detector modules. Volume IV presents an overview of the basic operating principles of a single-phase LArTPC, followed by a description of the DUNE implementation. Each of the subsystems is described in detail, connecting the high-level design requirements and decisions to the overriding physics goals of DUNE.
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Yerel katalogda bu makaleye atıf yapan 10 yayın (OpenAlex referans eşleşmesi; tam dünya listesi değildir).
- First results on ProtoDUNE-SP liquid argon time projection chamber performance from a beam test at the CERN Neutrino Platform 2020
- Low exposure long-baseline neutrino oscillation sensitivity of the DUNE experiment 2022
- DUNE Phase II: scientific opportunities, detector concepts, technological solutions 2024
- Scintillation light detection in the 6-m drift-length ProtoDUNE Dual Phase liquid argon TPC 2022
- Reconstruction of interactions in the ProtoDUNE-SP detector with Pandora 2023
- Separation of track- and shower-like energy deposits in ProtoDUNE-SP using a convolutional neural network 2022
- Supernova pointing capabilities of DUNE 2025
- Spatial and temporal evaluations of the liquid argon purity in ProtoDUNE-SP 2025
- The track-length extension fitting algorithm for energy measurement of interacting particles in liquid argon TPCs and its performance with ProtoDUNE-SP data 2025
- Charge readout electronics for the DUNE horizontal drift far detector: design and performance in ProtoDUNE-HD 2026