4.4 Article

Performance of production modules of the Belle II pixel detector in a high-energy particle beam

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ELSEVIER
DOI: 10.1016/j.nima.2020.164978

关键词

DEPFET; DESY testbeam; Pixel detector; Belle II; Vertex detector

资金

  1. Federal Ministry of Education and Research of Germany
  2. Generalitat Valenciana (Spain) [CIDEGENT/2018/020]

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The Belle II experiment at the Super B factory in Japan focuses on precision B physics measurements, with momentum ranging from tens of MeV to a few GeV. The high vertex resolution and DEPFET technology are crucial for the success of the experiment, and the spatial resolution and module performance have been shown to meet the requirements through testing.
The Belle II experiment at the Super B factory SuperKEKB, an asymmetric e(+) e(-) collider located in Tsukuba, Japan, is tailored to perform precision B physics measurements. The centre of mass energy of the collisions is equal to the rest mass of the gamma (4S) resonance of m(gamma(4S)) = 10.58 GeV. A high vertex resolution is essential for measuring the decay vertices of B mesons. Typical momenta of the decay products are ranging from a few tens of MeV to a few GeV and multiple scattering has a significant impact on the vertex resolution. The VerteX Detector (VXD) for Belle II is therefore designed to have as little material as possible inside the acceptance region. Especially the innermost two layers, populated by the PiXel Detector (PXD), have to be ultra-thin. The PXD is based on DEpleted P-channel Field Effect Transistors (DEPFETs) with a thickness of only 75 mu m. Spatial resolution and hit efficiency of production detector modules were studied in beam tests performed at the DESY test beam facility. The spatial resolution was investigated as a function of the incidence angle and improvements due to charge sharing are demonstrated. The measured module performance is compatible with the requirements for Belle II.

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