English

The Silicon Vertex Detector of the Belle II Experiment

Instrumentation and Detectors 2022-09-07 v2

Abstract

In 2019 the Belle II experiment started data taking at the asymmetric SuperKEKB collider (KEK, Japan) operating at the Y(4S) resonance. Belle II will search for new physics beyond the Standard Model by collecting an integrated luminosity of 50~ab1^{-1}. The silicon vertex detector (SVD), consisting of four layers of double-sided silicon strip sensors, is one of the two vertex sub-detectors. The SVD extrapolates the tracks to the inner pixel detector (PXD) with enough precision to correctly identify hits in the PXD belonging to the track. In addition the SVD has standalone tracking capability and utilizes ionization to enhance particle identification in the low momentum region. The SVD is operating reliably and with high efficiency, despite exposure to the harsh beam background of the highest peak-luminosity collider ever built. High signal-to-noise ratio and hit efficiency have been measured, as well as the spatial resolution; all these quantities show excellent stability over time. Data-simulation agreement on cluster properties has recently been improved through a careful tuning of the simulation. The precise hit-time resolution can be exploited to reject out-of-time hits induced by beam background, which will make the SVD more robust against higher levels of background. During the first three years of running, radiation damage effects on strip noise, sensor currents and depletion voltage have been observed, as well as some coupling capacitor failure due to intense radiation bursts. None of these effects cause significant degradation in the detector performance.

Keywords

Cite

@article{arxiv.2111.13509,
  title  = {The Silicon Vertex Detector of the Belle II Experiment},
  author = {G. Dujany and K. Adamczyk and L. Aggarwal and H. Aihara and T. Aziz and S. Bacher and S. Bahinipati and G. Batignani and J. Baudot and P. K. Behera and S. Bettarini and T. Bilka and A. Bozek and F. Buchsteiner and G. Casarosa and L. Corona and T. Czank and S. B. Das and C. Finck and F. Forti and M. Friedl and A. Gabrielli and E. Ganiev and B. Gobbo and S. Halder and K. Hara and S. Hazra and T. Higuchi and C. Irmler and A. Ishikawa and H. B. Jeon and Y. Jin and C. Joo and M. Kaleta and A. B. Kaliyar and J. Kandra and K. H. Kang and P. Kapusta and P. Kodyš and T. Kohriki and M. Kumar and R. Kumar and C. La Licata and K. Lalwani and R. Leboucher and S. C. Lee and J. Libby and L. Martel and L. Massaccesi and S. N. Mayekar and G. B. Mohanty and T. Morii and K. R. Nakamura and Z. Natkaniec and Y. Onuki and W. Ostrowicz and A. Paladino and E. Paoloni and H. Park and L. Polat and K. K. Rao and I. Ripp-Baudot and G. Rizzo and D. Sahoo and C. Schwanda and J. Serrano and J. Suzuki and S. Tanaka and H. Tanigawa and R. Thalmeier and R. Tiwari and T. Tsuboyama and Y. Uematsu and O. Verbycka and L. Vitale and K. Wan and Z. Wang and J. Webb and J. Wiechczynski and H. Yin and L. Zani},
  journal= {arXiv preprint arXiv:2111.13509},
  year   = {2022}
}

Comments

7 pages, 5 figures, proceedings contribution at the 12th International Conference on Position Sensitive Detectors