0.5 GeV, with at least 4 track segment hits, and coming from regions with expected track segment finding efficiency. This thesis also outlines the implementation of the 2D fitter, which involves fitting an arc to the positions of the axial track segment hits corrected by their drift lengths. As the fitting contains many fixed-point arithmetic operations implemented as look-up tables, it is crucial to reduce the usage of the block RAM while maintaining similar arithmetic precision. Composite look-up tables, which increase the precision in the worst-performing part of the arithmetic function's range by sacrificing the unnecessary precision in other parts, are developed to meet the requirement. Lastly, several improvements are made to stabilize the buildup process of the optical transmission data flow. In particular, an automatic way to reset different optical transceivers on the same side of the die, separated with an adjustable time interval, is tested to make the buildup more stable at the full 10 Gbps lane rate.' > Airiti Library
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Reference ( 130 ) 〈TOP〉
  1. [1] M. Huschle et al. “Measurement of the branching ratio of B ̄ → D (∗) τ − ν ̄ relative to B ̄ → D (∗) l − ν l ̄ decays with hadronic tagging at Belle”. In: Phys. Rev. D92.7 (2015), p. 072014. DOI: 10.1103/PhysRevD.92.072014. arXiv: 1507.03233 [hep-ex].
  2. [2] R. Aaij et al. “Test of Lepton Universality Using B + → K + l + l − Decays”. In: Phys. Rev. Lett. 113 (15 Oct. 2014), p. 151601. DOI: 10.1103/PhysRevLett. 113.151601. URL: https://link.aps.org/doi/10.1103/PhysRevLett. 113.151601.
  3. [3] R. Aaij et al. “Test of lepton universality with B 0 → K ∗0 l + l − decays”. In: JHEP 08 (2017), p. 055. DOI: 10.1007/JHEP08(2017)055. arXiv: 1705. 05802 [hep-ex].
  4. [4] Sebastien Descotes-Genon et al. “Optimizing the basis of B → K ∗ ll observables in the full kinematic range”. In: JHEP 05 (2013), p. 137. DOI: 10. 1007/JHEP05(2013)137. arXiv: 1303.5794 [hep-ph].
  5. [5] Paul AM Dirac. “The quantum theory of the electron”. In: Proc. R. Soc. Lond. A 117.778 (1928), pp. 610–624.
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