[1] | Peter Boyle et al. “Semileptonic D → πl𝜈, D → Kl𝜈 and Ds → Kl𝜈 decays with 2+1f domain wall fermions”.
In: 38th International Symposium on Lattice Field Theory (Lattice 2021) (Zoom/Gather@Massachusetts Institute of Technology, 26th–30th July 2021).
Vol. Lattice2021. July 2022, p. 416. DOI: 10.22323/1.396.0416.
arXiv: 2201.02680 [hep-lat]. |
[2] | Peter Boyle et al. “An exploratory study of heavy-light semileptonic form factors using distillation”. In: PoS 363 (Aug. 2020), p. 169.
DOI: 10.22323/1.363.0169. arXiv: 1912.07563 [hep-lat]. |
[3] | Peter Boyle et al. “BSM B − B mixing on JLQCD and RBC/UKQCD Nf = 2 + 1 DWF ensembles”. eng.
In: Proceedings of Science. 2022. arXiv: 2111.11287 [hep-lat] |
[4] | Peter Boyle et al. “Kπ scattering at physical pion mass using distillation”. In: (Dec. 2021).
arXiv: 2112.09804 [hep-lat] |
[5] | Peter Boyle et al. “Towards Kπ scattering with domain-wall fermions at the physical point using distillation”. eng.
In: Proceedings of Science. Vol. 430. 2023. arXiv: 2211.16601 [hep-lat] |
[6] | Peter Boyle et al. “Light and strange vector resonances from lattice QCD at physical quark masses”. eng.
In: (Jun 2024). arXiv: 2406.19194 [hep-lat] |
[7] | Peter Boyle et al. “Physical-mass calculation of ρ(770) and K*(892) resonance parameters via ππ and Kπ scattering amplitudes from lattice QCD”. eng.
In: (Jun 2024). arXiv: 2406.19193 [hep-lat] |