Implications of a matter-radius measurement for the structure of Carbon-22 B Acharya, C Ji, DR Phillips Physics Letters B 723 (1-3), 196-200, 2013 | 79 | 2013 |
19C in halo EFT: Effective-range parameters from Coulomb dissociation experiments B Acharya, DR Phillips Nuclear Physics A 913, 103-115, 2013 | 51 | 2013 |
Theoretical tools for neutrino scattering: Interplay between lattice QCD, EFTs, nuclear physics, phenomenology, and neutrino event generators LA Ruso, AM Ankowski, S Bacca, AB Balantekin, J Carlson, S Gardiner, ... arXiv preprint arXiv:2203.09030, 2022 | 40 | 2022 |
Ab Initio Computation of the Longitudinal Response Function in JE Sobczyk, B Acharya, S Bacca, G Hagen Physical Review Letters 127 (7), 072501, 2021 | 40 | 2021 |
Uncertainty quantification for proton–proton fusion in chiral effective field theory B Acharya, BD Carlsson, A Ekström, C Forssén, L Platter Physics Letters B 760, 584-589, 2016 | 37 | 2016 |
Neutrino-deuteron scattering: Uncertainty quantification and new constraints B Acharya, S Bacca Physical Review C 101 (1), 015505, 2020 | 32 | 2020 |
Coulomb sum rule for and from coupled-cluster theory JE Sobczyk, B Acharya, S Bacca, G Hagen Physical Review C 102 (6), 064312, 2020 | 25 | 2020 |
Gaussian process error modeling for chiral effective-field-theory calculations of np↔ dγ at low energies B Acharya, S Bacca Physics Letters B 827, 137011, 2022 | 19 | 2022 |
Dispersive evaluation of the Lamb shift in muonic deuterium from chiral effective field theory B Acharya, V Lensky, S Bacca, M Gorchtein, M Vanderhaeghen Physical Review C 103 (2), 024001, 2021 | 17 | 2021 |
Effective-field-theory analysis of Efimov physics in heteronuclear mixtures of ultracold atomic gases B Acharya, C Ji, L Platter Physical Review A 94 (3), 032702, 2016 | 17 | 2016 |
transverse response function from coupled-cluster theory JE Sobczyk, B Acharya, S Bacca, G Hagen Physical Review C 109 (2), 025502, 2024 | 15 | 2024 |
Effective-field-theory predictions of the muon-deuteron capture rate B Acharya, A Ekström, L Platter Physical Review C 98 (6), 065506, 2018 | 14 | 2018 |
Fundamental symmetries, neutrons, and neutrinos (FSNN): Whitepaper for the 2023 NSAC long range plan B Acharya, C Adams, AA Aleksandrova, K Alfonso, P An, S Baeßler, ... arXiv preprint arXiv:2304.03451, 2023 | 8 | 2023 |
Uncertainty quantification in electromagnetic observables of nuclei B Acharya, S Bacca, F Bonaiti, SS Li Muli, JE Sobczyk Frontiers in Physics 10, 1066035, 2023 | 8 | 2023 |
Bayesian analysis of nuclear polarizability corrections to the Lamb shift of muonic H-atoms and He-ions SSL Muli, B Acharya, OJ Hernandez, S Bacca Journal of Physics G: Nuclear and Particle Physics 49 (10), 105101, 2022 | 8 | 2022 |
Corrections to nucleon capture cross sections computed in truncated Hilbert spaces B Acharya, A Ekström, D Odell, T Papenbrock, L Platter Physical Review C 95 (3), 031301, 2017 | 8 | 2017 |
Universal behavior of -wave proton-proton fusion near threshold B Acharya, L Platter, G Rupak Physical Review C 100 (2), 021001, 2019 | 7 | 2019 |
Magnetic Dipole Transition in B Acharya, BS Hu, S Bacca, G Hagen, P Navrátil, T Papenbrock Physical Review Letters 132 (23), 232504, 2024 | 6 | 2024 |
Solar fusion III: New data and theory for hydrogen-burning stars B Acharya, M Aliotta, AB Balantekin, D Bemmerer, CA Bertulani, A Best, ... arXiv preprint arXiv:2405.06470, 2024 | 6 | 2024 |
Revisiting proton–proton fusion in chiral effective field theory B Acharya, LE Marcucci, L Platter Journal of Physics G: Nuclear and Particle Physics 50 (9), 095102, 2023 | 5 | 2023 |