Ab initio calculation of the Hoyle state E Epelbaum, H Krebs, D Lee, UG Meißner Phys. Rev. Lett 106, 192501, 2011 | 435 | 2011 |
Lattice simulations for few-and many-body systems D Lee Progress in Particle and Nuclear Physics 63 (1), 117-154, 2009 | 338 | 2009 |
Structure and rotations of the Hoyle state E Epelbaum, H Krebs, TA Lähde, D Lee, UG Meißner Physical Review Letters 109 (25), 252501, 2012 | 325 | 2012 |
Microscopic clustering in light nuclei M Freer, H Horiuchi, Y Kanada-En’yo, D Lee, UG Meißner Review of Modern Physics 90, 035004, 2018 | 299 | 2018 |
Ab initio alpha–alpha scattering S Elhatisari, D Lee, G Rupak, E Epelbaum, H Krebs, TA Lähde, T Luu, ... Nature 528 (7580), 111-114, 2015 | 184 | 2015 |
Ab Initio Calculation of the Spectrum and Structure of E Epelbaum, H Krebs, TA Lähde, D Lee, UG Meißner, G Rupak Physical review letters 112 (10), 102501, 2014 | 170 | 2014 |
Lattice simulations for light nuclei: Chiral effective field theory at leading order B Borasoy, E Epelbaum, H Krebs, D Lee, UG Meißner The European Physical Journal A 31, 105-123, 2007 | 141 | 2007 |
Lattice effective field theory for medium-mass nuclei TA Lähde, E Epelbaum, H Krebs, D Lee, UG Meißner, G Rupak Physics Letters B 732, 110-115, 2014 | 137 | 2014 |
Eigenvector continuation with subspace learning D Frame, R He, I Ipsen, D Lee, D Lee, E Rrapaj Physical review letters 121 (3), 032501, 2018 | 135 | 2018 |
Colloquium: Machine learning in nuclear physics A Boehnlein, M Diefenthaler, N Sato, M Schram, V Ziegler, C Fanelli, ... Reviews of modern physics 94 (3), 031003, 2022 | 129 | 2022 |
Lattice Effective Field Theory Calculations for , 4, 6, 12 Nuclei E Epelbaum, H Krebs, D Lee, UG Meißner Physical review letters 104 (14), 142501, 2010 | 125 | 2010 |
Viability of carbon-based life as a function of the light quark mass E Epelbaum, H Krebs, TA Lähde, D Lee, UG Meißner Physical review letters 110 (11), 112502, 2013 | 124 | 2013 |
Cold dilute neutron matter on the lattice. II. Results in the unitary limit D Lee, T Schäfer Physical Review C—Nuclear Physics 73 (1), 015202, 2006 | 111 | 2006 |
Nuclear binding near a quantum phase transition S Elhatisari, N Li, A Rokash, JM Alarcón, D Du, N Klein, B Lu, UG Meißner, ... Physical review letters 117 (13), 132501, 2016 | 104 | 2016 |
Nuclear lattice simulations with chiral effective field theory D Lee, B Borasoy, T Schaefer Physical Review C—Nuclear Physics 70 (1), 014007, 2004 | 104 | 2004 |
Ground-state energy of dilute neutron matter at next-to-leading order in lattice chiral effective field theory E Epelbaum, H Krebs, D Lee, UG Meißner The European Physical Journal A 40, 199-213, 2009 | 102 | 2009 |
Eigenvector continuation as an efficient and accurate emulator for uncertainty quantification S König, A Ekström, K Hebeler, D Lee, A Schwenk Physics Letters B 810, 135814, 2020 | 99 | 2020 |
Causality and the effective range expansion HW Hammer, D Lee Annals of Physics 325 (10), 2212-2233, 2010 | 97 | 2010 |
Topological phases for bound states moving in a finite volume S Bour, S König, D Lee, HW Hammer, UG Meißner Physical Review D—Particles, Fields, Gravitation, and Cosmology 84 (9), 091503, 2011 | 95 | 2011 |
Lattice calculations for A= 3, 4, 6, 12 nuclei using chiral effective field theory E Epelbaum, H Krebs, D Lee, UG Meißner The European Physical Journal A 45, 335-352, 2010 | 87 | 2010 |