@PREAMBLE{ "\providecommand{\noopsort}[1]{}" # "\providecommand{\singleletter}[1]{#1}%" } @article{OBERHUMMER2001269, title = {Bridging the mass gaps at ${A}=5$ and ${A}=8$ in nucleosynthesis}, journal = {Nuclear Physics A}, volume = {689}, number = {1}, pages = {269-279}, year = {2001}, IGNnote = {European Few-Body Problems in Physics}, issn = {0375-9474}, doi = {10.1016/S0375-9474(01)00841-7}, IGNurl = {https://www.sciencedirect.com/science/article/pii/S0375947401008417}, author = {H. Oberhummer and A. Csótó and H. Schlattl} } @article{SUMIYOSHI2002467, title = "{Astrophysical reaction rate for $\alpha(\alpha n,\gamma){}^9$Be by photodisintegration}", journal = {Nuclear Physics A}, volume = {709}, number = {1}, pages = {467-486}, year = {2002}, issn = {0375-9474}, doi = {10.1016/S0375-9474(02)01058-8}, IGNurl = {https://www.sciencedirect.com/science/article/pii/S0375947402010588}, author = {K. Sumiyoshi and H. Utsunomiya and S. Goko and T. Kajino}, IGNabstract = {} } @article{YC9Be, title = {${}^{9}${B}e photodisintegration cross section within cluster effective field theory}, author = {Capitani, Y. and Filandri, E. and Ji, C. and Leidemann, W. and Orlandini, G.}, journal = {Phys. Rev. C}, volume = {112}, pages = {064005}, year = {2025}, IGNmonth = {Oct}, publisher = {American Physical Society}, doi = {10.1103/4492-hghr}, url = {https://link.aps.org/doi/10.1103/4492-hghr}, eprint={2506.05040}, archivePrefix={arXiv}, primaryClass={nucl-th} } @article{Efros_2007, doi = {10.1088/0954-3899/34/12/R02}, IGNurl = {https://dx.doi.org/10.1088/0954-3899/34/12/R02}, year = {2007}, month = {10}, OPTpublisher = {}, volume = {34}, number = {12}, pages = {R459}, author = {V. D. Efros and W. Leidemann and G. Orlandini and N. Barnea}, title = {The {L}orentz {I}ntegral {T}ransform ({LIT}) method and its applications to perturbation-induced reactions}, journal = {Journal of Physics G: Nuclear and Particle Physics}, abstract = {The LIT method has allowed ab initio calculations of electroweak cross sections in light nuclear systems. This review presents a description of the method from both a general and a more technical point of view, as well as a summary of the results obtained by its application. The remarkable features of the LIT approach, which make it particularly efficient in dealing with a general reaction involving continuum states, are underlined. Emphasis is given on the results obtained for electroweak cross sections of few-nucleon systems. Their implications for the present understanding of microscopic nuclear dynamics are discussed.} } @article{PhysRevC.83.024001, title = {Nonsymmetrized hyperspherical harmonic basis for an {$A$}-body system}, author = {Gattobigio, M. and Kievsky, A. and Viviani, M.}, journal = {Phys. Rev. C}, volume = {83}, issue = {2}, pages = {024001}, numpages = {13}, year = {2011}, month = {2}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.83.024001}, IGNurl = {https://link.aps.org/doi/10.1103/PhysRevC.83.024001} } @article{Deflorian2013, title = {Nonsymmetrized {H}yperspherical {H}armonics with Realistic {N}{N} Potentials}, author = {Deflorian, S. and Barnea, N. and Leidemann, W. and Orlandini, G.}, journal = {Few-Body Systems}, volume = {54}, issue = {11}, pages = {1879-1887}, year = {2013}, month = {11}, doi = {10.1007/s00601-013-0717-y}, IGNurl = {https://doi.org/10.1007/s00601-013-0717-y} } @article{RevModPhys.92.025004, title = {Nuclear effective field theory: Status and perspectives}, author = {Hammer, H.-W. and K\"onig, Sebastian and van Kolck, U.}, journal = {Rev. Mod. Phys.}, volume = {92}, issue = {2}, pages = {025004}, numpages = {66}, year = {2020}, month = {6}, publisher = {American Physical Society}, doi = {10.1103/RevModPhys.92.025004}, url = {https://link.aps.org/doi/10.1103/RevModPhys.92.025004} } @article{Hammer_2017, doi = {10.1088/1361-6471/aa83db}, IGNurl = {https://dx.doi.org/10.1088/1361-6471/aa83db}, year = {2017}, month = {9}, publisher = {IOP Publishing}, volume = {44}, number = {10}, pages = {103002}, author = {H-W Hammer and C Ji and D R Phillips}, title = {Effective field theory description of halo nuclei}, journal = {Journal of Physics G: Nuclear and Particle Physics}, abstract = {Nuclear halos emerge as new degrees of freedom near the neutron and proton driplines. They consist of a core and one or a few nucleons which spend most of their time in the classically-forbidden region outside the range of the interaction. Individual nucleons inside the core are thus unresolved in the halo configuration, and the low-energy effective interactions are short-range forces between the core and the valence nucleons. Similar phenomena occur in clusters of 4He atoms, cold atomic gases near a Feshbach resonance, and some exotic hadrons. In these weakly-bound quantum systems universal scaling laws for s-wave binding emerge that are independent of the details of the interaction. Effective field theory (EFT) exposes these correlations and permits the calculation of non-universal corrections to them due to short-distance effects, as well as the extension of these ideas to systems involving the Coulomb interaction and/or binding in higher angular-momentum channels. Halo nuclei exhibit all these features. Halo EFT, the EFT for halo nuclei, has been used to compute the properties of single-neutron, two-neutron, and single-proton halos of s-wave and p-wave type. This review summarizes these results for halo binding energies, radii, Coulomb dissociation, and radiative capture, as well as the connection of these properties to scattering parameters, thereby elucidating the universal correlations between all these observables. We also discuss how Halo EFT's encoding of the long-distance physics of halo nuclei can be used to check and extend ab initio calculations that include detailed modeling of their short-distance dynamics.} } @article{PhysRevC.90.044004_Ji, title = {$^{6}\mathrm{He}$ nucleus in halo effective field theory}, author = {Ji, C. and Elster, Ch. and Phillips, D. R.}, journal = {Phys. Rev. C}, volume = {90}, issue = {4}, pages = {044004}, numpages = {18}, year = {2014}, month = {Oct}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.90.044004}, IGNurl = {https://link.aps.org/doi/10.1103/PhysRevC.90.044004} } @article{Wigner_PhysRev.98.145, title = {Lower Limit for the Energy Derivative of the Scattering Phase Shift}, author = {Wigner, Eugene P.}, journal = {Phys. Rev.}, volume = {98}, issue = {1}, pages = {145--147}, numpages = {0}, year = {1955}, month = {4}, publisher = {American Physical Society}, doi = {10.1103/PhysRev.98.145}, IGNurl = {https://link.aps.org/doi/10.1103/PhysRev.98.145} } @article{ARNDT1973429, title = {Nucleon-alpha elastic scattering analyses: ({I}). {L}ow-energy $n$-$\alpha$ and $p$-$\alpha$ analyses}, journal = {Nuclear Physics A}, volume = {209}, number = {3}, pages = {429-446}, year = {1973}, issn = {0375-9474}, doi = {10.1016/0375-9474(73)90837-3}, IGNurl = {https://www.sciencedirect.com/science/article/pii/0375947473908373}, author = {Richard A. Arndt and Dale D. Long and L.David Roper}, abstract = {Energy-dependent phase-shift analyses of low-energy n-α and p-α elastic scattering data were performed. Effective range parameters were obtained using the least number of parameters, and data up to the lowest energy necessary to give good fits. Fits to data up to 5 MeV for p-α scattering and up to 3 MeV for n-α scattering, with 7 parameters used in each case, were chosen as the optimum low-energy solutions. Examples of observables which can be calculated from these solutions are presented.} } @article{HIGA2008171, title = {$\alpha\alpha$ scattering in halo effective field theory}, journal = {Nuclear Physics A}, volume = {809}, number = {3}, pages = {171-188}, year = {2008}, issn = {0375-9474}, doi = {10.1016/j.nuclphysa.2008.06.003}, IGNurl = {https://www.sciencedirect.com/science/article/pii/S0375947408005757}, author = {R. Higa and H.-W. Hammer and U. {van Kolck}}, keywords = {Effective field theory, Nuclear clusters}, abstract = {We study the two-alpha-particle system in an Effective Field Theory (EFT) for halo-like systems. We propose a power counting that incorporates the subtle interplay of strong and electromagnetic forces leading to a narrow resonance at an energy of about 0.1 MeV. We investigate the EFT expansion in detail, and compare its results with existing low-energy αα phase shifts and previously determined effective-range parameters. Good description of the data is obtained with a surprising amount of fine-tuning. This scenario can be viewed as an expansion around the limit where, when electromagnetic interactions are turned off, the 8Be ground state is at threshold and exhibits conformal invariance. We also discuss possible extensions to systems with more than two alpha particles.} } @article{AFZRevModPhys.41.247, title = {Systematic Survey of the $\ensuremath{\alpha}\ensuremath{-}\ensuremath{\alpha}$ Interaction}, author = {Afzal, S. A. and Ahmad, A. A. Z. and Ali, S.}, journal = {Rev. Mod. Phys.}, volume = {41}, issue = {1}, pages = {247--273}, numpages = {0}, year = {1969}, month = {1}, publisher = {American Physical Society}, doi = {10.1103/RevModPhys.41.247}, IGNurl = {https://link.aps.org/doi/10.1103/RevModPhys.41.247} } @article{BEDAQUE2003159, title = {Narrow resonances in effective field theory}, journal = {Physics Letters B}, volume = {569}, number = {3}, pages = {159-167}, year = {2003}, issn = {0370-2693}, doi = {10.1016/j.physletb.2003.07.049}, IGNurl = {https://www.sciencedirect.com/science/article/pii/S0370269303010712}, author = {P.F. Bedaque and H.-W. Hammer and U. {van Kolck}}, keywords = {Effective field theory, Narrow resonances}, abstract = {We discuss the power counting for effective field theories with narrow resonances near a two-body threshold. Close to threshold, the effective field theory is perturbative and only one combination of coupling constants is fine-tuned. In the vicinity of the resonance, a second, “kinematic” fine-tuning requires a nonperturbative resummation. We illustrate our results in the case of nucleon-alpha scattering.} } @article{EFIMOV, title = {Energy levels arising from resonant two-body forces in a three-body system}, journal = {Phys. Lett. B}, volume = {33}, number = {8}, pages = {563}, year = {1970}, issn = {0370-2693}, doi = {https://doi.org/10.1016/0370-2693(70)90349-7}, url = {https://www.sciencedirect.com/science/article/pii/0370269370903497}, author = {V. Efimov}, abstract = {Resonant two-body forces are shown to give rise to a series of levels in three-particle systems. The number of such levels may be very large. Possibility of the existence of such levels in systems of three α-particles (12C nucleus) and three nucleons (3H) is discussed.} } @article{kievsky, title={Efimov Physics and Connections to Nuclear Physics}, author={A. Kievsky and Luca Girlanda and M. Gattobigio and Michele Viviani}, journal={Ann. Rev. Nucl. Part. Sc}, year={2021}, volume={71}, pages={465--490}, doi={https://doi.org/10.1146/annurev-nucl-102419-032845}, url={https://www.annualreviews.org/content/journals/10.1146/annurev-nucl-102419-032845}, publisher={Annual Reviews}, issn={1545-4134} } @article{Pwaveefimov, title = {Renormalization in the three-body problem with resonant $p$-wave interactions}, author = {Braaten, Eric and Hagen, P. and Hammer, H.-W. and Platter, L.}, journal = {Phys. Rev. A}, volume = {86}, issue = {1}, pages = {012711}, numpages = {7}, year = {2012}, month = {Jul}, publisher = {American Physical Society}, doi = {10.1103/PhysRevA.86.012711}, url = {https://link.aps.org/doi/10.1103/PhysRevA.86.012711} } @article{nopwaveef, title = {Impossibility of the {E}fimov effect for $p$-wave interactions}, author = {Nishida, Yusuke}, journal = {Phys. Rev. A}, volume = {86}, issue = {1}, pages = {012710}, numpages = {2}, year = {2012}, month = {Jul}, publisher = {American Physical Society}, doi = {10.1103/PhysRevA.86.012710}, url = {https://link.aps.org/doi/10.1103/PhysRevA.86.012710} } @article{Li:2023hwe, author = "Li, Qingfeng and Lyu, Songlin and Ji, Chen and Long, Bingwei", title = "{Effective field theory with resonant P-wave interaction}", IGNeprint = "2303.17292", IGNarchivePrefix = "arXiv", IGNprimaryClass = "nucl-th", doi = "10.1103/PhysRevC.108.024002", journal = "Phys. Rev. C", volume = "108", number = "2", pages = "024002", year = "2023" } @article{TILLEY2004155, title = {Energy levels of light nuclei {A}=8, 9, 10}, journal = {Nuclear Physics A}, volume = {745}, number = {3}, pages = {155-362}, year = {2004}, issn = {0375-9474}, doi = {10.1016/j.nuclphysa.2004.09.059}, IGNurl = {https://www.sciencedirect.com/science/article/pii/S0375947404010267}, author = {D.R. Tilley and J.H. Kelley and J.L. Godwin and D.J. Millener and J.E. Purcell and C.G. Sheu and H.R. Weller}, abstract = {A review of the evidence on the properties of the nuclei A=8, 9 and 10, with emphasis on material leading to information about the structure of the A=8,9,10 systems.} } @article{KUKULIN1978330, title = {The orthogonal projection method in scattering theory}, journal = {Annals of Physics}, volume = {111}, number = {2}, pages = {330-363}, year = {1978}, issn = {0003-4916}, doi = {https://doi.org/10.1016/0003-4916(78)90069-6}, url = {https://www.sciencedirect.com/science/article/pii/0003491678900696}, author = {V.I Kukulin and V.N Pomerantsev}, abstract = {This work gives a detailed account of the orthogonal projection method in the theory of two- and three-body scattering, which is based on the employment of orthogonal projecting pseudopotentials. The method is applied to a number of physical problems, of which the following the most important: the improvement of convergence and the rearragement of Born series to make them convergent at low energies in the presence of bound states in a system, as well as the consideration of the Pauli exclusion principle in the scattering of composite particles and in the integral theory of direct nuclear reactions. The properties of eigenvalues of kernels of the equations obtained are investigated and the conditions for the convergence of their iterations are derived. For the three-body problem, the general case of three different particles is considered, as well as two particular cases, namely, two particles in the field of a heavy core and three identical particles. The proven theorems are illustrated by numerical examples. Other useful applications of the proposed approach are listed and discussed, in particular, those in solid-state physics and in the theory of electromagnetic transitions. The approach suggested is compared with those of the other authors and the prospects of using the developed formalism are discussed.} } @article{Utsunomiya00_PhysRevC.63.018801, title = {Photodisintegration of ${}^{9}\mathrm{Be}$ with laser-induced {C}ompton backscattered $\ensuremath{\gamma}$ rays}, author = {Utsunomiya, H. and Yonezawa, Y. and Akimune, H. and Yamagata, T. and Ohta, M. and Fujishiro, M. and Toyokawa, H. and Ohgaki, H.}, journal = {Phys. Rev. C}, volume = {63}, issue = {1}, pages = {018801}, numpages = {4}, year = {2000}, month = {12}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.63.018801}, IGNurl = {https://link.aps.org/doi/10.1103/PhysRevC.63.018801} } @article{Utsunomiya15_PhysRevC.92.064323, title = {Photodisintegration of $^{9}\mathrm{Be}$ through the $1/{2}^{+}$ state and cluster dipole resonance}, author = {Utsunomiya, H. and Katayama, S. and Gheorghe, I. and Imai, S. and Yamaguchi, H. and Kahl, D. and Sakaguchi, Y. and Shima, T. and Takahisa, K. and Miyamoto, S.}, journal = {Phys. Rev. C}, volume = {92}, issue = {6}, pages = {064323}, numpages = {8}, year = {2015}, month = {12}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.92.064323}, IGNurl = {https://link.aps.org/doi/10.1103/PhysRevC.92.064323} } @article{Arnold_PhysRevC.85.044605, title = {Cross-section measurement of ${}^{9}${B}e($\ensuremath{\gamma},n$)${}^{8}${B}e and implications for $\ensuremath{\alpha}+\ensuremath{\alpha}+n\ensuremath{\rightarrow}{}^{9}${B}e in the $r$ process}, author = {Arnold, C. W. and Clegg, T. B. and Iliadis, C. and Karwowski, H. J. and Rich, G. C. and Tompkins, J. R. and Howell, C. R.}, journal = {Phys. Rev. C}, volume = {85}, issue = {4}, pages = {044605}, numpages = {11}, year = {2012}, month = {4}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.85.044605}, IGNurl = {https://link.aps.org/doi/10.1103/PhysRevC.85.044605} } @article{Burda_PhysRevC.82.015808, title = {Resonance parameters of the first $1/{2}^{+}$ state in $^{9}\mathrm{Be}$ and astrophysical implications}, author = {Burda, O. and von Neumann-Cosel, P. and Richter, A. and Forss\'en, C. and Brown, B. A.}, journal = {Phys. Rev. C}, volume = {82}, issue = {1}, pages = {015808}, numpages = {7}, year = {2010}, month = {7}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.82.015808}, IGNurl = {https://link.aps.org/doi/10.1103/PhysRevC.82.015808} } @article{Goryachev, author = {Goryachev, A. M. and Zalesnyy, G. N. and Pozdnev, I. V.}, journal = {Izv. Ross. Akad. Nauk, Ser. Fiz.}, volume = {56}, pages = {159}, year = {1992} } @online{exfor, title = {{E}xperimental {N}uclear {R}eaction {D}ata ({EXFOR}) {D}atabase}, url = {https://www-nds.iaea.org/exfor/} } @article{Siegert1937, title = {Note on the Interaction Between Nuclei and Electromagnetic Radiation}, author = {Siegert, A. J. F.}, journal = {Phys. Rev.}, volume = {52}, issue = {8}, pages = {787--789}, OPTnumpages = {0}, year = {1937}, month = {10}, publisher = {American Physical Society}, doi = {10.1103/PhysRev.52.787}, IGNurl = {https://link.aps.org/doi/10.1103/PhysRev.52.787} } @article{Pinilla, title = {Three-body model of $^{6}\mathrm{He}$ with nonlocal halo effective field theory potentials}, author = {Pinilla, E. C. and Leidemann, W. and Orlandini, G. and Descouvemont, P.}, journal = {Phys. Rev. C}, volume = {112}, issue = {2}, pages = {024003}, numpages = {11}, year = {2025}, month = {Aug}, publisher = {American Physical Society}, doi = {10.1103/kskt-7p8g}, url = {https://link.aps.org/doi/10.1103/kskt-7p8g} } @phdthesis{Filandri, IGNtitle = {Effective field theory description of $\alpha$ cluster nuclei: The $^{9}${Be} ground state and $^{9}${Be} photodisintegration}, author = {Filandri, E.}, school = {University of Trento}, OPTpages = {1-125}, OPTnumpages = {125}, year = {2022}, IGNmonth = {Apr}, publisher = {Università degli studi di Trento}, IGNdoi = {https://dx.doi.org/10.15168/11572_338316}, URL={https://dx.doi.org/10.15168/11572_338316}, IGNurl = {https://hdl.handle.net/11572/338316}, keywords = {EFT, alpha cluster, nucleus, nuclear theory} } @phdthesis{Capitani, title = {Cluster effective field theory calculation of electromagnetic breakup reactions with the {Lorentz} integral transform method}, author = {Capitani, Y.}, school = {University of Trento}, OPTpages = {1-175}, OPTnumpages = {175}, year = {2024}, IGNmonth = {Jun}, publisher = {Università degli studi di Trento}, IGNdoi = {10.15168/11572_412793}, URL={https://dx.doi.org/10.15168/11572_412793}, IGNurl = {https://hdl.handle.net/11572/412793} }