Articles

Topic: DOE funded (2020-2023)
Publications for topic "DOE funded (2020-2023)" sorted by title
| 1-100 | 101-172 |
Authors associated with the Cyclotron Institute are , and those associated with Center of Excellence in Nuclear Training And University-based Research (CENTAUR) have a * next to their name.
M
| Measurement of transverse single-spin asymmetries of $\pi^0$ and electromagnetic jets at forward rapidity in 200 and 500 GeV transversely polarized proton-proton collisions, and the (including , , , , , , , and ), Phys. Rev. D 103, 092009 (2021) |
pub id: 1163 [DOI] [URL] |
| Measurements of dihadron correlations relative to the event plane in Au+Au collisions at $\sqrt{s_{NN}}=200~\mathrm{GeV}$, and the (including , , , , and ), Chinese Physics C 45, 044002 (2021) |
pub id: 1113 [DOI] [URL] |
| Mechanism of astatine and bismuth sorption on extraction chromatography resins from nitric acid media, , , , , , , *, , *, , , , *, *, , , , , *, , , , and *, Chemical Engineering Journal 464, 142742 (2023) | pub id: 1310 [DOI] [URL] |
| Menthol-Based eutectic solvent for indium and thallium partition from hydrochloric acid media, , and , Journal of Molecular Liquids 391, 123339 (2023) | pub id: 1339 [DOI] [URL] |
| Methods for a blind analysis of isobar data collected by the STAR collaboration, and the (including , , , , , , , and ), Nuclear Science and Techniques 32, 48 (2021) | pub id: 1164 [DOI] [URL] |
| Microscopic-macroscopic level densities for low excitation energies, , , , , and , Low Temperature Physics 48, 920--937 (2022) |
pub id: 1277 [DOI] [URL] |
| Modular next generation fast-neutron detector for portal monitoring, *, , *, , , *, , * and *, Nuclear Science and Techniques 33, 13 (2022) | pub id: 1203 [DOI] [URL] |
N
| Neutron stars as dense liquid drop at equilibrium within the effective surface approximation, , , , , , and , International Journal of Modern Physics E 33, 2450043 (2024) | pub id: 1412 [DOI] |
| New approach to precisely measure $\gamma$-ray intensities for long-lived fission products, with results for the decay of $^{95}$Zr, , , , , , , , , , , , , , , , , , , , , and , Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 1000, 165240 (2021) | pub id: 1099 [DOI] [URL] |
| Noise signal identification in time projection chamber data using deep learning model, , , , and *, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 1048, 168025 (2023) | pub id: 1319 [DOI] [URL] |
| Non-perturbative quarkonium dissociation rates in strongly coupled quark-gluon plasma, , and *, Journal of High Energy Physics 2025, 162 (2025) | pub id: 1504 [DOI] |
| Nondestructive and destructive assay for forensics characterization of weapons-grade plutonium produced in LEU irradiated in a thermal neutron spectrum, , , , , , , and , Annals of Nuclear Energy 183, 109645 (2023) | pub id: 1306 [DOI] [URL] |
| Nuclear Data Sheets for $A=141$, , Nuclear Data Sheets 187, 1--354 (2023) | pub id: 1285 [DOI] [URL] |
| Nuclear Data Sheets for $A=147$, and , Nuclear Data Sheets 181, 1--474 (2022) | pub id: 1260 [DOI] [URL] |
| Nuclear Data Sheets for $A=153$, , Nuclear Data Sheets 170, 1-498 (2020) | pub id: 1056 [DOI] [URL] |
| Nuclear Data Sheets for $A=154$, , Nuclear Data Sheets 200, 2–524 (2025) | pub id: 1426 [DOI] |
| Nuclear Data Sheets for $A=162$, , Nuclear Data Sheets 195, 1–367 (2024) | pub id: 1399 [DOI] |
| Nuclear Data Sheets for A=160, , Nuclear Data Sheets 176, 1--428 (2021) | pub id: 1149 [DOI] [URL] |
| Nuclear forensics methodology identifies legacy plutonium from the Manhattan Project, , , , , and , Journal of Radioanalytical and Nuclear Chemistry 330, 57-65 (2021) | pub id: 1361 [DOI] [URL] |
| Nuclear level density in the statistical semiclassical micro-macroscopic approach, , , , , and , Nuclear Physics and Atomic Energy 24, 175--192 (2023) |
pub id: 1336 [DOI] [URL] |
| Nuclear liquid-gas phase transition with machine learning, , , , , , and , Physical Review Research 2, 043202 (2020) | pub id: 1073 [DOI] [URL] |
| Nuclear temperature and its dependence on the source neutron-proton asymmetry deduced using the Albergo thermometer, , , , , , , , , , , , , , , and , Phys. Rev. C 103, 014601 (2021) | pub id: 1090 [DOI] [URL] |
| Number-of-constituent-quark scaling of elliptic flow: a quantitative study, , , , , and , Nuclear Science and Techniques 33, 9 (2022) | pub id: 1215 [DOI] [URL] |
O
| Observation of $T=3/2$ isobaric analog states in $^9\mathrm{Be}$ using $p+^8\mathrm{Li}$ resonance scattering, , *, *, , , , , , , , , and *, Phys. Rev. C 102, 014615 (2020) | pub id: 1041 [DOI] [URL] |
P
| Pair invariant mass to isolate background in the search for the chiral magnetic effect in Au+Au collisions at $\sqrt{s_{NN}}$ = 200 GeV, and the (including , , , , , , , and ), Phys. Rev. C 106, 034908 (2022) |
pub id: 1255 [DOI] [URL] |
| Pairing correlations within the micro-macroscopic approach for the level density, , , , , and , The European Physical Journal A 60, 6 (2024) |
pub id: 1355 [DOI] [URL] |
| Performance of position-sensitive resistive silicon detectors in the Forward Array Using Silicon Technology (FAUST), *, , , , , , , , , and *, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 985, 164642 (2021) | pub id: 1052 [DOI] [URL] |
| Precise $\beta$ branching-ratio measurement for the $0^+\rightarrow0^+$ superallowed decay of $^{34}\mathrm{Ar}$, , , , , , , , , and , Phys. Rev. C 101, 045501 (2020) | pub id: 997 [DOI] [URL] |
| Precise measurements of the $\gamma$-ray intensities following the $\beta$ decay of $^{144}\text{Ce}$ and $^{147}\text{Nd}$, , , , , , , , , , , , , *, , , , , , and , Phys. Rev. C 110, 024307 (2024) | pub id: 1381 [DOI] [URL] |
| Probing the Redox Reactivity of Alkyl Bound Astatine: A Study on the Formation and Cleavage of a Stable At--C Bond, , , , , , , , , *, * and , Inorganic Chemistry 64, 911–921 (2025) | pub id: 1421 [DOI] |
| Production of $^{99}\mathrm{Mo}$ in inverse kinematics heavy ion reactions, , , , , , , , , *, , and , Radiation Physics and Chemistry 212, 111162 (2023) | pub id: 1331 [DOI] [URL] |
| Production of protons and light nuclei in Au+Au collisions at $\sqrt{s_{NN}}$ = 3 GeV with the STAR detector, and the (including , , , , , , and ), Physical Review C 110, 054911 (2024) | pub id: 1418 [DOI] |
| Production, isolation, and shipment of clinically relevant quantities of astatine-211: A simple and efficient approach to increasing supply, *, , , , , , , , , , , , *, , *, , *, , , *, , and *, Nuclear Medicine and Biology 126-127, 108387 (2023) | pub id: 1343 [DOI] [URL] |
| Projections of two-particle correlations onto transverse rapidity in Au+Au collisions at $\sqrt{s_{NN}}$ = 200 GeV at STAR, and the (including , , , , , , , and ), Phys. Rev. C 106, 044906 (2022) | pub id: 1261 [DOI] [URL] |
| Properties of Isoscalar Giant Multipole Resonances in Medium-Heavy Closed-Shell Nuclei: A Semi microscopic Description, , , and , Phys. Rev. C 103, 034302 (2021) |
pub id: 1097 [DOI] [URL] |
| Proton 0.01 MeV resonance width and low-energy $S$ factor of $p+{}^{10}\mathrm{B}$ fusion, , Phys. Rev. C 108, 054603 (2023) | pub id: 1344 [DOI] [URL] |
| Proton and neutron exchange as a prelude to fusion at near-barrier energies, , , , , , , , , , *, , , , *, , , *, , , , , and , Phys. Rev. C 106, L011603 (2022) | pub id: 1296 [DOI] [URL] |
| Pseudo-rapidity distributions of charged particles in asymmetric collisions using Tsallis thermodynamics, , , , , , and , Nuclear Science and Techniques 34, 172 (2023) | pub id: 1389 [DOI] |
| Pseudorapidity distributions of charged particles in pp($\overline{\mathrm{p}}$), p(d)A and {AA} collisions using Tsallis thermodynamics, , , , , and , Journal of Physics G: Nuclear and Particle Physics 48, 105102 (2021) |
pub id: 1179 [DOI] [URL] |
R
| Radiative decay branching ratio of the Hoyle state, , , , , , , , *, , , * and *, Phys. Rev. C 109, 025801 (2024) | pub id: 1348 [DOI] [URL] |
| Radioisotope production using lasers: From basic science to applications, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , and , Matter and Radiation at Extremes 9, 037203 (2024) | pub id: 1360 [DOI] [URL] |
| Rapid extraction of short-lived isotopes from a buffer gas cell for use in gas-phase chemistry experiments, Part II: On-line studies with short-lived accelerator-produced radionuclides, , , , , , , , , , , , , , , , , , , , , , , and , Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 507, 27--35 (2021) | pub id: 1173 [DOI] [URL] |
| Rapid recovery of At-211 by extraction chromatography, , , , , , , , , *, , , and *, Separation and Purification Technology 256, 117794 (2021) |
pub id: 1063 [DOI] [URL] |
Reaction dynamics and in-medium nucleon-nucleon cross section with $^{12}\mathrm{C}+^{1}\mathrm{H}$ at 95~MeV/nucleon, , , , , , , , , , , , and , Phys. Rev. C 107, 044602 (2023)
|
pub id: 1317 [DOI] [URL] |
| Resonances in low-energy nuclear processes and nuclear astrophysics and asymptotic normalization coefficients: a review, , The European Physical Journal A 59, 56 (2023) | pub id: 1299 [DOI] [URL] |
| Restoring original signals from pile-up using deep learning, , , , and *, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 1055, 168492 (2023) | pub id: 1324 [DOI] [URL] |
| Role of excited states in the sub-barrier fusion of light nuclei, , , , and , Physical Review C 111, 014602 (2025) | pub id: 1392 [DOI] |
S
| Search for rare 3-$\alpha$ decays in the region of the Hoyle state of $^{12}$C, , , , , , , , , , , , , , , , , , and , Nuclear Physics A 1020, 122395 (2022) | pub id: 1202 [DOI] [URL] |
| Search for the chiral magnetic effect with isobar collisions at $\sqrt{s_{NN}}$ = 200 GeV by the STAR Collaboration at the BNL Relativistic Heavy Ion Collider, and the (including , , , , , , , and ), Phys. Rev. C 105, 014901 (2022) |
pub id: 1198 [DOI] [URL] |
| Searching for QCD critical point with light nuclei, , Nuclear Science and Techniques 34, 80 (2023) | pub id: 1374 [DOI] [URL] |
| Semiclassical shell-structure micro-macroscopic approach for level density, , , , and , Phys. Rev. C 104, 044319 (2021) |
pub id: 1181 [DOI] [URL] |
| Semimicroscopic description of isoscalar giant multipole resonances in medium-mass closed-shell nuclei, , , and , Phys. Rev. C 108, 014328 (2023) |
pub id: 1327 [DOI] [URL] |
Semirelativistic antisymmetrized molecular dynamics for the production of energetic neutrons in intermediate-energy heavy-ion reactions, , , , , , , , , and , Phys. Rev. C 108, 054907 (2023)
|
pub id: 1349 [DOI] [URL] |
| Separation, speciation, and mechanism of astatine and bismuth extraction from nitric acid into 1-octanol and methyl anthranilate, , , , , *, , , , , , , , and *, Separation and Purification Technology 282, 120088 (2022) | pub id: 1186 [DOI] [URL] |
| Shell-structure and asymmetry effects in level densities, , , , and , International Journal of Modern Physics E 30, S0218301321500920 (2021) |
pub id: 1191 [DOI] [URL] |
| Spin Quantization in Heavy Ion Collision, and , Symmetry 13, 1777 (2021) |
pub id: 1177 [DOI] [URL] |
| Status of deep subbarrier $^{12}\mathrm{C}+^{12}\mathrm{C}$ fusion and advancing the Trojan horse method, , The European Physical Journal A 58, 6 (2022) | pub id: 1223 [DOI] [URL] |
| Strange hadron production in $\mathrm{Au}+\mathrm{Au}$ collisions at $\sqrt{s_{NN}}=7.7$, $11.5$, $19.6$, $27$, and $39~\mathrm{GeV}$, and the (including , , , , , , , , , and ), Phys. Rev. C 102, 034909 (2020) |
pub id: 1081 [DOI] [URL] |
| Superallowed $0^+\rightarrow0^+$ nuclear $\beta$ decays: 2020 critical survey, with implications for $V_{ud}$ and CKM unitarity, and , Phys. Rev. C 102, 045501 (2020) | pub id: 1053 [DOI] [URL] |
T
| T-matrix analysis of static Wilson line correlators from lattice QCD at finite temperature, , , and *, The European Physical Journal A 60, 92 (2024) | pub id: 1495 [DOI] |
| The $^3\mathrm{He}+^5\mathrm{He}\rightarrow\alpha+\alpha$ reaction below the Coulomb barrier via the Trojan Horse Method, , , , , , , , , , , , , , , , , , , , , , , , , , , and , The European Physical Journal A 57, 20 (2021) | pub id: 1091 [DOI] [URL] |
| The Novel Scaling of Tsallis Parameters from the Transverse Momentum Spectra of Charged Particles in Heavy-Ion Collisions, , , , , , and , Particles 5, 146--156 (2022) | pub id: 1284 [DOI] [URL] |
| The SPiRIT time projection chamber, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , *, and , Review of Scientific Instruments 92, 063302 (2021) | pub id: 1125 [DOI] [URL] |
| The TAMUTRAP facility: A Penning trap facility at Texas A\&M University for weak interaction studies, , , , , , , , , , , *, , *, , , *, , and *, International Journal of Mass Spectrometry 468, 116636 (2021) | pub id: 1128 [DOI] [URL] |
| Thermodynamic properties at the kinetic freeze-out in the Au + Au and Cu + Cu collisions at the RHIC using the Tsallis distribution, , , , , , and , Nuclear Science and Techniques 34, 151 (2023) | pub id: 1388 [DOI] |
| Thick target inverse kinematics approach for neutron emission, , , , , , , , , and *, Physical Review Research 2, 032036 (2020) | pub id: 1061 [DOI] [URL] |
| Thick target neutron yields from Beryllium, Carbon, Tungsten, and Lead targets irradiated by 26.7 MeV/nucleon $^4$He ions, , , , , , , and , Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 516, 48--54 (2022) | pub id: 1205 [DOI] [URL] |
| Thickness and uniformity mapping of thin foils using resistive silicon detectors, , , , *, , , , , * and *, Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 566, 165788 (2025) |
pub id: 1464 [DOI] |
| Tomography of ultrarelativistic nuclei with polarized photon-gluon collisions, and the (including and ), Science Advances 9, eabq3903 (2023) | pub id: 1288 [DOI] [URL] |
| Trojan horse method as an indirect approach to study resonant reactions in nuclear astrophysics, , and , The European Physical Journal A 56, 44 (2020) | pub id: 1049 [DOI] [URL] |
U
| Using DAPPER to extract the photon strength function of $^{58}\mathrm{Fe}$ using the inverse Oslo and shape methods, *, *, , , , , , , *, , *, , , , , and *, Physical Review C 111, 034322 (2025) |
pub id: 1427 [DOI] |
V
| Valence states of cyclotron-produced thallium, , , , , , , , , and , New Journal of Chemistry 45, 3377-3381 (2021) | pub id: 1095 [DOI] [URL] |
| 1-100 | 101-172 |


