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Determination of the half-life of gadolinium-148
Chiera, N. M., Dressler, R., Sprung, P., Talip, Z., & Schumann, D. (2023). Determination of the half-life of gadolinium-148. Applied Radiation and Isotopes, 194, 110708 (5 pp.). https://doi.org/10.1016/j.apradiso.2023.110708
Accelerator mass spectrometry with ANU's 14 million volt accelerator
Wallner, A., Fifield, L. K., Froehlich, M. B., Koll, D., Leckenby, G., Martschini, M., … Slavkovská, Z. (2023). Accelerator mass spectrometry with ANU's 14 million volt accelerator. Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, 534, 48-53. https://doi.org/10.1016/j.nimb.2022.10.021
Recovery of no-carrier-added <sup>41</sup>Ca, <sup>44</sup>Ti, and <sup>26</sup>Al from high-energy proton-irradiated vanadium targets
Wilson, J. M., Mihalcea, I., Veicht, M., Cvjetinović, Đ., & Schumann, D. (2023). Recovery of no-carrier-added 41Ca, 44Ti, and 26Al from high-energy proton-irradiated vanadium targets. Radiochimica Acta. https://doi.org/10.1515/ract-2022-0072
Evidence of a near-threshold resonance in <sup>11</sup>B relevant to the<em> β</em>-delayed proton emission of <sup>11</sup>B
Ayyad, Y., Mittig, W., Tang, T., Olaizola, B., Potel, G., Rijal, N., … Zelevinsky, V. (2022). Evidence of a near-threshold resonance in 11B relevant to the β-delayed proton emission of 11B. Physical Review Letters, 129(1), 012501 (5 pp.). https://doi.org/10.1103/PhysRevLett.129.012501
High precision half-life measurement of the extinct radio-lanthanide Dysprosium-154
Chiera, N. M., Dressler, R., Sprung, P., Talip, Z., & Schumann, D. (2022). High precision half-life measurement of the extinct radio-lanthanide Dysprosium-154. Scientific Reports, 12(1), 8988 (10 pp.). https://doi.org/10.1038/s41598-022-12684-6
Preparation of PbSe targets for <sup>79</sup>Se neutron capture cross section studies
Chiera, N. M., Maugeri, E. A., Danilov, I., Balibrea-Correa, J., Domingo-Pardo, C., Köster, U., … Schumann, D. (2022). Preparation of PbSe targets for 79Se neutron capture cross section studies. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1029, 166443 (7 pp.). https://doi.org/10.1016/j.nima.2022.166443
Commissioning of the ion implanter for the HOLMES experiment
De Gerone, M., Bevilacqua, A., Biasotti, M., Borghesi, M., Cerboni, N., Ceruti, G., … Siccardi, F. (2022). Commissioning of the ion implanter for the HOLMES experiment. Journal of Low Temperature Physics, 209, 1135-1142. https://doi.org/10.1007/s10909-022-02752-6
Status of the HOLMES experiment
De Gerone, M., Alpert, B., Balata, M., Becker, D. T., Bennett, D. A., Bevilacqua, A., … Vale, L. R. (2022). Status of the HOLMES experiment. Journal of Low Temperature Physics, 209, 980-987. https://doi.org/10.1007/s10909-022-02895-6
Multiplexed superconducting detectors for a neutrino mass experiment
Ferri, E., Alpert, B., Balata, M., Becker, D. T., Bennett, D. A., Borghesi, M., … Vale, L. R. (2022). Multiplexed superconducting detectors for a neutrino mass experiment. IEEE Transactions on Applied Superconductivity, 32(45), 2100204 (4 pp.). https://doi.org/10.1109/TASC.2021.3135794
Status of the HOLMES experiment: commissioning of the ion implanter
Gallucci, G., Bevilacqua, A., Biasotti, M., Borghesi, M., Cerboni, N., Ceruti, G., … Siccardi, F. (2022). Status of the HOLMES experiment: commissioning of the ion implanter. In Proceedings of science: Vol. 402. The 22nd international workshop on neutrinos from accelerators (NuFact2021) (p. 161 (6 pp.). https://doi.org/10.22323/1.402.0161
How accurate are half-life data of long-lived radionuclides?
Heinitz, S., Kajan, I., & Schumann, D. (2022). How accurate are half-life data of long-lived radionuclides? Radiochimica Acta, 110(6-9), 589-608. https://doi.org/10.1515/ract-2021-1135
Separation of manganese isotopes by resonance ionization mass spectrometry for <sup>53</sup>Mn half-life determination
Kneip, N., Studer, D., Kieck, T., Ulrich, J., Dressler, R., Schumann, D., & Wendt, K. (2022). Separation of manganese isotopes by resonance ionization mass spectrometry for 53Mn half-life determination. EPJ Applied Physics, 97, 19 (7 pp.). https://doi.org/10.1051/epjap/2022210270
<sup>74</sup>Ge(<em>n</em>, <em>γ</em>) cross section below 70 keV measured at n_TOF CERN
Lederer-Woods, C., Aberle, O., Andrzejewski, J., Audouin, L., Bécares, V., Bacak, M., … n_TOF Collaboration (2022). 74Ge(n, γ) cross section below 70 keV measured at n_TOF CERN. European Physical Journal A: Hadrons and Nuclei, 58(12), 239 (9 pp.). https://doi.org/10.1140/epja/s10050-022-00878-5
High accuracy, high resolution <sup>235</sup>U(n,f) cross section from n_TOF (CERN) from 18 meV to 10 keV
Mastromarco, M., Amaducci, S., Colonna, N., Finocchiaro, P., Cosentino, L., Barbagallo, M., … Žugec, P. (2022). High accuracy, high resolution 235U(n,f) cross section from n_TOF (CERN) from 18 meV to 10 keV. European Physical Journal A: Hadrons and Nuclei, 58(8), 147 (13 pp.). https://doi.org/10.1140/epja/s10050-022-00779-7
Constraints on the dipole photon strength for the odd uranium isotopes
Moreno-Soto, J., Valenta, S., Berthoumieux, E., Chebboubi, A., Diakaki, M., Dridi, W., … Žugec, P. (2022). Constraints on the dipole photon strength for the odd uranium isotopes. Physical Review C: Nuclear Physics, 105(2), 024618 (14 pp.). https://doi.org/10.1103/PhysRevC.105.024618
Isobar separation of <sup>32</sup>Si from <sup>32</sup>S in AMS using a passive absorber
Schlomberg, M., Vockenhuber, C., Synal, H. A., Veicht, M., Mihalcea, I., & Schumann, D. (2022). Isobar separation of 32Si from 32S in AMS using a passive absorber. Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, 533, 56-60. https://doi.org/10.1016/j.nimb.2022.09.029
<sup>92</sup>Zr(<em>n, γ</em>) and (<em>n</em>,tot) measurements at the GELINA and n_TOF facilities
Tagliente, G., Kopecky, S., Heyse, J., Krtička, M., Massimi, C., Mengoni, A., … Žugec, P. (2022). 92Zr(n, γ) and (n,tot) measurements at the GELINA and n_TOF facilities. Physical Review C: Nuclear Physics, 105(2), 025805 (14 pp.). https://doi.org/10.1103/PhysRevC.105.025805
Radiochemical separation of <sup>26</sup>Al and <sup>41</sup>Ca from proton-irradiated vanadium targets for cross-section determination by means of AMS
Veicht, M., Mihalcea, I., Gautschi, P., Vockenhuber, C., Maxeiner, S., David, J. C., … Schumann, D. (2022). Radiochemical separation of 26Al and 41Ca from proton-irradiated vanadium targets for cross-section determination by means of AMS. Radiochimica Acta, 110(10), 809-816. https://doi.org/10.1515/ract-2022-0036
First results of the <sup>140</sup>Ce(n,<em>ү</em>)<sup>141</sup>Ce cross-section measurement at n_TOF
Amaducci, S., Colonna, N., Cosentino, L., Cristallo, S., Finocchiaro, P., Krtička, M., … Žugec, P. (2021). First results of the 140Ce(n,ү)141Ce cross-section measurement at n_TOF. Universe, 7(6), 200 (11 pp.). https://doi.org/10.3390/UNIVERSE7060200
Imaging neutron capture cross sections: i-TED proof-of-concept and future prospects based on Machine-Learning techniques
Babiano-Suárez, V., Lerendegui-Marco, J., Balibrea-Correa, J., Caballero, L., Calvo, D., Ladarescu, I., … Žugec, P. (2021). Imaging neutron capture cross sections: i-TED proof-of-concept and future prospects based on Machine-Learning techniques. European Physical Journal A: Hadrons and Nuclei, 57(6), 197 (17 pp.). https://doi.org/10.1140/epja/s10050-021-00507-7
 

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