The search for cluster structure in 14C with the prototype AT-TPC, A. Fritsch, PhD Thesis (2014) DOI Link
Development of THGEM-based detectors for AT-TPC applications, S. H. Rost, Master Thesis (2016) MSU Link
Measurement of isobaric analogue resonances of 47Ar with the Active Target Time Projection Chamber, J. Bradt, PhD Thesis (2017) DOI Link
Cluster structure and three-body decay in 14C, L. M. Carpenter, PhD Thesis DOI Link
Software tool for performing the calibration of the AT-TPC electronics channels, F. Ndayisabye, Master Thesis (2019) DOI Link
Technical papers
Test of a micromegas detector with helium-based gas mixtures for active target time projection chambers utilizing radioactive isotope beams, D. Suzuki et al., NIM A 660, 64 (2011) DOI link
Prototype AT-TPC: Toward a new generation active target time projection chamber for radioactive beam experiments, D. Suzuki et al., NIM A 691, 39 (2012) DOI link
Studies of THGEM-based detector at low-pressure Hydrogen/Deuterium, for AT-TPC applications, M. Cortesi et al., Jour. of Instr. 10, P09020 (2015) DOI link
Active Target detectors for studies with exotic beams: Present and next future, W. Mittig et al., NIM A 784, 494 (2015) DOI link
CO2 operation of an active target detector readout based on THGEM, Y. Ayyad et al., Jour. Instrum. 12, P06003 (2017) DOI link
Commissioning of the Active-Target Time Projection Chamber, J. Bradt et al., NIM A 875, 65 (2017) DOI link
GET: A generic electronics system for TPCs and nuclear physics instrumentation, E. C. Pollacco et al., NIM A 887, 81 (2018) DOI link
Novel particle tracking algorithm based on the Random Sample Consensus Model for the Active Target Time Projection Chamber (AT-TPC), Y. Ayyad et al., NIM A 880, 166 (2018) DOI link
Beam-induced space-charge effects in time projection chambers in low-energy nuclear physics experiments, J. Randhawa et al., NIM A 948, 162830 (2019) DOI link
Automatic trajectory recognition in Active Target Time Projection Chambers data by means of hierarchical clustering, C. Dalitz et al., Comp. Phys. Comm. 235, 159 (2019) DOI link
Machine learning methods for track classification in the AT-TPC, M. Kuchera et al., NIM A 940, 156 (2019) DOI link
Next-generation experiments with the Active Target Time Projection Chamber (AT-TPC), Y. Ayyad et al., NIM A 954, 161341 (2020) DOI link
Unsupervised learning for identifying events in active target experiments, R. Solli et al., NIM A 1010, 165461 (2021) DOI link
Simulations and analysis tools for charge-exchange (d, 2He) reactions in inverse kinematics with the AT-TPC, S. Giraud et al., NIM A 1051, 168213 (2023) DOI link
Kinematics reconstruction in solenoidal spectrometers operated in active target mode, Y. Ayyad et al., Eur. Phys. J. A 59, 294 (2023) DOI link
Scientific papers
Resonant ðŒ scattering of 6He: Limits of clustering in 10Be. D. Suzuki et al., Phys. Rev. C 87, 054301 (2013) DOI link
One-dimensionality in atomic nuclei: A candidate for linear-chain ðŒ clustering in 14C, A. Fritsch et al., Phys. Rev. C 93, 014321 (2016) DOI link
Fusion studies with low-intensity radioactive ion beams using an active-target time projection chamber, J. J. Kolata et al., NIM A 830, 82 (2016) DOI link
Study of spectroscopic factors at N = 29 using isobaric analogue resonances in inverse kinematics, J. Bradt et al., Phys. Lett. B 778, 155 (2018) DOI link
Direct Observation of Proton Emission in 11Be, Y. Ayyad et al., Phys. Rev. Lett. 123, 082501 (2019) DOI link
First Direct Measurement of 22Mgâ¢(ðŒ,ð)â¢25Al and Implications for X-Ray Burst Model-Observation Comparisons, J. Randhawa et al., Phys. Rev. Lett. 125, 202701 (2020) DOI link
ðœ+ Gamow-Teller Strengths from Unstable 14O via the (ð,2He) Reaction in Inverse Kinematics, S. Giraud et al., Phys. Rev. Lett. 130, 232301 (2023) DOI link
Near-Threshold Dipole Strength in 10Be with Isoscalar Character, J. Chen et al., Phys. Rev. Lett. 134, 012502 (2025) DOI link
Review papers
Active targets for the study of nuclei far from stability, S. Beceiro-Novo et al., Prog. Part. Nucl. Phys. 84, 124 (2015) DOI link
Physics and technology of time projection chambers as active targets, Y. Ayyad et al., Eur. Phys. J. A 54, 181 (2018) DOI link
Low energy nuclear physics with active targets and time projection chambers, D. Bazin et al., Prog. Part. Nucl. Phys. 114, 103790 (2020) DOI link