Publications
1. Kooistra, T. J., de Boer, A.-M., Bouma, T. J., Pannozzo, N., Pearson, S. G., van der Spek, A., de Stigter, H., Wallinga, J., Witbaard, R., and Soetaert, K. (2026). Worms and storms: shedding light on bioturbation and physical mixing on an intertidal flat by combining multiple tracers, Biogeosciences, 23, 2477–2501, https://doi.org/10.5194/bg-23-2477-2026
2. de Boer, A. M., Pearson, S., van der Spek, A., van Prooijen, B., & Wallinga, J. (2026). Luminescence as a tool to reconstruct sediment transport pathways in a tidal inlet. Marine Geology, 107749, https://doi.org/10.1016/j.margeo.2026.107749
3. de Boer, A. M., Pannozzo, N., Pearson, S. G., Kooistra, T. J., van Prooijen, B., & Wallinga, J. (2026). Resetting of quartz and feldspar luminescence signals under water. Scientific Reports, https://doi.org/10.1038/s41598-026-44245-6
4. de Boer, A. M., Steinbuch, L., Heuvelink, G. B., & Wallinga, J. (2025). A novel method to assess crosstalk in single-grain luminescence detection. Radiation Measurements, 107459, https://doi.org/10.1016/j.radmeas.2025.107459
5. Kaiser, K., Kasprzak, M., Adameková, K., Błaś, M., de Boer, A. M., Derner, K., Duma, P., Kocar, P., Latocha-Wites, A., Opala-Oqczarek, M., Owczarek, P., Petr, L., Petrik, J., Taborik, P., van der Maaten, E., & van der Maaten-Theunissen, M. (2025). Deciphering Sudetic landscape history by using alluvial geoarchives: Holocene environmental changes at Hala Izerska, SW Poland. Catena, 254, 108943, https://doi.org/10.1016/j.catena.2025.108943
6. d1. Kooistra, T. J., de Boer, A.-M., Bouma, T. J., Pannozzo, N., Pearson, S. G., van der Spek, A., de Stigter, H., Wallinga, J., Witbaard, R., and Soetaert, K. (2026). Worms and storms: shedding light on bioturbation and physical mixing on an intertidal flat by combining multiple tracers, Biogeosciences, 23, 2477–2501, https://doi.org/10.5194/bg-23-2477-2026
2. de Boer, A. M., Pearson, S., van der Spek, A., van Prooijen, B., & Wallinga, J. (2026). Luminescence as a tool to reconstruct sediment transport pathways in a tidal inlet. Marine Geology, 107749, https://doi.org/10.1016/j.margeo.2026.107749
3. de Boer, A. M., Pannozzo, N., Pearson, S. G., Kooistra, T. J., van Prooijen, B., & Wallinga, J. (2026). Resetting of quartz and feldspar luminescence signals under water. Scientific Reports, https://doi.org/10.1038/s41598-026-44245-6
4. de Boer, A. M., Steinbuch, L., Heuvelink, G. B., & Wallinga, J. (2025). A novel method to assess crosstalk in single-grain luminescence detection. Radiation Measurements, 107459, https://doi.org/10.1016/j.radmeas.2025.107459
5. Kaiser, K., Kasprzak, M., Adameková, K., Błaś, M., de Boer, A. M., Derner, K., Duma, P., Kocar, P., Latocha-Wites, A., Opala-Oqczarek, M., Owczarek, P., Petr, L., Petrik, J., Taborik, P., van der Maaten, E., & van der Maaten-Theunissen, M. (2025). Deciphering Sudetic landscape history by using alluvial geoarchives: Holocene environmental changes at Hala Izerska, SW Poland. Catena, 254, 108943, https://doi.org/10.1016/j.catena.2025.108943
6. de Boer, A. M., Seebregts, M., Wallinga, J., & Chamberlain, E. (2024). A one-day experiment quantifying subaqueous bleaching of K-feldspar luminescence signals in the Wadden Sea, the Netherlands. Netherlands Journal of Geosciences, 103, e22, https://doi.org/10.1017/njg.2024.18
7. de Boer, A.-M., Schwanghart, W., Mey, J., Adhikari, B. R., and Reimann, T. (2024). Insight into the dynamics of a long-runout mass movement using single-grain feldspar luminescence in the Pokhara Valley, Nepal, Geochronology, 6, 53–70, https://doi.org/10.5194/gchron-6-53-2024
8. Derner, K., Kaiser, K., Petr, L., Kočár, P., Kočárová, R., de Boer, A. M., Kasprzak, M., Lopuc, M., Bohdalek, P., Crkal, J., & Lissek, P. (2024). Medieval vegetation dynamics and montane-industrial history of the central Ore Mountains, Czech Republic, as reflected by alluvial geoarchives. Catena, 247, 108520, https://doi.org/10.1016/j.catena.2024.108520
9. de Boer, A. M., Kook, M., & Wallinga, J. (2024). Testing the performance of an EMCCD camera in measuring single-grain feldspar (thermo) luminescence in comparison to a laser-based single-grain system. Radiation Measurements, 175, 107168, https://doi.org/10.1016/j.radmeas.2024.107168
10. Mey, J., Schwanghart, W., de Boer, A. M., & Reimann, T. (2023). Differential bleaching of quartz and feldspar luminescence signals under high-turbidity conditions. Geochronology, 5(2), 377-389, https://doi.org/10.5194/gchron-5-377-2023
11. Kaiser, K., Tolksdorf, J. F., de Boer, A. M., Herbig, C., Hieke, F., Kasprzak, M., Kocar, P., Petr, L., Schubert, M., Schroeder, F., Fuelling, A., & Hemker, C. (2021). Colluvial sediments originating from past land-use activities in the Erzgebirge Mountains, Central Europe: occurrence, properties, and historic environmental implications. Archaeological and Anthropological Sciences, 13, 1-26, https://doi.org/10.1007/s12520-021-01469-z
12. Kaiser, K., Schneider, T., Küster, M., Dietze, E., Fülling, A., Heinrich, S., Kappler, C., Nelle, O., Schult, M., Theuerkauf, M., Vogel, S., de Boer, A.M., Boerner, A., Preusser, F., Schwabe, M., Ulrich, J., Wirner, M., & Bens, O. (2020). Palaeosols and their cover sediments of a glacial landscape in northern central Europe: Spatial distribution, pedostratigraphy and evidence on landscape evolution. Catena, 193, 104647, https://doi.org/10.1016/j.catena.2020.10464e Boer, A. M., Seebregts, M., Wallinga, J., & Chamberlain, E. (2024). A one-day experiment quantifying subaqueous bleaching of K-feldspar luminescence signals in the Wadden Sea, the Netherlands. Netherlands Journal of Geosciences, 103, e22, https://doi.org/10.1017/njg.2024.18
7. de Boer, A.-M., Schwanghart, W., Mey, J., Adhikari, B. R., and Reimann, T. (2024). Insight into the dynamics of a long-runout mass movement using single-grain feldspar luminescence in the Pokhara Valley, Nepal, Geochronology, 6, 53–70, https://doi.org/10.5194/gchron-6-53-2024
8. Derner, K., Kaiser, K., Petr, L., Kočár, P., Kočárová, R., de Boer, A. M., Kasprzak, M., Lopuc, M., Bohdalek, P., Crkal, J., & Lissek, P. (2024). Medieval vegetation dynamics and montane-industrial history of the central Ore Mountains, Czech Republic, as reflected by alluvial geoarchives. Catena, 247, 108520, https://doi.org/10.1016/j.catena.2024.108520
9. de Boer, A. M., Kook, M., & Wallinga, J. (2024). Testing the performance of an EMCCD camera in measuring single-grain feldspar (thermo) luminescence in comparison to a laser-based single-grain system. Radiation Measurements, 175, 107168, https://doi.org/10.1016/j.radmeas.2024.107168
10. Mey, J., Schwanghart, W., de Boer, A. M., & Reimann, T. (2023). Differential bleaching of quartz and feldspar luminescence signals under high-turbidity conditions. Geochronology, 5(2), 377-389, https://doi.org/10.5194/gchron-5-377-2023
11. Kaiser, K., Tolksdorf, J. F., de Boer, A. M., Herbig, C., Hieke, F., Kasprzak, M., Kocar, P., Petr, L., Schubert, M., Schroeder, F., Fuelling, A., & Hemker, C. (2021). Colluvial sediments originating from past land-use activities in the Erzgebirge Mountains, Central Europe: occurrence, properties, and historic environmental implications. Archaeological and Anthropological Sciences, 13, 1-26, https://doi.org/10.1007/s12520-021-01469-z
12. Kaiser, K., Schneider, T., Küster, M., Dietze, E., Fülling, A., Heinrich, S., Kappler, C., Nelle, O., Schult, M., Theuerkauf, M., Vogel, S., de Boer, A.M., Boerner, A., Preusser, F., Schwabe, M., Ulrich, J., Wirner, M., & Bens, O. (2020). Palaeosols and their cover sediments of a glacial landscape in northern central Europe: Spatial distribution, pedostratigraphy and evidence on landscape evolution. Catena, 193, 104647, https://doi.org/10.1016/j.catena.2020.10464