Zondervan, J. R., Stokes, M., Telfer, M. W., Boulton, S. J., Mather, A. E.
, Buylaert, J. P., Jain, M.
, Murray, A. S. & Belfoul, M. A. (2022).
Constraining a model of punctuated river incision for Quaternary strath terrace formation.
Geomorphology,
414, Article 108396.
https://doi.org/10.1016/j.geomorph.2022.108396
Jensen, B. B.
, Hansen, T. M., Nielsen, L., Cordua, K. S., Tuxen, N., Tsitonaki, A. & Looms, M. C. (2022).
Accounting for Modeling Errors in Linear Inversion of Crosshole Ground-Penetrating Radar Amplitude Data: Detecting Sand in Clayey Till.
Journal of Geophysical Research: Solid Earth,
127(10), Article e2022JB024666.
https://doi.org/10.1029/2022JB024666
Hansen, K. E., Lorenzen, J.
, Davies, J., Wacker, L.
, Pearce, C. & Seidenkrantz, M. S. (2022).
Deglacial to Mid Holocene environmental conditions on the northeastern Greenland shelf, western Fram Strait.
Quaternary Science Reviews,
293, Article 107704.
https://doi.org/10.1016/j.quascirev.2022.107704
Rasmussen, T. L.
, Pearce, C., Andresen, K. J., Nielsen, T.
& Seidenkrantz, M. S. (2022).
Northeast Greenland: ice-free shelf edge at 79.4 degrees N around the Last Glacial Maximum 25.5-17.5 ka.
Boreas,
51(4), 759-775.
https://doi.org/10.1111/bor.12593
Calvache, M. L., Blanco-Coronas, Á. M.
, Duque, C., López-Chicano, M. & Sánchez-úbeda, J. P. (2022).
Nuevos retos en el estudio de los acuíferos costeros desde la modelación numérica. El caso del acuífero Motril-Salobreña.
Boletín Geológico y Minero,
133(1), 211-225.
https://doi.org/10.21701/bolgeomin/133.1/012
Bian, L., Schovsbo, N. H., Chappaz, A.
, Rudra, A., Xu, J., Luo, Q.
& Sanei, H. (2022).
Paleoenvironmental Reconstruction and Organic Matter Accumulation of the Lower Cambrian Qiongzhusi Formation in the Sichuan Basin, South China.
ACS Earth and Space Chemistry,
6(10), 2519-2529.
https://doi.org/10.1021/acsearthspacechem.2c00224
Gaikwad, N., Liu, L., Griffiths, M. P., Vang, M. Ø., Grombacher, D. & Larsen, J. J. (2022).
Thermal Model of the Apsu Transmitter for Lightweight and Compact Heat Sink Design. 11-13. Abstract from The 8th International Workshop on Magnetic Resonance Sounding, Strasbourg, France.
https://mrs2021.sciencesconf.org/data/pages/proceedings_MRS2021_distrib_v2.pdf
Xiao, L., Fiandaca, G.
, Maurya, P. K., Christiansen, A. V. & Lévy, L. (2022).
Three-dimensional time-lapse inversion of transient electromagnetic data, with application at an Icelandic geothermal site.
Geophysical Journal International,
231(1), 584-596.
https://doi.org/10.1093/gji/ggac206
Marzoli, A., Renne, P. R.
, Andreasen, R., Spiess, R., Chiaradia, M., Ruth, D. C., Tholt, A. J., Pande, K. & Costa, F. (2022).
The Shallow Magmatic Plumbing System of the Deccan Traps, Evidence from Plagioclase Megacrysts and their Host Lavas.
Journal of Petrology,
63(9), Article egac075.
https://doi.org/10.1093/petrology/egac075
Hansen, L., Ernstsen, V. B., Andersen, M. S., Al-Hamdani, Z., Becker, M.
, Andresen, K. J., Trinhammer, P. L., Vang, T., Bartholdy, J. & Kroon, A. (2022).
A multi-scale geomorphometric approach to semi-automated classification of seabed morphology of a dynamic and complex marine meander bend.
Geomorphology,
413, Article 108371.
https://doi.org/10.1016/j.geomorph.2022.108371
Goodarzi, F., Hosseininejad, S., Pedersen, P. K., Gentzis, T.
& Sanei, H. (2022).
Characterization of immature oil shales from the Cretaceous Second White Specks Formation in Saskatchewan and Manitoba, Canada.
Marine and Petroleum Geology,
143, Article 105774.
https://doi.org/10.1016/j.marpetgeo.2022.105774
Sha, L.
, Knudsen, K. L., Eiríksson, J., Björck, S., Jiang, H., Yang, X., Yu, X. & Li, D. (2022).
Diatom-reconstructed summer sea-surface temperatures and climatic events off North Iceland during the last deglaciation and Holocene.
Palaeogeography, Palaeoclimatology, Palaeoecology,
602, Article 111154.
https://doi.org/10.1016/j.palaeo.2022.111154
Zheng, X., Schovsbo, N. H., Luo, Q., Wu, J., Zhong, N., Goodarzi, F.
& Sanei, H. (2022).
Graptolite reflectance anomaly.
International Journal of Coal Geology,
261, Article 104072.
https://doi.org/10.1016/j.coal.2022.104072
Zabel, M., Glud, R. N.
, Sanei, H., Elvert, M., Pape, T., Chuang, P. C., Okuma, E., Geprägs, P. & Kölling, M. (2022).
High Carbon Mineralization Rates in Subseafloor Hadal Sediments—Result of Frequent Mass Wasting.
Geochemistry, Geophysics, Geosystems,
23(9), Article e2022GC010502.
https://doi.org/10.1029/2022GC010502
R. Bennett, N., Sio, C. K., Schauble, E.
, Lesher, C., Wimpenny, J. & Shahar, A. (2022).
Iron isotope evidence of an impact origin for main-group pallasites.
Geochemical Perspectives Letters,
23, 6-10.
https://doi.org/10.7185/geochemlet.2229
Blok, C. N., Ineson, J., Anderskouv, K.
, Fantasia, A., Sheldon, E., Thibault, N., Jelby, M. E., Adatte, T.
& Bodin, S. (2022).
Latitude-dependant climate changes across the Aptian Oceanic Anoxic Event 1a.
Palaeogeography, Palaeoclimatology, Palaeoecology,
601, Article 111085.
https://doi.org/10.1016/j.palaeo.2022.111085
Jackson, R., Andreasen, N., Oksman, M., Andersen, T. J.
, Pearce, C., Seidenkrantz, M. S. & Ribeiro, S. (2022).
Marine conditions and development of the Sirius Water polynya on the North-East Greenland shelf during the Younger Dryas-Holocene.
Quaternary Science Reviews,
291, Article 107647.
https://doi.org/10.1016/j.quascirev.2022.107647
Allen, P., Bain, D. R., Bridgland, D. R., Buisson, P., Buylaert, J. P., Bynoe, R., George, W. H., Haggart, B. A., Horne, D. J., Littlewood, E. M., Lord, A. R., March, A. C., Mercer, I., Mercer, R.
, Murray, A. S., Penkman, K. E. H., Preece, R. C., Ratford, J., Schreve, D. C. ... White, T. S. (2022).
Mid-Late Quaternary Fluvial Archives near the Margin of the MIS 12 Glaciation in Southern East Anglia, UK: Amalgamation of Multi-Disciplinary and Citizen-Science Data Sources.
Quaternary,
5(3), Article 37.
https://doi.org/10.3390/quat5030037
Zamora-Luria, J. C., McLachlan, P., Grombacher, D., Maurya, P. K. & Christiansen, A. V. (2022).
Monitoring water table variations in an unconfined aquifer using a time-lapse TEM method. In
28th European Meeting of Environmental and Engineering Geophysics, Held at the Near Surface Geoscience Conference and Exhibition 2022, NSG 2022 European Association of Geoscientists and Engineers.
https://doi.org/10.3997/2214-4609.202220032
McLachlan, P. J., Khare, S. K., Grombacher, D., Larsen, J. J., A. Christiensen, A. & Luria, J. C. Z. (2022).
On The Presence of Correlated Noise in Transient Electromagnetic (Tem) Monitoring Data. 1-5. Abstract from NSG2022 28th European Meeting of Environmental and Engineering Geophysics, Belgrade , Serbia.
https://doi.org/10.3997/2214-4609.202220119
Lévy, L., Thalund-Hansen, R.
, Bording, T. S., Fiandaca, G.
, Christiansen, A. V., Rügge, K., Tuxen, N., Hag, M. P. & Bjerg, P. L. (2022).
Quantifying Reagent Spreading by Cross-Borehole Electrical Tomography to Assess Performance of Groundwater Remediation.
Water Resources Research,
58(9), Article e2022WR032218.
https://doi.org/10.1029/2022WR032218
Olsen, J., Daugbjerg, T. S., C. Kinnaird, T.
, Kristiansen, S. M., Jacobsen, J. K., Parisi Presicce, C., Vitti, M.
& Raja, R. (2022).
Radiocarbon and OSL dating of Caesar’s Forum in Rome. Abstract from The 24th International Radiocarbon and 10th 14C and Archaeology Conference, Zürich, Switzerland.
https://radiocarbon24.ethz.ch/wp-content/uploads/2022/08/A03_11.htm
Kaiser Kudsk, S. G., Knudsen, M. F., Karoff, C., Baittinger, C.
, Misios, S. & Olsen, J. (2022).
Solar variability between 650 CE and 1900 - Novel insights from a global compilation of new and existing high-resolution 14C records.
Quaternary Science Reviews,
292, Article 107617.
https://doi.org/10.1016/j.quascirev.2022.107617
Liu, Y., Wei, J., Tan, J.
, Ulrich, T., Zhang, D., Lahaye, Y., Zhang, X. & Chen, J. (2022).
Sulfide micro-textures and in-situ compositions from the Wulong gold deposit, northeastern North China Craton: Implication for ore-forming processes.
Ore Geology Reviews,
148, Article 105028.
https://doi.org/10.1016/j.oregeorev.2022.105028
Frouin, M., Douka, K., Dave, A. K., Schwenninger, J. L., Mercier, N.
, Murray, A. S., Santaniello, F., Boschian, G., Grimaldi, S. & Higham, T. (2022).
A refined chronology for the Middle and early Upper Paleolithic sequence of Riparo Mochi (Liguria, Italy).
Journal of Human Evolution,
169, Article 103211.
https://doi.org/10.1016/j.jhevol.2022.103211
Tavares, A. C., de Castro, D. L.
, Clausen, O. R., Bezerra, F. H. R., Sousa, M. O. L., Gomes, M. P., Vital, H. & de Oliveira, D. C. (2022).
Continental-scale structural heritage from rift extension to postrift inversion: Implications for the central Brazilian Equatorial Margin evolution.
Tectonophysics,
837, Article 229446.
https://doi.org/10.1016/j.tecto.2022.229446
Cronin, T. M., Olds, B. M., Regnier, A. M., O'Regan, M., Gemery, L.
, Detlef, H., Pearce, C. & Jakobsson, M. (2022).
Holocene paleoceanography and glacial history of Lincoln Sea, Ryder Glacier, Northern Greenland, based on foraminifera and ostracodes.
Marine Micropaleontology,
175, Article 102158.
https://doi.org/10.1016/j.marmicro.2022.102158
Taratunina, N. A., Buylaert, J. P., Kurbanov, R. N., Yanina, T. A., Makeev, A. O., Lebedeva, M. P., Utkina, A. O.
& Murray, A. S. (2022).
Late Quaternary evolution of lower reaches of the Volga River (Raygorod section) based on luminescence dating.
Quaternary Geochronology,
72, Article 101369.
https://doi.org/10.1016/j.quageo.2022.101369
Thompson, W. K., Arvidsson, D.
, Murray, A. S., Blidberg, A. & Hansen, V. (2022).
Rock and sediment luminescence dating of an ancient circular stone-walled enclosure at Sønnebøe, northern Scania, Sweden.
Quaternary Geochronology,
72, Article 101340.
https://doi.org/10.1016/j.quageo.2022.101340
Kristiansen, S. M., Sulas, F., Bagge, M. S.
, Enevold, R., Herrault, L.
, Ljungberg, T., Milek, K.
, Mikkelsen, P. H., Jensen, P. M., Orfanou, V., Out, W., Portillo, M.
& Sindbæk, S. M. (2022).
The empty grave revisited – invisible traces of horse and Viking horse-man revealed by multi-scalar methods. Abstract from World Archaeological Conference, Pragh, Czech Republic.
Engebretsen, K. W., Zhang, B., Fiandaca, G., Meldgaard Madsen, L., Auken, E. & Christiansen, A. V. (2022).
Accelerated 2.5-D inversion of airborne transient electromagnetic data using reduced 3-D meshing.
Geophysical Journal International,
230(1), 643-653.
https://doi.org/10.1093/gji/ggac077,
https://doi.org/10.1093/gji/ggac077
Madsen, L. M., Bording, T., Grombacher, D., Foged, N., Foley, N., Dugan, H. A., Doran, P. T., Mikucki, J., Tulaczyk, S.
& Auken, E. (2022).
Comparison of ground-based and airborne transient electromagnetic methods for mapping glacial and permafrost environments: Cases from McMurdo Dry Valleys, Antarctica.
Cold Regions Science and Technology,
199, Article 103578.
https://doi.org/10.1016/j.coldregions.2022.103578