{"id":16746,"date":"2019-12-03T10:42:34","date_gmt":"2019-12-03T09:42:34","guid":{"rendered":"https:\/\/www.ig.cas.cz\/?page_id=16746"},"modified":"2025-12-12T13:27:14","modified_gmt":"2025-12-12T12:27:14","slug":"john-jansen","status":"publish","type":"page","link":"https:\/\/www.ig.cas.cz\/en\/contact\/staff\/john-jansen\/","title":{"rendered":"John Jansen"},"content":{"rendered":"<p>[et_pb_section fb_built=&#8221;1&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;0px|0px|0px|0px&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_row column_structure=&#8221;1_4,3_4&#8243; _builder_version=&#8221;4.16&#8243; background_size=&#8221;initial&#8221; background_position=&#8221;top_left&#8221; background_repeat=&#8221;repeat&#8221; min_height=&#8221;328px&#8221; custom_margin=&#8221;30px|auto||auto|false|false&#8221; custom_padding=&#8221;0px|0px|0px||false|false&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;1_4&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;0px||||false|false&#8221; global_colors_info=&#8221;{}&#8221; custom_padding__hover=&#8221;|||&#8221;][et_pb_image src=&#8221;https:\/\/www.ig.cas.cz\/wp-content\/uploads\/2019\/12\/jdj3_greenland-2018.jpeg&#8221; align_tablet=&#8221;center&#8221; align_phone=&#8221;&#8221; align_last_edited=&#8221;on|desktop&#8221; _builder_version=&#8221;4.16&#8243; max_height=&#8221;280px&#8221; custom_margin=&#8221;|0px|0px|0px|false|false&#8221; custom_padding=&#8221;||0px|0px||&#8221; global_colors_info=&#8221;{}&#8221;]\u00a0<br \/>\n[\/et_pb_image][\/et_pb_column][et_pb_column type=&#8221;3_4&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;|||&#8221; global_colors_info=&#8221;{}&#8221; custom_padding__hover=&#8221;|||&#8221;][et_pb_text _builder_version=&#8221;4.27.4&#8243; global_colors_info=&#8221;{}&#8221;]<\/p>\n<h3 style=\"text-align: left;\"><strong style=\"font-size: 22px;\">John Jansen, PhD<\/strong><\/h3>\n<p>Senior researcher &amp; team leader<br \/><a href=\"https:\/\/www.ig.cas.cz\/en\/research\/teams\/surface-processes-palaeoclimate\/\">Surface Processes &amp; Palaeoclimate<\/a><br \/>jdj@ig.cas.cz<\/p>\n<p><a href=\"https:\/\/johnjansen1.blogspot.com\/\">Personal website<\/a><br \/><a href=\"https:\/\/scholar.google.com\/citations?user=d9ibqDgAAAAJ&amp;hl=en&amp;oi=sra\">Google Scholar<\/a><\/p>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;4px|0px|28.95px|0px||&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;4_4&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;|||&#8221; global_colors_info=&#8221;{}&#8221; custom_padding__hover=&#8221;|||&#8221;][et_pb_text admin_label=&#8221;Text&#8221; _builder_version=&#8221;4.27.4&#8243; text_font=&#8221;||||||||&#8221; hover_enabled=&#8221;0&#8243; global_colors_info=&#8221;{}&#8221; sticky_enabled=&#8221;0&#8243;]<\/p>\n<p>My work explores how climate, tectonics and life transform Earth&#8217;s&nbsp;surface through time.<\/p>\n<p>I have led the Surface Processes and Palaeoclimate team since its inception in 2021. I&nbsp;am also distinguished visiting professor at the Chengdu University of Technology and an associate editor for the Bulletin of the Geological Society of America. I&nbsp;joined GF\u00da in 2019 following research positions at universities in Aarhus, Potsdam, Stockholm, Glasgow, and Wollongong. I&nbsp;gained a&nbsp;PhD (2001) from Macquarie University, Sydney. My interests span:<\/p>\n<ul>\n<li>glacial &amp; postglacial landscapes<\/li>\n<li>river processes &amp; dynamics<\/li>\n<li>extreme geological events<\/li>\n<li>desert environments<\/li>\n<li>archaeology of the Pleistocene<\/li>\n<\/ul>\n<h3>\u00a0<\/h3>\n<h3><strong>SCI journal articles<\/strong><\/h3>\n<p>&nbsp;<\/p>\n<p>2025<\/p>\n<p>Bro\u015b E, Ivy-Ochs S, Pollhammer T, Kober F, Grishott R, Salcher B, N\u00f8rgaard J, Knudsen MF, Vockenhuber C, Christl M, Gautschil P,&nbsp;Maden C, Yl\u00e4-Mella L, Jansen JD, Landgraf A, Synal H-A (2025) Comprehensive temporal and spatial analysis of Early Pleistocene drainage patterns in the Swiss Alpine foreland. <em>Earth Surface Processes &amp; Landforms<\/em>\u00a050, e70000<\/p>\n<p>Fan X, Bhuyan K, Wang X, Cook KL, Ozturk U, Loew S, Gyamtsho P,&nbsp;Jansen JD, Xu Q (2025) Rethinking policy on high mountain cascading hazards. <em>Nature Geoscience<\/em>\u00a018, 1066-1067<\/p>\n<p>Fan X, Jiang L, Du J,\u00a0Jansen JD, Deng Y, Xu Q (2025) Rock-ice avalanche flume experiments reveal a&nbsp;non-linear hillslope erosion rule governed by ice content. <em>Earth &amp; Planetary Science Letters<\/em>\u00a0668, 119561<\/p>\n<p>Fan X, Wang X, Fang C,\u00a0Jansen JD, Dai L, Tanyas H, Zhang W, Xu Q, Huang R (2025) Deep learning can predict global earthquake-triggered landslides. <em>National Science Review<\/em>\u00a012, nwaf179<\/p>\n<p>Li J, Jansen JD, Carling PA,\u00a0\u00c7iner A, Fan X (2025) Palaeoseismicity recorded in soft-sediment deformation structures within a&nbsp;166 m-long drill core from Diexi Palaeolake, eastern Tibetan Plateau. <em>Journal of Mountain Science<\/em>\u00a022, 4464-4489<\/p>\n<p>Liu J, Fan X, Hales TC, Harvey EL, West AJ, Jansen JD, Tang X, Xu Q (2025) Earthquakes act as a&nbsp;capacitor for terrestrial organic carbon. <em>Nature Communications<\/em><\/p>\n<p>N\u00f8rgaard J, Margold M,\u00a0Jansen JD, Szuman-Kalita I, Andersen JL, Pedersen VK, Olsen J, Corbett LB, Bierman PR, Knudsen MF (2025) A&nbsp;Late Pleistocene glacial maximum during MIS 3 in the Chersky Mountains, central Northeast Siberia. <em>Quaternary Research<\/em>\u00a0128, 91-101<\/p>\n<p>&nbsp;<\/p>\n<p>2024<\/p>\n<p>Li J, Jansen JD, Fan X, Ding Z, Kang S, Lovati M (2024) Terrace formation linked to outburst floods at the Diexi palaeolandslide dam, upper Minjiang River, eastern Tibetan Plateau. <em>Earth Surface Dynamics<\/em> 12, 953-971<\/p>\n<p>Ruetenik GA, Jansen JD, Sandiford M (2024) Surface uplift due to time-varying elastic thickness in continental interiors. <em>Geophysical Research Letters<\/em> 51, e2023GL107719<\/p>\n<p>Garba R, Usik V, Yl\u00e4-Mella L, Kamen\u00edk J, St\u00fcbner K, Lachner J, Rugel G, Veselovsk\u00fd F, Gerasimenko N, Herries AIR, Ku\u010dera J, Knudsen MF, Jansen JD (2024) East-to-west human dispersal into Europe 1.4 million years ago. <em>Nature<\/em> 627, 805-810<\/p>\n<p>&nbsp;<\/p>\n<p>2023<\/p>\n<p>Abbas M, Lai Z, Jansen JD, Tu H, Alqudah M, Xu X, Al-Saqarat BS, Al-Hseinat M, Ou X, Petraglia MD, Carling PA&nbsp;(2023) Human dispersals out of Africa via the Levant. <em>Science Advances<\/em> 9, eadi6838<\/p>\n<p>Carling PA, Jansen JD, Su T, Andersen JL, Knudsen MF (2023) Ice-buttressing-controlled rock slope failure on a&nbsp;cirque headwall, Lake District, UK. <em>Earth Surface Dynamics<\/em> 11, 817-833<\/p>\n<p>Kamen\u00edk J, Garba R, St\u00fcbner K, Lachner J, Rugel G, Veselovsk\u00fd F, Jansen JD, Usik V, Ku\u010dera J (2023) Processing of Korolevo samples aimed at AMS determination of in situ 10Be and 26Al nuclides and their purity control using follow-up mass spectrometry scans. <em>Journal of Radioanalytical &amp; Nuclear Chemistry<\/em> 332, 1583-1590<\/p>\n<p>N\u00f8rgaard J, Jansen JD, Neuhuber S, Ruszkiczay-R\u00fcdiger Z, Knudsen MF (2023) P-PINI: A&nbsp;cosmogenic nuclide burial dating method for landscapes undergoing non-steady erosion. <em>Quaternary Geochronology<\/em> 74, 101420<\/p>\n<p>N\u00f8rgaard J, Margold M, Jansen JD, Kurbanov R, Szuman I, Andersen JL, Olsen J, Knudsen MF (2023) Absence of large-scale ice masses in central Northeast Siberia during the Late Pleistocene. <em>Geophysical Research Letters<\/em> 50, e2023GL103594<\/p>\n<p>Ruetenik GA, Jansen JD, Val P,&nbsp;Yl\u00e4-Mella L (2023) Optimising global landscape evolution models with 10Be.<em> Earth Surface Dynamics<\/em> 11, 865-880<\/p>\n<p>Zou C, Jansen JD, Carling PA, Dou X, Wei Z, Fan X (2023) Triggers for multiple glacier detachments from a&nbsp;low-angle valley glacier in the Amney Machen Range, eastern Tibetan Plateau. <em>Geomorphology<\/em> 440, 108867<\/p>\n<p>&nbsp;<\/p>\n<p>2022<\/p>\n<p>Jansen JD, Sandiford M, Fujioka T, Cohen TJ,&nbsp;Struck M, Anderson SP, Anderson RS, Wilcken K, Egholm DL (2022) Geomorphic imprints of lithospheric flexure in central Australia.\u00a0<em>Earth &amp; Planetary Science Letters<\/em>\u00a0584, 117456<\/p>\n<p>Cohen TJ,&nbsp;Arnold, LJ, G\u00e1zquez F, May J-H, Marx SK, Jankowski NR, Chivas AR, Garc\u00eda A, Cadd H, Parker AG,\u00a0Jansen JD, Fu X, Waldmann N, Nanson GC, Jones BG, Gadd P (2022) Late Quaternary climate change in Australia&#8217;s&nbsp;arid interior: Evidence from Kati Thanda-Lake Eyre.\u00a0<em>Quaternary Science Reviews<\/em> 292, 107635<\/p>\n<p>Cohen TJ,&nbsp;Mogensen L, Arnold LJ, Li Z,\u00a0Jansen JD, May J-H\u00a0(2022) Topographic insights in the Frome-Callabonna system and the elevation of a&nbsp;newly surveyed highstand shoreline. <em>Transactions of the Royal Society of South Australia<\/em>\u00a0146, 90-108<\/p>\n<p>Fan X, Yunus AP,\u00a0Jansen JD, Dai L, Strom A&nbsp;(2022) Comment on Zhao et al. 2019 &#8216;Gigantic rockslides induced by fluvial incision in the Diexi area along the eastern margin of the Tibetan Plateau&#8217;.\u00a0<em>Geomorphology<\/em>\u00a0402, 106963<\/p>\n<p>Fathabadi A,\u00a0Jansen JD\u00a0(2022) Quantifying uncertainty of sediment fingerprinting mixing models using frequentist and Bayesian methods: A&nbsp;case study from the Iranian Loess Plateau.\u00a0<em>Catena<\/em>\u00a0217, 106474<\/p>\n<p>Oien RP, Barr ID, Spagnolo M, Bingham RG,\u00a0Jansen JD\u00a0(2022) Controls on the altitude of Scandinavian cirques: what do they tell us about palaeoclimate?\u00a0<em>Palaeogeography, Palaeoclimatology, Palaeoecology<\/em>\u00a0600, 111062<\/p>\n<p>&nbsp;<\/p>\n<p>2021<\/p>\n<p>Al-Saqarat BS, Abbas M, Lai Z, Carling PA, Gong S, Alkuisi MM, Abu Hamad AMB, Jansen JD (2021) A&nbsp;wetland oasis at Wadi Gharandal spanning 125\u201370 ka on the human migration trail in southern Jordan. <em>Quaternary Research<\/em> 100, 154-169<\/p>\n<p>Arzhannikov SG, Arzhannikova AV, Ivanov AV, Demonterova EI, Yakhnenko AS, Gorovoy VA,\u00a0Jansen JD\u00a0(2021)\u00a0Lake Baikal highstand during MIS 3 recorded by palaeo-shorelines at Bolshoi Ushkanii Island.\u00a0<em>Boreas<\/em>\u00a050, 101-113<\/p>\n<p>Dai L, Fan X, Jansen JD, Xu Q (2021) Landslides and fluvial response to landsliding induced by the 1933 Diexi earthquake, Minjiang River, eastern Tibetan Plateau. <em>Landslides<\/em> 18, 3011-3025<\/p>\n<p>Eskandari H, Gholami H, Telfer MW, Comino JR, Collins AL, Jansen JD (2021) Desertification of Iran in the early 21st century: assessment using climate and vegetation indices. <em>Scientific Reports<\/em> 11, 20548<\/p>\n<p>Hippe K, Jansen JD, Skov DS, Lupker M, Ivy-Ochs S, Kober F, Zeilinger G, Capriles JM, Christl M, Maden C, Vockenhuber C, Egholm DL (2021) Cosmogenic in situ C14-Be10 reveals abrupt Late Holocene soil loss in the Andean Altiplano. <em>Nature Communications<\/em> 12, 2546<\/p>\n<p>Norris SL,&nbsp;Garc\u00eda-Castellanos D, Jansen JD, Carling PA, Margold M, Woywitka RJ, Froese DG (2021) Catastrophic drainage from the northwestern outlet of glacial Lake Agassiz during the Younger Dryas. <em>Geophysical Research Letters<\/em> <em>48<\/em>, e2021GL093919<\/p>\n<p>&nbsp;<\/p>\n<p>2020<\/p>\n<p>Abbas M, Carling PA,\u00a0Jansen JD, Al-Saqarat BS (2020) Flash-flood hydrology and aquifer-recharge in Wadi Umm Sidr, Eastern Desert, Egypt.\u00a0<em>Journal of Arid Environments<\/em>\u00a0178, 104170<\/p>\n<p>Fan X, Dufresne A, Subramanian SS, Strom A, Hermanns R, Stefanelli T, Hewitt K, Yunus AP, Dunning S, Capra L, Geertsema M, Miller B, Casagli N,\u00a0Jansen JD, Xu Q (2020) The formation and impact of landslide dams\u2014State of the art.\u00a0<em>Earth-Science Reviews<\/em>\u00a0203, 103116<\/p>\n<p>Fan X, Yang F, Subramanian SS, Xu Q, Feng Z, Mavrouli O, Peng M, Ouyang C,\u00a0Jansen JD, Huang R (2020) Prediction of a&nbsp;multi-hazard chain by an integrated numerical simulation approach: the Baige landslide, Jinsha River, China.\u00a0<em>Landslides<\/em>\u00a017, 147-164<\/p>\n<p>Gholami H, Mohamadifar A, Sorooshian A,\u00a0Jansen JD\u00a0(2020) Machine-learning algorithms for predicting land susceptibility to dust emissions: the case of the Jazmurian basin, Iran.\u00a0<em>Atmospheric Pollution Research<\/em>\u00a011, 1303-1315<\/p>\n<p>Knudsen MF, N\u00f8rgaard J, Grischott, R, Kober F, Egholm DL, Mejer T,\u00a0Jansen JD\u00a0(2020) New cosmogenic nuclide burial-dating model indicates onset of major glaciation in the Alps during the Middle Pleistocene Transition.\u00a0<em>Earth &amp; Planetary Science<\/em> Letters\u00a0549, 116491<\/p>\n<p>Skov DS, Andersen JL, Olsen J, Jacobsen BH, Knudsen, MF,\u00a0Jansen JD, Larsen NK, Egholm DL (2020) Constraints from cosmogenic nuclides on the glaciation and erosion history of Dove Bugt, northeast Greenland.\u00a0<em>Geological Society of America Bulletin\u00a0<\/em>132, 2282-2294<\/p>\n<p>&nbsp;<\/p>\n<p>2019<\/p>\n<p>Jansen JD, Knudsen MF, Andersen JL, Heyman J, Egholm DL (2019) Erosion rates in Fennoscandia during the past million years.\u00a0<em>Quaternary Science Reviews<\/em> 207, 37-48<\/p>\n<p>Behrooz RD, Gholami H, Telfer MW, Jansen JD, Abolhassan F (2019) Using GLUE to pull apart the provenance of atmospheric dust. <em>Aeolian Research<\/em> 37, 1-13<\/p>\n<p>Habibi S, Gholami H, Fathabadi A, Jansen JD (2019) Fingerprinting sources of reservoir sediment via two modelling approaches. <em>Science of the Total Environment<\/em> 663, 78-96<\/p>\n<p>Hippe K, Gordijn T, Picotti V, Hajdas I, Jansen JD, Christl M, Vockenhuber, C, Maden C, Ak\u00e7ar N, Ivy-Ochs S&nbsp;(2019) Fluvial dynamics and 14C-10Be disequilibrium on the Bolivian Altiplano. <em>Earth Surface Processes &amp; Landforms<\/em> 44, 766-780<\/p>\n<p>Knudsen MF, Egholm DL, Jansen JD (2019) Time-integrating cosmogenic nuclide inventories under the influence of variable erosion, exposure, and sediment mixing. <em>Quaternary Geochronology<\/em> 51, 110-119<\/p>\n<p>Martin AN, Dosseto A, May J-H, Jansen JD, Kinsley LPJ, Chivas AR (2019) Sediment residence times in catchments draining to the Gulf of Carpentaria, northern Australia, inferred by uranium comminution dating. <em>Geochimica et Cosmochimica Acta<\/em> 244, 264-291<\/p>\n<p>Skov DS, Egholm DL, Jansen JD, Sandiford M, Knudsen MF (2019) Detecting landscape transience with in situ cosmogenic 14C and 10Be. <em>Quaternary Geochronology<\/em> 54, 101008<\/p>\n<p>Stolle A, Schwanghart W, Andermann C, Bernhardt A, Fort M, Jansen JD, Wittmann H, Merchel S, Rugel G, Adhikari BR, Korup O&nbsp;(2019) Protracted river response to medieval earthquakes. <em>Earth Surface Processes &amp; Landforms<\/em> 44, 331-341<\/p>\n<p>&nbsp;<\/p>\n<p>2018<\/p>\n<p>Andersen JL, Egholm DL, Knudsen MF, Linge H, Jansen JD, Goodfellow BW, Pedersen VK, Tikhomirov D, Olsen J, Fredin O&nbsp;(2018) Pleistocene evolution of a&nbsp;Scandinavian plateau landscape. <em>Journal of Geophysical Research: Earth Surface<\/em> 123, 3370-3387<\/p>\n<p>Andersen JL, Egholm DL, Knudsen MF, Linge H, Jansen JD, Pedersen VK, Nielsen SB, Tikhomirov D, Olsen J, Fabel D, Xu S&nbsp;(2018) Widespread erosion on high plateaus during recent glaciations in Scandinavia. <em>Nature Communications<\/em> 9, 830<\/p>\n<p>Arzhannikov SG, Ivanov AV, Arzhannikova AV, Demonterova EI, Jansen JD, Preusser, F, Kamenetsky VS, Kamenetsky MB (2018) Catastrophic events in the Quaternary outflow history of Lake Baikal. <em>Earth-Science Reviews<\/em> 177, 76-113<\/p>\n<p>Margold M, Jansen JD, Codilean AT, Preusser F, Gurinov AL, Fujioka T, Fink D (2018) Repeated megafloods from glacial Lake Vitim, Siberia, to the Arctic Ocean over the past 60,000 years. <em>Quaternary Science Reviews<\/em> 187, 41-61<\/p>\n<p>Struck M, Jansen JD, Fujioka T, Codilean AT, Fink D, Egholm DL, F\u00fcl\u00f6p R-H, Wilcken KM, Price DM, Kotevski S&nbsp;(2018) Soil production and transport on postorogenic desert hillslopes quantified with 10Be and 26Al. <em>Geological Society of America Bulletin<\/em> 130, 1017-1040<\/p>\n<p>Struck M, Jansen JD, Fujioka T, Codilean AT, Fink D, F\u00fcl\u00f6p R-H, Wilcken KM, Price DM, Kotevski S, Fifield K, Chappell J (2018) Tracking the 10Be-26Al source-area signal in sediment-routing systems of arid central Australia. <em>Earth Surface Dynamics<\/em> 6, 329-349<\/p>\n<p>&nbsp;<\/p>\n<p>2017<\/p>\n<p>Egholm DL, Jansen JD, Br\u00e6dstrup CF, Pedersen VK, Andersen JL, Ugelvig SV,&nbsp;Larsen NK, Knudsen MF (2017) Formation of plateau landscapes on glaciated continental margins. <em>Nature Geoscience<\/em> 10, 592-597<\/p>\n<p>Strunk A, Knudsen MK, Egholm DL, Jansen JD, Levy LB, Jacobsen BH, Larsen NK (2017) One million years of glaciation and denudation history in west Greenland. <em>Nature Communications<\/em> 8, 14199<\/p>\n<p>&nbsp;<\/p>\n<p>2016<\/p>\n<p>Margold M, Jansen JD, Gurinov AL, Codilean AT, Fink D, Preusser F, Reznichenko NV, Mifsud C (2016) Extensive glaciation in Transbaikalia, Siberia, at the Last Glacial Maximum. <em>Quaternary Science Reviews<\/em> 132, 161-174<\/p>\n<p>Stroeven AP, H\u00e4ttestrand C, Kleman J, Heyman J, Fabel D, Fredin O, Goodfellow BW, Harbor JM, Jansen JD, Olsen L, Caffee MW, Fink D, Lundqvist J, Rosqvist GC, Str\u00f6mberg B, Jansson KN (2016) Deglaciation of Fennoscandia. <em>Quaternary Science Reviews<\/em> 147, 91-121<\/p>\n<p>&nbsp;<\/p>\n<p>2015<\/p>\n<p>Andersen JL, Egholm DL, Knudsen MF, Jansen JD, Nielsen SB (2015) The periglacial engine of mountain erosion \u2013 Part 1: Rates of frost cracking and frost creep. <em>Earth Surface Dynamics<\/em> 3, 447-462<\/p>\n<p>Cohen TJ,&nbsp;Jansen JD, Gliganic LA, Larsen JR, Nanson GC, May J-H, Jones BG, Price DM (2015) Hydrological transformation coincided with megafaunal extinction in central Australia. <em>Geology<\/em> 43, 195-198<\/p>\n<p>Egholm DL, Andersen JL, Knudsen MF, Jansen JD, Nielsen SB (2015) The periglacial engine of mountain erosion \u2013 Part 2: Modelling large-scale landscape evolution. <em>Earth Surface Dynamics<\/em> 3, 463-482<\/p>\n<p>Knudsen MF, Egholm DL, Jacobsen BH, Larsen NK, Jansen JD, Andersen JL, Linge HC (2015) A&nbsp;multi-nuclide approach to constrain landscape evolution and past erosion rates in previously glaciated terrains. <em>Quaternary Geochronology<\/em> 30, 100-113<\/p>\n<p>Whitbread K, Jansen JD, Bishop P,&nbsp;Attal M (2015) Substrate, sediment, and slope controls on bedrock channel geometry in postglacial streams. <em>Journal of Geophysical Research: Earth Surface<\/em> 120, 779-798<\/p>\n<p>&nbsp;<\/p>\n<p>2014<\/p>\n<p>Jansen JD, Codilean AT, Stroeven AP, Fabel D, H\u00e4ttestrand C, Kleman J, Harbor JM, Heyman J, Kubik PW, Xu S&nbsp;(2014) Inner gorges cut by subglacial meltwater during Fennoscandian ice sheet decay. <em>Nature Communications<\/em> 5, 3815<\/p>\n<p>Carling PA, Jansen JD, Meshkova L (2014) Multichannel rivers; their definition and classification. <em>Earth Surface Processes &amp; Landforms<\/em> (State of Science) 39, 26-37 pdf.26<\/p>\n<p>Gliganic LA, Cohen TJ,&nbsp;May J-H, Jansen JD, Nanson GC, Dosseto A, Larsen JR, Aubert M (2014) Late-Holocene climatic variability indicated by three archives in arid southern Australia. <em>The Holocene<\/em> 24, 104-117 pdf.25<\/p>\n<p>&nbsp;<\/p>\n<p>2013<\/p>\n<p>Jansen JD, Nanson GC, Cohen TJ,&nbsp;Fujioka T, Fabel D, Larsen JR, Codilean AT, Price DM, Bowman HH, May J-H, Gliganic LA (2013) Lowland river responses to intraplate tectonism and climate forcing quantified with luminescence and cosmogenic 10Be. <em>Earth &amp; Planetary Science Letters<\/em> 366, 49-58<\/p>\n<p>Castillo M, Bishop P,&nbsp;Jansen JD (2013) Knickpoint retreat and transient bedrock channel morphology triggered by base-level fall in small bedrock river catchments: The case of the Isle of Jura, Scotland. <em>Geomorphology<\/em> 180-181, 1-9<\/p>\n<p>Fitzsimmons KE, Cohen TJ,&nbsp;Hesse PP, Jansen JD, Nanson GC, May J-H, Barrows TT, Haberlah D, Hilgers A, Kelly T, Larsen J, Lomax J, Treble P (2013) Late Quaternary palaeoenvironmental change in the Australian drylands. <em>Quaternary Science Reviews<\/em> 74, 78-96<\/p>\n<p>Petherick L, Bostock H, Cohen TJ,&nbsp;Fitzsimmons K, Tibby J, Fletcher M-S, Moss P,&nbsp;Reeves J, Mooney S, Barrows T, Kemp J, Jansen JD, Nanson G, Dosseto A&nbsp;(2013) Climatic records over the past 35 ka from temperate Australia &#8211; a&nbsp;synthesis from the Oz-INTIMATE workgroup. <em>Quaternary Science Reviews<\/em> 74, 58-77<\/p>\n<p>Reeves JM, Barrows TT, Cohen TJ,&nbsp;Kiem AS, Bostock HC, Fitzsimmons KE, Jansen JD, Kemp J, Krause C, Petherick L, Phipps S, OZ-INTIMATE members (2013) Climate variability over the last 35,000 years recorded in marine and terrestrial archives in the Australian region: an OZ-INTIMATE compilation. <em>Quaternary Science Reviews<\/em> 74, 21-34<\/p>\n<p>Reeves JM, Bostock HC, Ayliffe LK, Barrows TT, De Deckker P,&nbsp;Devriendt LS, Dunbar GB, Drysdale RN, Fitzsimmons KE, Gagan MK, Griffiths ML, Haberle SG, Jansen JD, Krause C, Lewis S, McGregor HV, Mooney SD, Moss P,&nbsp;Nanson GC, Purcell A, van der Kaars S&nbsp;(2013) Palaeoenvironmental change in tropical Australasia over the last 30,000 years \u2013 a&nbsp;synthesis by the OZ-INTIMATE group. <em>Quaternary Science Reviews<\/em> 74, 97-114<\/p>\n<p>Scharf TE, Codilean AT, de Wit MJ,&nbsp;Jansen JD, Kubik PW&nbsp;(2013) Strong rocks sustain ancient postorogenic topography in southern Africa. <em>Geology<\/em> 41, 331-334<\/p>\n<p>&nbsp;<\/p>\n<p>2012<\/p>\n<p>Cohen TJ,&nbsp;Nanson GC, Jansen JD, Gliganic L, May J-H, Larsen JR, Goodwin ID, Browning S, Price DM (2012) A&nbsp;pluvial episode identified in arid Australia during the Medieval Climatic Anomaly. <em>Quaternary Science Reviews<\/em> 56, 167-171<\/p>\n<p>Cohen TJ,&nbsp;Nanson GC, Jansen JD, Jones BG, Jacobs Z, Larsen JR, May J-H, Treble P,&nbsp;Price DM, Smith AM (2012) Late Quaternary mega-lakes fed by the northern and southern river systems of central Australia: varying moisture sources and increased continental aridity. <em>Palaeogeography, Palaeoclimatology, Palaeoecology<\/em> 356-357, 89-108<\/p>\n<p>&nbsp;<\/p>\n<p>2011<\/p>\n<p>Jansen JD, Fabel D, Bishop P,&nbsp;Xu S, Schnabel C, Codilean AT (2011) Does decreasing paraglacial sediment supply slow knickpoint retreat? <em>Geology<\/em> 39, 543-546<\/p>\n<p>Abb\u00fchl LM, Norton KP, Jansen JD, Schlunegger F, Aldahan A, Possnert G (2011) Erosion rates and mechanisms of knickzone retreat inferred from 10Be measured across strong climate gradients on the northern and central Andes Western Escarpment. <em>Earth Surface Processes &amp; Landforms<\/em> 36, 1464-1473<\/p>\n<p>Cohen TJ,&nbsp;Nanson GC, Jansen JD, Jones BG, Jacobs Z, Treble P,&nbsp;Price DM, May J-H, Smith AM, Ayliffe LK, Hellstrom JC (2011) Continental aridification and the vanishing of Australia&#8217;s&nbsp;megalakes. <em>Geology<\/em> 39, 167-170<\/p>\n<p>Croke JC, Jansen JD, Amos KJ, Pietsch TJ (2011) A&nbsp;100 ky record of fluvial activity in the Fitzroy River basin, tropical northeastern Australia. <em>Quaternary Science Reviews<\/em> 30, 1681-1695<\/p>\n<p>Margold M, Jansson KN, Stroeven AP, Jansen JD (2011) Glacial Lake Vitim, a&nbsp;3000 cu.km outburst flood from Siberia to the Arctic Ocean. <em>Quaternary Research<\/em> 76, 393-396<\/p>\n<p>&nbsp;<\/p>\n<p>2010<\/p>\n<p>Jansen JD, Codilean, AT, Bishop P,&nbsp;Hoey TB (2010) Scale-dependence of lithological control on topography; bedrock channel geometry and catchment morphometry in western Scotland. <em>Journal of Geology<\/em> 118, 223-246<\/p>\n<p>Jansen JD, Nanson GC (2010) Functional relationships between vegetation, channel morphology, and flow efficiency in an alluvial (anabranching) river. <em>Journal of Geophysical Research &#8211; Earth Surface<\/em> 115, F04030<\/p>\n<p>&nbsp;<\/p>\n<p>2008<\/p>\n<p>Tooth S, Jansen JD, Coulthard TJ,&nbsp;Nanson GC, Pietsch T (2008) Channel-vegetation interactions in the late Holocene development of an anabranching network, Magela Creek, northern Australia. <em>Geological Society of America Bulletin<\/em> 120, 1021-1035<\/p>\n<p>&nbsp;<\/p>\n<p>2006<\/p>\n<p>Jansen JD (2006) Flood magnitude-frequency and lithologic controls on bedrock river incision in post-orogenic terrain. <em>Geomorphology<\/em> 82, 39-57<\/p>\n<p>2005<\/p>\n<p>Bishop P,&nbsp;Hoey TB, Jansen JD, Artza IL (2005) Knickpoint recession rates and catchment area: the case of uplifted rivers in eastern Scotland. <em>Earth Surface Processes &amp; Landforms<\/em> 30, 767-778<\/p>\n<p>Bishop P,&nbsp;Jansen JD (2005) The geomorphological setting of some of Scotland&#8217;s&nbsp;east coast freshwater mills: a&nbsp;comment on Downward and Skinner (2005) &#8216;Working rivers: the geomorphological legacy&#8217;. <em>Area<\/em> 37.4, 443-445<\/p>\n<p>2004<\/p>\n<p>Jansen JD, Brierley GJ (2004) Pool-fills: a&nbsp;window to palaeoflood history and response in bedrock-confined rivers. <em>Sedimentology<\/em> 51, 901-925<\/p>\n<p>Jansen JD, Nanson GC (2004) Anabranching and maximum flow efficiency in Magela Creek, northern Australia. <em>Water Resources Research<\/em> 40, W04503<\/p>\n<p>Brooks AP, Gehrke P,&nbsp;Jansen JD, Abbe TB (2004) Experimental reintroduction of woody debris on the Williams River, NSW: geomorphic and ecologic responses. <em>River Research &amp; Applications<\/em> 20, 513-536<\/p>\n<p>2000<\/p>\n<p>Gore DB, Brierley GJ, Pickard J, Jansen JD (2000) Anatomy of a&nbsp;floodout in semi-arid eastern Australia. <em>Zeitschrift f\u00fcr Geomorphologie Supplementb\u00e4nde<\/em> 122, 113-139<\/p>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][\/et_pb_section]<\/p>\n","protected":false},"excerpt":{"rendered":"<p>\u00a0 John Jansen, PhD Senior researcher &amp; team leaderSurface Processes &amp; Palaeoclimatejdj@ig.cas.cz Personal websiteGoogle ScholarMy work explores how climate, tectonics and life transform Earth&#8217;s&nbsp;surface through time. I&nbsp;have led the Surface Processes and Palaeoclimate team since its inception in 2021. I&nbsp;am also distinguished visiting professor at the Chengdu University of Technology and an [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":3827,"parent":416,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_et_pb_use_builder":"on","_et_pb_old_content":"","_et_gb_content_width":"","footnotes":""},"categories":[],"tags":[127],"class_list":["post-16746","page","type-page","status-publish","has-post-thumbnail","hentry","tag-people-en"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v25.9 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>John Jansen - Geofyzik\u00e1ln\u00ed \u00fastav Akademie v\u011bd \u010cR, v.v.i.<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.ig.cas.cz\/en\/contact\/staff\/john-jansen\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"John Jansen - Geofyzik\u00e1ln\u00ed \u00fastav Akademie v\u011bd \u010cR, v.v.i.\" \/>\n<meta property=\"og:description\" content=\"\u00a0 John Jansen, PhD Senior researcher &amp; team leaderSurface Processes &amp; Palaeoclimatejdj@ig.cas.cz Personal websiteGoogle ScholarMy work explores how climate, tectonics and life transform Earth&#039;s surface through time. 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