- E-mailaage.paus@uib.no
- Phone+47 55 58 33 44
- Visitor AddressThormøhlens gate 53 A/B5006 Bergen
- Postal AddressPostboks 78035020 Bergen
Academic article
- (2021). Rapid climate changes during the Lateglacial and the early Holocene as seen from plant community dynamics in the Polar Urals, Russia. Journal of Quaternary Science. 1-13.
- (2021). Lake Heimtjønna at Dovre, Mid-Norway, reveals remarkable late-glacial and Holocene sedimentary environments and the early establishment of spruce (Picea abies), alder (Alnus cf. incana), and alpine plants with present centric distributions. Quaternary International. 38-52.
- (2020). Last Glacial Maximum environmental conditions at Andøya, northern Norway; evidence for a northern ice-edge ecological “hotspot” . Quaternary Science Reviews.
- (2020). Last Glacial Maximum environmental conditions at Andøya, northern Norway; evidence for a northern ice-edge ecological “hotspot”. Quaternary Science Reviews.
- (2020). A 24,000-year ancient DNA and pollen record from the Polar Urals reveals temporal dynamics of arctic and boreal plant communities. Quaternary Science Reviews. 1-22.
- (2019). Environmental responses to the 9.7 and 8.2 cold events at two ecotonal sites in the Dovre mountains, mid-Norway. Quaternary Science Reviews. 45-61.
- (2018). The timing of deglaciation and the sequence of pioneer vegetation at Ringsaker, eastern Norway – and an earthquake-triggered landslide. Norwegian Journal of Geology. 301-318.
- (2018). Long-term changes in regional vegetation cover along the west coast of southern Norway: The importance of human impact. Journal of Vegetation Science (JVS). 404-415.
- (2017). Early- to mid-Holocene forest-line and climate dynamics in southern Scandes mountains inferred from contrasting megafossil and pollen data. The Holocene. 361-383.
- (2015). Lake Store Finnsjøen – a key for understanding Lateglacial/early Holocene vegetation and ice sheet dynamics in the central Scandes Mountains. Quaternary Science Reviews. 36-51.
- (2014). Glacial and vegetation history of the Polar Ural Mountains in northern Russia during the Last Ice Age, Marine Isotope Stages 5-2. Quaternary Science Reviews. 409-428.
- (2011). The Lateglacial and early Holocene vegetation and environment in the Dovre mountains, central Norway, as signalled in two Lateglacial nunatak lakes. Quaternary Science Reviews. 1780-1796.
- (2011). Lateglacial vegetation and palaeoenvironment in W Norway, with new pollen data from the Sunnmøre region. Boreas. 616-635.
- (2008). Intriguing climatic shifts in a 90 kyr old lake record from northern Russia. Boreas. 20-37.
- (2006). Early Weichselian palaeoenvironments reconstructed from a mega-scale thrust-fault complex, Kanin Peninsula, northwestern Russia. Boreas. 476-492.
- (2006). Early Weichselian palaeoenvironments reconstructed from a mega-scale thrust-fault complex, Kanin Peninsula, NW Russia. Boreas : Uppsala studies in ancient Mediterranean and Near Eastern civilizations. 476-492.
- (2004). Late Weichselian (Valdaian) and Holocene vegetation and environmental history of the northern Timan Ridge, European Arctic Russia. Quaternary Science Reviews. 2285-2302.
- (2003). Late Weichselian (Valdaian) and Holocene vegetation and environmental history of the northern Timan Ridge, European Arctic Russia. Quaternary Science Reviews. 2285-2302.
- (2003). Lake stratigraphy implies an 80 000 yr delayed melting of buried dead ice in northern Russia. Journal of Quaternary Science. 663-679.
- (1998). Sør-Norges tidlig Holocene innvandring av utvalgte treslag. Geonytt. 104-105.
- (1995). The Late Weichselian and Early Holocene history of thee birch in south Norway and the Bølling Betula time-lag in northwest Europe. Review of Palaeobotany and Palynology. 243-262.
- (1994). Late-glacial vegetation and environment in Irland: first results from four western sites. Quaternary Science Reviews. 681-705.
- (1994). Late Weichselian environmental change in Norway, including Svalbard. Journal of Quaternary Science. 133-145.
- (1994). Late Weichselian environmental change in Norway, including Svalbard. Journal of Quaternary Science. 133-145.
- (1994). Investigations towards the reconstruction of the late-glacial environment at Lurga, S. E. Burren. I. The sedimentary record and the pollen and macrofossil evidence. IQUA Guide to the Burren.
Academic lecture
- (2020). The use of ancient DNA in palaeoecological studies.
- (2020). Ancient sedimentary DNA reveals long-term impact of climate change on northern flora.
- (2019). Persistent arctic vegetation during periods of rapid climate change - 24,000 years of plant community dynamics in the Polar Urals.
- (2018). A 25,000-yr combined DNA and pollen record from the Polar Urals: resilience of the arctic-alpine flora under climate change.
- (2018). A 24,000 years long, high-resolution lake record from the Polar Ural Mountains, Arctic Russia.
- (2018). 25 000 years of Arctic climate change - and the effects on vegetation.
- (2014). The Late Weichselian deglaciation of central Scandes; new stratigraphical evidences from laminated lake sediments at Dovre, central Norway.
- (2013). Glacial and vegetation history of the Polar Ural Mountains in Northern Russia during the Last Ice Age, marine Isotope Stage 5e.
- (2006). Intriguing climatic shifts in a 90 kyr long record from the Timan Ridge in northern Russia.
- (2000). Preliminary results of sediment cores from three lakes in northern Russia, including evidence for c. 40,000 years delayed melting of dead ice.
- (2000). Preliminary results of sediment cores from three lakes in northern Russia, including evidence for c. 40,000 years delayed melting of dead ice.
Editorial
- (2013). Human impact, soil erosion, and vegetation response lags to climate change: challenges for the mid-Scandinavian pollen-based transfer-function temperature reconstructions. Vegetation History and Archaeobotany. 269-284.
Thesis at a second degree level
- (2000). Palaeovegetation and environment during Weichselian stadials and interstadials at Mamontovaya Kurja and Sokolova in the Pechora basin, northern Russia.
Popular scientific article
- (2022). Furustubber på Skavdalsfjellet belyser Bergens skogshistorie. Årringen. 88-97.
Doctoral dissertation
- (2012). Weichselian vegetation and palaeoenvironment in western Norway and northern Russia. Evidence from pollen analytical investigations.
- (1992). Late Weichselian vegetation, climate, and floral migration in Rogaland, southwestern Norway : pollen analytical evidence from four late-glacial basins.
Interview
- (2013). Flott NORKLIMA-uttelling for UiB og GEO!
Programme participation
- (2004). Flåfattjønnas hemmiligheter. Nye teorier om istiden.
Academic chapter/article/Conference paper
- (2009). Klimavariasjoner etter siste istid. 7 pages.
- (1996). Norway. Type region N-mo, southern costal area in Møre & Trøndelag (Central Norway). 7 pages.
- (1996). Norway. Type region N-j, south-western Norway (northern Rogaland-southern Hordaland). 4 pages.
- (1993). Burren. Reconstructing the late-glacial environment, R420 965. I. Pollen and lithological evidence.
Other
- (2001). The climate and periglacial environment in northern Eurasia during the last glaciation (LGM). 211-248.
Poster
- (2004). Glacial-interglacial transitions in Arctic Russia recorded in lake sediments.
- (2004). A late Pleistocene record from lake Yamozero Timan ridge, Northern Russia.
- (2004). A late Pleistocene record from Lake Yamozero, Timan Ridge, northern Russia.
- (2002). A lake core through the Weichselian and Eemian, from Lake Yamozero, Timan Ridge, northeastern Russia.
- (2001). Valdaian (Weichselian) lake sediment sequences from the Timan Ridge, northern Russia.
- (2001). Records of Weichselian lake sediment sequences in northen Russia.
Academic literature review
- (2010). Vegetation and environment of the Rødalen alpine area, Central Norway, with emphasis on the early Holocene. Vegetation History and Archaeobotany. 29-51.
- (2006). Lateglacial nunataks in central Scandinavia: Biostratigraphical evidence for ice thickness from Lake Flafattjonn, Tynset, Norway. Quaternary Science Reviews. 1228-1246.
More information in national current research information system (CRIStin)