Bildnachweis

Bildnachweis

Bildnachweis Im Bildnachweis verwendete Abkürzungen: With permission from the Geological Society of Ame- rica l – links; m – Mitte; o – oben; r – rechts; u – unten 4.65; 6.52; 6.183; 8.7 Bilder ohne Nachweisangaben stammen vom Autor. Die Autoren der Bildquellen werden in den Bildunterschriften With permission from the Society for Sedimentary genannt; die bibliographischen Angaben sind in der Literaturlis- Geology (SEPM) te aufgeführt. Viele Autoren/Autorinnen und Verlage/Institutio- 6.2ul; 6.14; 6.16 nen haben ihre Einwilligung zur Reproduktion von Abbildungen gegeben. Dafür sei hier herzlich gedankt. Für die nachfolgend With permission from the American Association for aufgeführten Abbildungen haben ihre Zustimmung gegeben: the Advancement of Science (AAAS) Box Eisbohrkerne Dr; 2.8l; 2.8r; 2.13u; 2.29; 2.38l; Box Die With permission from Elsevier Hockey-Stick-Diskussion B; 4.65l; 4.53; 4.88mr; Box Tuning 2.64; 3.5; 4.6; 4.9; 4.16l; 4.22ol; 4.23; 4.40o; 4.40u; 4.50; E; 5.21l; 5.49; 5.57; 5.58u; 5.61; 5.64l; 5.64r; 5.68; 5.86; 4.70ul; 4.70ur; 4.86; 4.88ul; Box Tuning A; 4.95; 4.96; 4.97; 5.99; 5.100l; 5.100r; 5.118; 5.119; 5.123; 5.125; 5.141; 5.158r; 4.98; 5.12; 5.14r; 5.23ol; 5.24l; 5.24r; 5.25; 5.54r; 5.55; 5.56; 5.167l; 5.167r; 5.177m; 5.177u; 5.180; 6.43r; 6.86; 6.99l; 6.99r; 5.65; 5.67; 5.70; 5.71o; 5.71ul; 5.71um; 5.72; 5.73; 5.77l; 5.79o; 6.144; 6.145; 6.148; 6.149; 6.160; 6.162; 7.18; 7.19u; 7.38; 5.80; 5.82; 5.88; 5.94; 5.94ul; 5.95; 5.108l; 5.111l; 5.116; 5.117; 7.40ur; 8.19; 9.9; 9.16; 9.17; 10.8 5.126; 5.128u; 5.147o; 5.147u; 5.149ul; 5.150; 5.151; 5.152; 5.153; 5.154r; 5.155; 5.156; 5.157; 5.158l; 5.160; 5.161; 5.162; With permission from the Proceedings of the National 5.165; 5.176l; 5.176r; 5.178; 5.179; 6.3; 6.9; 6.10r; 6.25; 6.25 Academy of Sciences (PNAS) inset; 6.26; 6.27; 6.28; 6.30; 6.32; 6.35l; 6.35r; 6.36; 6.38; 6.39; 2.10r; 2.34; 7.17; 7.20 6.43l; 6.46o; 6.47; 6.48; 6.50l; 6.50r; 6.53; 6.54l; 6.54r; 6.55l; 6.55r; 6.58r; 6.59; 6.66; 6.68; 6.69; 6.70o; 6.72; 6.75l; 6.76o; 6.76u; 6.84ol; 6.84m; 6.87l; 6.90or; 6.90ur; 6.91; 6.96l; 6.97; With permission from the American Meteorological 6.108; 6.109; 6.110l; 6.115; 6.116; 6.123; 6.128; 6.137; 6.138; Society (AMS) 6.140; 6.147; 6.153; 6.154l; 6.154r; 6.155; 6.157l; 6.157r; 3.4; 6.197o 6.158; 6.173; 6.177l; 6.177r; 6.178l; 6.178r; 6.182; 6.189l; 6.189r; 7.8; 7.10; 7.11; 7.13; 7.15; 7.16; 7.24; 7.25; 7.26l; 7.26r; With permission from Springer 7.27; 7.28; 7.29; 7.31; 7.32; 7.33r; 7.35; 7.39; 7.40ur; 7.43o; 2.2; 2.59; 4.7; 4.49;BoxDie Hockey-Stick-Diskussion Al; 7.43u; 7.44l; 7.45l; 8.3; 8.5m; 8.5u; 8.7; 8.8; 8.10ol; 8.10or; 4.66r; 4.73o; 5.7r; 5.98; 5.168l; 5.168r; 5.169l; 5.171l; 6.4l; 8.10ul; 8.10ur; 8.11; 8.12; 8.13; 8.18; 8.22r; 8.25ol; 8.25ul; 6.4r; 6.5o; 6.5u; 6.40; 6.83; 6.85; 6.94; 6.102l; 6.102r; 6.111; 9.20; 9.12; 10.5 6.112; 6.161; 6.168l; 6.168r; 6.170o; 6.170u; 6.171; 6.172; 6.175; 9.11 With permission from Wiley 2.35u; 2.42; 2.60; 2.70; 4.8; 4.12; 4.64; 4.69; 4.89; 4.90; 4.91; With permission from Nature/Springer 4.92;BoxTuning C; 5.8o: 5.8u; 5.13; 5.69o; 5.69u; 5.92l; 5.92r; 2.3; 2.4;BoxSauerstoffisotopen-Analyse A, F, G, H; 2.7l; 2.7r; 5.122ol; 5.122ul; 5.122r; 6.18; 6.44; 6.84u; 6.90r; 6.92; 6.102l; Box Jüngere Dryaszeit Ar, B; 2.13o; 2.14o; 2.14u; 2.20; 2.21; 6.102r; 6.104; 6.179; 7.12; 7.14; 7.21o; 7.21u; 7.22o; 7.23; 2.26; 2.27; 2.31; 2.32or; 2.39; 2.40o; 2.45ul; 2.45um; 2.45ur; 7.33l; 8.15ul; 8.15ur 2.50; 2.54; 2.56; 2.61u; 2.63; 2.68; 2.69; 4.25; 4.36; 4.56l; 4.56r; Box Die Hockey-Stick-Diskussion Ar; 4.75ol; 4.75or; 4.77ol; With permission from SAGE journals 4.77um; 4.79;BoxTuning B; 4.93r; 4.102l; 4.104l; 4.105;Box 2.65; 2.71; 4.22or; 8.14; 9.19; 9.20; 10.3 Modelle/Modellierungen Al; 5.3; 5.15; 5.19; 5.22; 5.83; 5.89; 5.101; 5.166; 5.172; 5.175; 6.11; 6.12; 6.40; 6.65; 6.82r; 6.93l; 6.93r; 6.143; 6.164o; 6.164u; 6.174; 6.176; 6.187; 6.188; 7.36; With permission from Taylor & Francis Group 7.37; 7.46; 7.48; 8.15o; 8.16; 8.17u; 8.23; 8.24; 8.26; 8.27; 4.27; 5.66o 9.1ol; 9.4l; 9.5; 9.6l; 9.6r; 9.7; 9.15; 10.6; 10.7o; 10.7u; 10.14 © Springer-Verlag GmbH Deutschland, ein Teil von Springer Nature 2019 655 K. Heine, Das Quartär in den Tropen, https://doi.org/10.1007/978-3-662-57384-6 656 Bildnachweis With permission from PAGES and the authors Niller, Hans-Peter; Bonn 2.40u; 2.41; 2.48; 2.58; 2.66; 4.2; 4.3; 4.10; 4.32l; 4.33; 4.35; 4.37ml 4.52; 4.54; 4.55; 4.58; 4.59; 4.62; 4.63o; 4.67; 4.72; 4.73u; 4.74; 4.80; 4.81; 4.82;BoxSclerochronologie B; 4.101; 5.9ol; 5.10; Schmidt, Mareike; FU Berlin 5.26; 5.81l; 5.81r; 5.96; 5.107; 5.108r; 5.144; 5.170l; 5.177ol; 6.114r 6.89; 6.186; 9.18; 10.10 In Bildunterschriften nicht erwähnte Autoren: Soubrier, Julien; University of Adelaide 9.8 Mcnaughton, Sean; NationalGeographicCreative No. Spratt, Rachel M. und Lisiecki, Lorraine E. 2016. Climate RR3-240045-1. Image 1210171 of the Past EGU: CC Attribution 3.0 License 10.13l 2.5o; 2.5u Literatur Abele G (1984) Derrumbe de montaña y morrenas en los Andes Adams JM et al (1990) Increases in terrestrial carbon stor- Chilenos. Revista De Geografía Norte Grande 11:17–30 age from the last Glacial maximum to the present. Nature 348:711–714 Abell PI, Plug I (2000) The Pleistocene/Holocene transition in South Africa: evidence for the Younger Dryas event. Glob Adler DS et al (2014) Early Levallois technology and the Lower Planet Change 26:173–179 to Middle Paleolithic transition in the Southern Caucasus. Science 345:1609–1613 Abbott MB et al (2000) Holocene hydrological reconstructions from stable isotopes and paleolimnology, Cordillera Real, Adolphi F et al (2014) Persistent link between solar activity Bolivia. Quat Sci Rev 19:1801–1820 and Greenland climate during the last Glacial maximum. Nat Geosci 7:662–666 Abbott MB et al (2003) Holocene paleohydrology and glacial history of the central Andes using multiproxy lake sediment Aeppli H (1973) Barroböden und Tepetate. Untersuchungen zur studies. Palaeogeogr Palaeoclimatol Palaeoecol 194:123–138 Bodenbildung in vulkanischen Aschen unter wechselfeuch- tem gemäßigtem Klima im zentralen Hochland von Mexiko. Abram NJ et al (2003) Coral reef death during the 1997 In- Dissertation Fachbereich Umweltsicherung. Justus-Liebig- dian Ocean dipole linked to Indonesian wildfires. Science Universität Gießen 301:952–955 Agassiz A (1876) Hydrographic sketch of Lake Titicaca. Proc Abram NJ et al (2016) Early onset of industrial-era warming Am Academy Arts Sci 11:280–292 across the oceans and continents. Nature 536:411–418 (Sup- pl) Aggarwal PK et al (2016) Proportions of convective and stra- tiform precipitation revealed in water isotope ratios. Nat Absy ML et al (1991) Mise en évidence de quatre phases Geosci 9:624–629 d’ouverture de la forêt dense dans le sud-est de l’Amazonie au cours des 60 000 dernières années. Première comparaison Ahlfeld F (1932) Die Cordillera Quimsa Cruz. Zeitschrift des avec d’autres regions tropicales. Comptes Rendues Académie deutsch-österreichischen Alpenvereins (döav) 63:79–94 Des Sci Paris 313:673–678 Ahnert F (1996) Einführung in die Geomorphologie, 2. Aufl. Acosta J (1851) Zitiert nach Hermann A. Schumacher (1884), Ulmer, Stuttgart Südamerikanische Studien. Drei Lebens- und Culturbilder. Aimers J (2011) The story of the artefacts. Nature 479:44 Mútis. Cáldas. Codazzi. 1760–1860. 132 S, Fußnote 142 Ainsworth C (2008) Logbooks record weather’s history. Science Acosta Navarro JC et al (2016) Amplification of Arctic warming 322:1629 by past air pollution reductions in Europe.

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