Post-glacial landscape response to climate variability in the southeastern San Juan Mountains of Colorado, USA
Bibliographic Data
| ID | 24085000 |
|---|---|
| Authors | Bradley G Johnson (0000-0002-3799-5019, Davidson College, corresponding author), Martha Cary Eppes (0000-0002-3032-1046, University of North Carolina at Charlotte), John Diemer (0000-0002-0697-5648, University of North Carolina at Charlotte), John A Diemer, Gonzalo Jiménez‐moreno (0000-0001-7185-8686, Universidad de Granada), Gonzalo Jiménez-Moreno, Anthony L Layzell (0000-0003-0672-3085, University of Kansas) |
| Year | 2011 |
| Volume | 76 |
| Issue | 3 |
| Pages | 352-362 |
| Publication date | 2011-11-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | Quaternary Research (JOURNAL) |
| Journal identifiers | ISSN: 0033-5894 • E-ISSN: 1096-0287 |
| Publisher | Cambridge University Press (CUP) (PUBLISHER) |
| DOI | 10.1016/j.yqres.2011.08.006 |
| OpenAlex | W1998864419 |
| Language | EN |
| Citations received | 3 |
| References cited | 38 |
Geomorphic mapping in the upper Conejos River Valley of the San Juan Mountains has shown that three distinct periods of aggradation have occurred since the end of the last glacial maximum (LGM). The first occurred during the Pleistocene–Holocene transition (~ 12.5–9.5 ka) and is interpreted as paraglacial landscape response to deglaciation after the LGM. Evidence of the second period of aggradation is limited but indicates a small pulse of sedimentation at ~ 5.5 ka. A third, more broadly identifiable period of sedimentation occurred in the late Holocene (~ 2.2–1 ka). The latest two periods of aggradation are concurrent with increases in the frequency of climate change in the region suggesting that Holocene alpine and sub-alpine landscapes respond more to rapid changes in climate than to large singular climatic swings. Soil development and radiocarbon dating indicate that hillslopes were stable during the Holocene even while aggradation was occurring in valley bottoms. Thus, we can conclude that erosion does not occur equally throughout the landscape but is focused upslope of headwater streams, along tributary channels, or on ridge tops. This is in contrast to some models which assume equal erosion in headwater basins.
Aggradation · Climate change · Deglaciation · Erosion · Fluvial · Geography · Geomorphology · Glacial period · Holocene · Last Glacial Maximum · Physical geography · Pleistocene · Radiocarbon dating · Structural basin · Cryospheric studies and observations · Geology · Geology and Paleoclimatology Research · Landslides and related hazards · Oceanography · Paleontology
Holocene landscape evolution and geoarcheology of low-order streams in the Rio Grande basin, San Juan Mountains, Colorado, USA
A multiproxy record of postglacial climate variability from a shallowing, 12-m deep sub-alpine bog in the southeastern San Juan Mountains of Colorado, USA
A low-frequency summer temperature reconstruction for the United States Southwest, 3000 BC–AD 2000
Palynological Evidence for Late- and Postglacial Environmental Change in Central Colorado
Timing and distribution of alluvial fan sedimentation in response to strengthening of late Holocene Enso variability in the Sonoran Desert, Southwestern Arizona, USA
Changes in the Content and Composition of Pedogenic Iron Oxyhydroxides in a Chronosequence of Soils in Southern California
Influence of Late Quaternary Climatic Changes on Geomorphic and Pedogenic Processes on a Desert Piedmont, Eastern Mojave Desert, California
Deglaciation and Postglacial Timberline in the San Juan Mountains, Colorado
Chronology of Cirque Glaciation, Colorado Front Range
Holocene Environmental Changes in the Alpine Zone, Northern San Juan Mountains, Colorado
Paraglacial geomorphology
An ~15,000-Year Record of El Niño-Driven Alluviation in Southwestern Ecuador
Surficial Geologic Map of the Upper Conejos River Drainage, Southeastern San Juan Mountains, Southern Colorado, USA
Soils and Geomorphology
Valley Alluviation in Southwestern Wisconsin∗
| Unique citing works | 3 |
|---|---|
| Citations per year | 0,23 |
| Citation span | 2013 - 2024 (12) |
| Citation velocity | recent |
| Highly cited | No |
| Citation types | Neutral: 2 |