Holocene climatic optimum

E87433

The Holocene climatic optimum was a warm period roughly 9,000–5,000 years ago when global temperatures, especially in the Northern Hemisphere, were higher than today, influencing the spread of forests and early human civilizations.

AI illustration

How this image was made

AI-generated illustration of Holocene climatic optimum

This AI-generated illustration was produced by black-forest-labs/FLUX.2-dev (1024x1024) from a prompt written by openai/gpt-oss-120b from the entity's label + description.

Prompt

Generate an image of the Holocene climatic optimum (The Holocene climatic optimum was a warm period roughly 9,000–5,000 years ago when global temperatures, especially in the Northern Hemisphere, were higher than today, influencing the spread of forests and early human civilizations.)

All labels observed (6)

How this entity was disambiguated

Statements (58)

Predicate Object
instanceOf Holocene warm period ⓘ
climatic period ⓘ
paleoclimatic event ⓘ
alsoKnownAs Holocene Thermal Maximum ⓘ
Holocene climatic optimum warm period ⓘ
climateCharacteristic enhanced seasonality in some regions ⓘ
expansion of lakes in North Africa ⓘ
greener Sahara compared to today ⓘ
higher summer temperatures in high northern latitudes ⓘ
reduced Arctic sea ice in summer compared to early Holocene ⓘ
stronger African monsoon in parts of the Sahara and Sahel ⓘ
warmer North Atlantic sea-surface temperatures in summer ⓘ
warmer conditions in many continental interiors ⓘ
duration several thousand years ⓘ
endTime circa 5000 years before present ⓘ
mid-Holocene ⓘ
evidenceFrom glacial geomorphology ⓘ
ice cores ⓘ
lake sediment cores ⓘ
marine sediment cores ⓘ
pollen records ⓘ
speleothems ⓘ
tree rings ⓘ
fieldOfStudy Earth science ⓘ
Quaternary science ⓘ
climate science ⓘ
follows Last Glacial Period ⓘ
Younger Dryas ⓘ
geographicScope especially strong in Northern Hemisphere high latitudes ⓘ
global ⓘ
pronounced in Arctic regions ⓘ
pronounced in mid- to high-latitude continents ⓘ
hasCause Milankovitch cycles ⓘ
high axial tilt of Earth ⓘ
increased summer insolation in the Northern Hemisphere ⓘ
orbital forcing ⓘ
hasEffect changes in precipitation patterns ⓘ
development of extensive wetlands in some mid-latitude regions ⓘ
expansion of boreal forests into Arctic regions ⓘ
higher sea levels than early Holocene ⓘ
increased monsoon intensity in some regions ⓘ
northward shift of tree line ⓘ
poleward expansion of forests ⓘ
reduced extent of some ice sheets and glaciers ⓘ
warmer Northern Hemisphere summers ⓘ
warmer global temperatures than late 20th century in many regions ⓘ
influenced Neolithic human civilizations ⓘ
early agricultural societies ⓘ
expansion of human populations in mid-latitudes ⓘ
spread of farming in Eurasia ⓘ
partOf Holocene epoch ⓘ
linked to: Holocene
precedes Neoglaciation ⓘ
startTime circa 9000 years before present ⓘ
early Holocene ⓘ
studiedBy paleoclimatology ⓘ
temperatureRelativeTo comparable to or lower than early 21st century global mean temperature ⓘ
higher than preindustrial in many high-latitude regions ⓘ
temporalLocation Holocene epoch ⓘ
linked to: Holocene

How these facts were elicited

Referenced by (9)

Full triples — surface form annotated when it differs from this entity's canonical label.

Holocene → containsEvent → Holocene climatic optimum ⓘ
Quaternary period → contains → Holocene climatic optimum ⓘ
Quaternary period → subdividedInto → Middle Holocene ⓘ
linked to: Holocene climatic optimum
Littorina Sea → hasClimateContext → Holocene climatic optimum ⓘ
Holocene climatic optimum → alsoKnownAs → Holocene Thermal Maximum ⓘ
linked to: Holocene climatic optimum
Holocene climatic optimum → alsoKnownAs → Holocene climatic optimum warm period ⓘ
linked to: Holocene climatic optimum
8.2 kiloyear event → partOf → Holocene climate variability ⓘ
linked to: Holocene climatic optimum
Younger Dryas cold event → precedes → Holocene climatic optimum ⓘ
Pleistocene glaciation → followedBy → Holocene climate optimum ⓘ
linked to: Holocene climatic optimum