Skip to main content

CaveSeds

Evi­dence of middle Pleis­to­cene gla­cia­tions in the Swiss fore­land is either lacking (very few to no fron­tal or late­ral moraines) or indis­tinct enough (scat­te­red quart­zite clasts) to be dif­fi­cult to map and, the­re­fore, to date. The record of such gla­cia­tions is thus main­ly found in sedi­ments of over­dee­pe­ned val­leys and can only be acces­sed through com­plex coring cam­pai­gns. Some of these sedi­ments could be dated with lumi­nes­cence tech­niques back to c. 200 ka but the age of the dee­pest gla­cial sedi­ments and the timing of over­dee­pe­ning asso­cia­ted with the most exten­sive gla­cia­tions remains, howe­ver, com­ple­te­ly unk­nown.

In this pro­ject (2024–2028) we use gla­cial sedi­ments trap­ped in caves in the Jura Moun­tains to add spa­tio­tem­po­ral constraints major Alpine gla­cia­tions. Clas­tic sedi­ments com­pri­sing of coarse sands, pebbles and cobbles from the Pen­nine Alps (quart­zites, ser­pen­tines, dio­rites, etc.) ente­red into caves in asso­cia­tion with gla­cial runoff and, thus, record when a gla­cier was close enough to pour out­wash into the cave sys­tems. Here, we pro­pose a mul­ti-method approach cen­te­red on field inves­ti­ga­tions, sedi­ment trans­port expe­ri­ments and burial dating with cos­mo­ge­nic nuclides to constrain how and when these clasts were deli­ve­red.

Detai­led geo­mor­pho­lo­gi­cal sur­veying will inform about the spe­leo­ge­ne­tic evo­lu­tion and sedi­men­ta­tion context to unders­tand the trans­port his­to­ry of indi­vi­dual clasts inside mul­ti-level cave sys­tems. Our inter­pre­ta­tion will be sup­por­ted by in-situ moni­to­ring expe­ri­ments to deter­mine the cri­ti­cal shear stress nee­ded for clast remo­bi­li­za­tion in a com­plex cave set­ting. We will use 10Be/26Al burial dating to deter­mine when the sedi­ments in the cave were depo­si­ted. This tech­nique is main­ly renow­ned through anthro­po­lo­gi­cal stu­dies and is com­mon­ly used to deter­mine flu­vial inci­sion rates . Our pro­po­sal is, howe­ver, first to apply it for the recons­truc­tion of gla­cier extents, which is only pos­sible because of the unique litho­lo­gy contrast bet­ween the source of the clasts and their depo­si­tion site. Burial ages will be com­ple­men­ted by OSL dating of youn­ger sedi­ments asso­cia­ted with gla­cial back­floo­ding and U/Th dating will pro­vide mini­mum ages from spe­leo­thems encom­pas­sing the gla­cial depo­sits.

The abso­lute ages pro­du­ced during this pro­ject will pro­vide fun­da­men­tal and at present com­ple­te­ly lacking infor­ma­tion on when gla­ciers from the Alps were large enough to invade and even cover the Jura Moun­tains. Our pre­li­mi­na­ry data sug­gests that this may have been not only during the middle Pleis­to­cene but also during the ear­ly Pleis­to­cene for which there are no map­ped out­crops in the Jura. Is this because gla­ciers did not reach that far or because the sedi­ments were sub­se­quent­ly ero­ded during youn­ger gla­cia­tions ? Wha­te­ver, our pro­ject will give access to an untap­ped record uni­que­ly pre­ser­ved in the cave sedi­ments and, by com­pa­ring with the known timing of Decken­schot­ter, contri­bute signi­fi­cant­ly to deter­mi­ning when the first major Alpine gla­cia­tions occur­red. This data can be well inte­gra­ted into ongoing research acti­vi­ties aiming at dating sedi­ment cores from over­dee­pe­ned val­leys.

Link to Cave­Seds SNF page

Phd students


Contact

Neal Mathes
Send e‑mail


Contact

Ain­hoa Val
Send e‑mail

PIs

Marc Luet­scher (SISKA), Naki Akçar (UniBe), Susan Ivy-Ochs (ETH).

Publications

Mathes N., Luet­scher M., Ivy-Ochs S., Die­le­man C., Christl M., Vocken­hu­ber C., Akçar N., 2025. Unra­ve­ling the his­to­ry of the Alps” lar­gest gla­cia­tions : burial dating alloch­to­nous sedi­ments in the Jura. Cli­mate Change, The Karst Record X, Cape Town 2025

Val A., Mathes N., Ivy-Ochs S., Akçar N., Luet­scher M., 2025. Cha­rac­te­ri­zing sedi­ment remo­bi­li­za­tion in caves. Cli­mate Change, The Karst Record X, Cape Town 2025