F. Parrenin

Publication List Details

Period

2004 - 2008

Number

71

Co-Authors

A 60 000 year Greenland stratigraphic ice core chronology (2008)

Svensson, A., Andersen, K. K., Bigler, M., Clausen, H. B., Dahl-Jensen, D., Davies, S. M., ...

The Greenland Ice Core Chronology 2005 (GICC05) is a time scale based on annual layer counting of high-resolution records from Greenland ice cores. Whereas the Holocene part of the time scale is...

A 60 000 year Greenland stratigraphic ice core chronology (2008)

Svensson, A., Andersen, K. K., Bigler, M., Clausen, H. B., Dahl-Jensen, D., Davies, S. M., ...

The Greenland Ice Core Chronology 2005 (GICC05) is a time scale based on annual layer counting of high-resolution records from Greenland ice cores. Whereas the Holocene part of the time scale is...

A 60 000 year Greenland stratigraphic ice core chronology (2008)

A. Svensson, K. K. Andersen, M. Bigler, H. B. Clausen, D. Dahl-Jensen, S. M. Davies, ...

The Greenland Ice Core Chronology 2005 (GICC05) is a time scale based on annual layer counting of high-resolution records from Greenland ice cores. Whereas the Holocene part of the time scale is...

Change in ice rheology during climate variations – implications for ice flow modelling and dating of the EPICA Dome C core (2007)

G. Durand, F. Gillet-Chaulet, A. Svensson, O. Gagliardini, S. Kipfstuhl, J. Meyssonnier, ...

The study of the distribution of crystallographic orientations (i.e., the fabric) along ice cores provides information on past and current ice flow in ice-sheets. Besides the usually observed...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0-50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at 50–120m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0-50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at 50–120m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0-50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at 50–120m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0–50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at ~50–120 m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

"EDML1": a chronology for the EPICA deep ice core from Dronning Maud Land, Antarctica, over the last 150 000 years (2007)

Ruth, U., Beer, J., Bigler, M., Blunier, T., Castellano, E., ...

A chronology called EDML1 has been developed for the EPICA ice core from Dronning Maud Land (EDML). EDML1 is closely interlinked with EDC3, the new chronology for the EPICA ice core from Dome-C (EDC)...

Synchronisation of the EDML and EDC ice cores for the last 52 kyr by volcanic signature matching (2007)

Severi, M., Becagli, S., Castellano, E., Morganti, A., Traversi, R., Udisti, R., ...

A common time scale for the EPICA ice cores from Dome C (EDC) and Dronning Maud Land (EDML) has been established. Since the EDML core was not drilled on a dome, the development of the EDML1 time...

Anomalous flow below 2700 m in the EPICA Dome C ice core detected using d18O of atmospheric oxygen measurements (2007)

Dreyfus, G. B., Parrenin, F., Lemieux-Dudon, B., Durand, G., Masson-Delmotte, V., Jouzel, J., ...

While there are no indications of mixing back to 800 000 years in the EPICA Dome C ice core record, comparison with marine sediment records shows significant differences in the timing and duration of...

1-D-ice flow modelling at EPICA Dome C and Dome Fuji, East Antarctica (2007)

Parrenin, F., Dreyfus, G., Durand, G., Fujita, S., Gagliardini, O., Gillet, F., ...

One-dimensional (1-D) ice flow models are used to construct the age scales at the Dome C and Dome Fuji drilling sites (East Antarctica). The poorly constrained glaciological parameters at each site...

Change in ice rheology during climate variations – implications for ice flow modelling and dating of the EPICA Dome C core (2007)

Durand, G., Gillet-Chaulet, F., Svensson, A., Gagliardini, O., Kipfstuhl, S., Meyssonnier, J., ...

The study of the distribution of crystallographic orientations (i.e., the fabric) along ice cores provides information on past and current ice flow in ice-sheets. Besides the usually observed...

A 60 000 year Greenland stratigraphic ice core chronology (2007)

Andersen, K. K., Bigler, M., Clausen, H. B., Dahl-Jensen, D., Johnsen, S. J., Rasmussen, S. O., ...

The Greenland Ice Core Chronology 2005 (GICC05) is a time scale based on annual layer counting of high-resolution records from Greenland ice cores. Whereas the Holocene part of the time scale is...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

"EDML1": a chronology for the EPICA deep ice core from Dronning Maud Land, Antarctica, over the last 150 000 years (2007)

Ruth, U., Beer, J., Bigler, M., Blunier, T., Castellano, E., ...

A chronology called EDML1 has been developed for the EPICA ice core from Dronning Maud Land (EDML). EDML1 is closely interlinked with EDC3, the new chronology for the EPICA ice core from Dome-C (EDC)...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0–50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at ~50–120 m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

Synchronisation of the EDML and EDC ice cores for the last 52 kyr by volcanic signature matching (2007)

Severi, M., Becagli, S., Castellano, E., Morganti, A., Traversi, R., Udisti, R., ...

A common time scale for the EPICA ice cores from Dome C (EDC) and Dronning Maud Land (EDML) was established. Since EDML core was not drilled on a dome, the development of the EDML1 time scale for the...

Anomalous flow below 2700 m in the EPICA Dome C ice core detected using d18O of atmospheric oxygen measurements (2007)

Dreyfus, G. B., Parrenin, F., Lemieux-Dudon, B., Durand, G., Masson-Delmotte, V., Jouzel, J., ...

While there are no indications of mixing back to 800 000 years in the EPICA Dome C ice core record, comparison with marine sediment records shows significant differences in the timing and duration of...

Ice flow modelling at EPICA Dome C and Dome Fuji, East Antarctica (2007)

Parrenin, F., Dreyfus, G., Durand, G., Fujita, S., Gagliardini, O., Gillet, F., ...

1-D ice flow models are used to construct the age scales at the Dome C and Dome Fuji drilling sites (East Antarctica). The poorly constrained glaciological parameters at each site are recovered by...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0–50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at ~50–120 m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

"EDML1": a chronology for the EPICA deep ice core from Dronning Maud Land, Antarctica, over the last 150 000 years (2007)

Ruth, U., Beer, J., Bigler, M., Blunier, T., Castellano, E., ...

A chronology called EDML1 has been developed for the EPICA ice core from Dronning Maud Land (EDML). EDML1 is closely interlinked with EDC3, the new chronology for the EPICA ice core from Dome-C (EDC)...

Synchronisation of the EDML and EDC ice cores for the last 52 kyr by volcanic signature matching (2007)

Severi, M., Becagli, S., Castellano, E., Morganti, A., Traversi, R., Udisti, R., ...

A common time scale for the EPICA ice cores from Dome C (EDC) and Dronning Maud Land (EDML) has been established. Since the EDML core was not drilled on a dome, the development of the EDML1 time...

Anomalous flow below 2700 m in the EPICA Dome C ice core detected using d18O of atmospheric oxygen measurements (2007)

Dreyfus, G. B., Parrenin, F., Lemieux-Dudon, B., Durand, G., Masson-Delmotte, V., Jouzel, J., ...

While there are no indications of mixing back to 800 000 years in the EPICA Dome C ice core record, comparison with marine sediment records shows significant differences in the timing and duration of...

1-D-ice flow modelling at EPICA Dome C and Dome Fuji, East Antarctica (2007)

Parrenin, F., Dreyfus, G., Durand, G., Fujita, S., Gagliardini, O., Gillet, F., ...

One-dimensional (1-D) ice flow models are used to construct the age scales at the Dome C and Dome Fuji drilling sites (East Antarctica). The poorly constrained glaciological parameters at each site...

Change in ice rheology during climate variations – implications for ice flow modelling and dating of the EPICA Dome C core (2007)

Durand, G., Gillet-Chaulet, F., Svensson, A., Gagliardini, O., Kipfstuhl, S., Meyssonnier, J., ...

The study of the distribution of crystallographic orientations (i.e., the fabric) along ice cores provides information on past and current ice flow in ice-sheets. Besides the usually observed...

A 60 000 year Greenland stratigraphic ice core chronology (2007)

Andersen, K. K., Bigler, M., Clausen, H. B., Dahl-Jensen, D., Johnsen, S. J., Rasmussen, S. O., ...

The Greenland Ice Core Chronology 2005 (GICC05) is a time scale based on annual layer counting of high-resolution records from Greenland ice cores. Whereas the Holocene part of the time scale is...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

"EDML1": a chronology for the EPICA deep ice core from Dronning Maud Land, Antarctica, over the last 150 000 years (2007)

Ruth, U., Beer, J., Bigler, M., Blunier, T., Castellano, E., ...

A chronology called EDML1 has been developed for the EPICA ice core from Dronning Maud Land (EDML). EDML1 is closely interlinked with EDC3, the new chronology for the EPICA ice core from Dome-C (EDC)...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0–50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at ~50–120 m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

Synchronisation of the EDML and EDC ice cores for the last 52 kyr by volcanic signature matching (2007)

Severi, M., Becagli, S., Castellano, E., Morganti, A., Traversi, R., Udisti, R., ...

A common time scale for the EPICA ice cores from Dome C (EDC) and Dronning Maud Land (EDML) was established. Since EDML core was not drilled on a dome, the development of the EDML1 time scale for the...

Anomalous flow below 2700 m in the EPICA Dome C ice core detected using d18O of atmospheric oxygen measurements (2007)

Dreyfus, G. B., Parrenin, F., Lemieux-Dudon, B., Durand, G., Masson-Delmotte, V., Jouzel, J., ...

While there are no indications of mixing back to 800 000 years in the EPICA Dome C ice core record, comparison with marine sediment records shows significant differences in the timing and duration of...

Ice flow modelling at EPICA Dome C and Dome Fuji, East Antarctica (2007)

Parrenin, F., Dreyfus, G., Durand, G., Fujita, S., Gagliardini, O., Gillet, F., ...

1-D ice flow models are used to construct the age scales at the Dome C and Dome Fuji drilling sites (East Antarctica). The poorly constrained glaciological parameters at each site are recovered by...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0–50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at ~50–120 m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

The EDC3 chronology for the EPICA Dome C ice core (2007)

Parrenin, F., Beer, J., Blunier, T., Castellano, E., Chappellaz, J., ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0–50 kyr (2007)

Loulergue, L., Parrenin, F., Blunier, T., Spahni, R., Schilt, A., ...

Gas is trapped in polar ice sheets at ~50–120 m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age difference...

1-D-ice flow modelling at EPICA Dome C and Dome Fuji, East Antarctica (2007)

F. Parrenin, G. Dreyfus, G. Durand, S. Fujita, O. Gagliardini, F. Gillet, ...

One-dimensional (1-D) ice flow models are used to construct the age scales at the Dome C and Dome Fuji drilling sites (East Antarctica). The poorly constrained glaciological parameters at each site...

Anomalous flow below 2700 m in the EPICA Dome C ice core detected using δ18O of atmospheric oxygen measurements (2007)

G. B. Dreyfus, F. Parrenin, B. Lemieux-Dudon, G. Durand, V. Masson-Delmotte, J. Jouzel, ...

While there are no indications of mixing back to 800 000 years in the EPICA Dome C ice core record, comparison with marine sediment records shows significant differences in the timing and duration of...

Synchronisation of the EDML and EDC ice cores for the last 52 kyr by volcanic signature matching (2007)

M. Severi, S. Becagli, E. Castellano, A. Morganti, R. Traversi, R. Udisti, ...

A common time scale for the EPICA ice cores from Dome C (EDC) and Dronning Maud Land (EDML) has been established. Since the EDML core was not drilled on a dome, the development of the EDML1 time...

"EDML1": a chronology for the EPICA deep ice core from Dronning Maud Land, Antarctica, over the last 150 000 years (2007)

U. Ruth, J. Beer, M. Bigler, T. Blunier, E. Castellano, ...

A chronology called EDML1 has been developed for the EPICA ice core from Dronning Maud Land (EDML). EDML1 is closely interlinked with EDC3, the new chronology for the EPICA ice core from Dome-C (EDC)...

The EDC3 chronology for the EPICA Dome C ice core (2007)

F. Parrenin, J. Beer, T. Blunier, E. Castellano, J. Chappellaz, ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0–50 kyr (2007)

L. Loulergue, F. Parrenin, T. Blunier, R. Spahni, A. Schilt, ...

Gas is trapped in polar ice sheets at ~50–120 m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age...

Ice flow modelling at EPICA Dome C and Dome Fuji, East Antarctica (2007)

F. Parrenin, G. Dreyfus, G. Durand, S. Fujita, O. Gagliardini, F. Gillet, ...

1-D ice flow models are used to construct the age scales at the Dome C and Dome Fuji drilling sites (East Antarctica). The poorly constrained glaciological parameters at each site are recovered by...

Anomalous flow below 2700 m in the EPICA Dome C ice core detected using δ18O of atmospheric oxygen measurements (2007)

G. B. Dreyfus, F. Parrenin, B. Lemieux-Dudon, G. Durand, V. Masson-Delmotte, J. Jouzel, ...

While there are no indications of mixing back to 800 000 years in the EPICA Dome C ice core record, comparison with marine sediment records shows significant differences in the timing and duration of...

Synchronisation of the EDML and EDC ice cores for the last 52 kyr by volcanic signature matching (2007)

M. Severi, S. Becagli, E. Castellano, A. Morganti, R. Traversi, R. Udisti, ...

A common time scale for the EPICA ice cores from Dome C (EDC) and Dronning Maud Land (EDML) was established. Since EDML core was not drilled on a dome, the development of the...

New constraints on the gas age-ice age difference along the EPICA ice cores, 0–50 kyr (2007)

L. Loulergue, F. Parrenin, T. Blunier, R. Spahni, A. Schilt, ...

Gas is trapped in polar ice sheets at ~50–120 m below the surface and is therefore younger than the surrounding ice. Firn densification models are used to evaluate this ice age-gas age...

"EDML1": a chronology for the EPICA deep ice core from Dronning Maud Land, Antarctica, over the last 150 000 years (2007)

U. Ruth, J. Beer, M. Bigler, T. Blunier, E. Castellano, ...

A chronology called <I>EDML1</I> has been developed for the EPICA ice core from Dronning Maud Land (EDML). <I>EDML1</I> is closely interlinked with <I>EDC3</I>,...

The EDC3 chronology for the EPICA Dome C ice core (2007)

F. Parrenin, J. Beer, T. Blunier, E. Castellano, J. Chappellaz, ...

The EPICA (European Project for Ice Coring in Antarctica) Dome C drilling in East Antarctica has now been completed to a depth of 3260 m, at only a few meters above bedrock. Here we present the new...

A 60 000 year Greenland stratigraphic ice core chronology (2007)

K. K. Andersen, M. Bigler, H. B. Clausen, D. Dahl-Jensen, S. J. Johnsen, S. O. Rasmussen, ...

The Greenland Ice Core Chronology 2005 (GICC05) is a time scale based on annual layer counting of high-resolution records from Greenland ice cores. Whereas the Holocene part of the time scale is...

Past temperature reconstructions from deep ice cores: relevance for future climate change (2006)

V. Masson-Delmotte, G. Dreyfus, P. Braconnot, S. Johnsen, J. Jouzel, M. Kageyama, ...

Ice cores provide unique archives of past climate and environmental changes based only on physical processes. Quantitative temperature reconstructions are essential for the comparison between ice...

Past temperature reconstructions from deep ice cores: relevance for future climate change (2006)

Masson-Delmotte, V., Dreyfus, G., Braconnot, P., Johnsen, S., Jouzel, J., Kageyama, M., ...

Ice cores provide unique archives of past climate and environmental changes based only on physical processes. Quantitative temperature reconstructions are essential for the comparison between ice...

Change of the ice rheology with climatic transitions – implication on ice flow modelling and dating of the EPICA Dome C core (2006)

Durand, G., Gillet-Chaulet, F., Svensson, A., Gagliardini, O., Kipfstuhl, S., Meyssonnier, J., ...

The study of the distribution of the crystallographic orientations (the fabric) along ice cores supplies information on the past and current ice flows of ice-sheets. Beside the usually observed...

Past temperature reconstructions from deep ice cores: relevance for future climate change (2006)

Masson-Delmotte, V., Dreyfus, G., Braconnot, P., Johnsen, S., Jouzel, J., Kageyama, M., ...

Ice cores provide unique archives of past climate and environmental changes based only on physical processes. Quantitative temperature reconstructions are essential for the comparison between ice...

Past temperature reconstructions from deep ice cores: relevance for future climate change (2006)

Masson-Delmotte, V., Dreyfus, G., Braconnot, P., Johnsen, S., Jouzel, J., Kageyama, M., ...

Ice cores provide unique archives of past climate and environmental changes based only on physical processes. Quantitative temperature reconstructions are essential for the comparison between ice...

Change of the ice rheology with climatic transitions – implication on ice flow modelling and dating of the EPICA Dome C core (2006)

Durand, G., Gillet-Chaulet, F., Svensson, A., Gagliardini, O., Kipfstuhl, S., Meyssonnier, J., ...

The study of the distribution of the crystallographic orientations (the fabric) along ice cores supplies information on the past and current ice flows of ice-sheets. Beside the usually observed...

Past temperature reconstructions from deep ice cores: relevance for future climate change (2006)

Masson-Delmotte, V., Dreyfus, G., Braconnot, P., Johnsen, S., Jouzel, J., Kageyama, M., ...

Ice cores provide unique archives of past climate and environmental changes based only on physical processes. Quantitative temperature reconstructions are essential for the comparison between ice...

Past temperature reconstructions from deep ice cores: relevance for future climate change (2006)

V. Masson-Delmotte, G. Dreyfus, P. Braconnot, S. Johnsen, J. Jouzel, M. Kageyama, ...

Ice cores provide unique archives of past climate and environmental changes based only on physical processes. Quantitative temperature reconstructions are essential for the comparison between ice...

Change of the ice rheology with climatic transitions – implication on ice flow modelling and dating of the EPICA Dome C core (2006)

G. Durand, F. Gillet-Chaulet, A. Svensson, O. Gagliardini, S. Kipfstuhl, J. Meyssonnier, ...

The study of the distribution of the crystallographic orientations (the fabric) along ice cores supplies information on the past and current ice flows of ice-sheets. Beside the usually observed...