Gary R. Byerly

Gary R. Byerly

Louisiana State University

H-index: 47

North America-United States

About Gary R. Byerly

Gary R. Byerly, With an exceptional h-index of 47 and a recent h-index of 24 (since 2020), a distinguished researcher at Louisiana State University, specializes in the field of early earth, greenstone belts, giant impacts, komatiite, basalt.

His recent articles reflect a diverse array of research interests and contributions to the field:

Trace elements in zircon record changing magmatic processes and the multi-stage build-up of Archean proto-continental crust

Light oxygen isotopic composition in deep mantle reveals oceanic crust subduction before 3.3 billion years ago

Elucidating the nature of obliterated ancient crust by studying the geochemistry of detrital zircons in the 3.6-3.2 Ga Barberton greenstone belt, South Africa

Destabilization of long‐lived hadean Protocrust and the onset of pervasive hydrous melting at 3.8 Ga

Detrital zircon provenance of the Archean Moodies Group, Barberton Greenstone Belt, South Africa and Eswatini

Windblown Hadean zircons derived by erosion of impact-generated 3.3 Ga uplifts, Barberton Greenstone Belt, South Africa

Heterogeneous Hadean crust with ambient mantle affinity recorded in detrital zircons of the Green Sandstone Bed, South Africa

Destabilization of long-lived Hadean protocrust and onset of pervasive hydrous melting at 3.8 Ga recorded in detrital zircons of the Green Sandstone Bed, South Africa

Gary R. Byerly Information

University

Position

Emeritus Professor of Geology

Citations(all)

7619

Citations(since 2020)

1717

Cited By

6893

hIndex(all)

47

hIndex(since 2020)

24

i10Index(all)

92

i10Index(since 2020)

50

Email

University Profile Page

Louisiana State University

Google Scholar

View Google Scholar Profile

Gary R. Byerly Skills & Research Interests

early earth

greenstone belts

giant impacts

komatiite

basalt

Top articles of Gary R. Byerly

Title

Journal

Author(s)

Publication Date

Trace elements in zircon record changing magmatic processes and the multi-stage build-up of Archean proto-continental crust

Geochimica et Cosmochimica Acta

Nadja Drabon

Heather M Kirkpatrick

Gary R Byerly

Joseph L Wooden

2024/5/15

Light oxygen isotopic composition in deep mantle reveals oceanic crust subduction before 3.3 billion years ago

Communications Earth & Environment

Dongjian Ouyang

Huiming Bao

Gary R Byerly

Qiuli Li

2024/1/12

Elucidating the nature of obliterated ancient crust by studying the geochemistry of detrital zircons in the 3.6-3.2 Ga Barberton greenstone belt, South Africa

AGU Fall Meeting Abstracts

Nadja Drabon

Gary R Byerly

Joseph L Wooden

2022/12

Destabilization of long‐lived hadean Protocrust and the onset of pervasive hydrous melting at 3.8 Ga

AGU Advances

Nadja Drabon

Benjamin L Byerly

Gary R Byerly

Joseph L Wooden

Michael Wiedenbeck

...

2022/4

Detrital zircon provenance of the Archean Moodies Group, Barberton Greenstone Belt, South Africa and Eswatini

American Journal of Science

Christoph Heubeck

Nadja Drabon

Gary Byerly

Isabelle Leisgang

Ulf Linnemann

...

2022/2/1

Windblown Hadean zircons derived by erosion of impact-generated 3.3 Ga uplifts, Barberton Greenstone Belt, South Africa

Precambrian Research

Donald R Lowe

Nadja Drabon

Gary R Byerly

Benjamin L Byerly

2021/5/1

Heterogeneous Hadean crust with ambient mantle affinity recorded in detrital zircons of the Green Sandstone Bed, South Africa

Proceedings of the National Academy of Sciences

Nadja Drabon

Benjamin L Byerly

Gary R Byerly

Joseph L Wooden

C Brenhin Keller

...

2021/2/23

Destabilization of long-lived Hadean protocrust and onset of pervasive hydrous melting at 3.8 Ga recorded in detrital zircons of the Green Sandstone Bed, South Africa

AGU Fall Meeting Abstracts

Nadja Drabon

Benjamin L Byerly

Gary R Byerly

Joseph L Wooden

Michael Wiedenbeck

...

2020/12

The non-glacial and non-cratonic origin of an early Archean felsic volcaniclastic unit, Barberton Greenstone Belt, South Africa

Precambrian Research

Donald R Lowe

Gary R Byerly

2020/6/1

Ultramafic rocks at the Isua supracrustal belt and East Pilbara Terrane are crustal cumulates, not slices of early mantle

EGU General Assembly Conference Abstracts

Jiawei Zuo

Alex Webb

Jason Harvey

Peter Haproff

Thomas Mueller

...

2020/5

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