World's Best Scientists 2026 revealed!

D-Index & Metrics

Earth Science

D-Index
57
Citations
13099
World Ranking
2249
National Ranking
64

Overview

What is he best known for?

The fields of study he is best known for:

  • Igneous rock
  • Basalt
  • Metamorphism

Joerg Hermann mostly deals with Geochemistry, Zircon, Eclogite, Partial melting and Metamorphism. He focuses mostly in the field of Geochemistry, narrowing it down to topics relating to Subduction and, in certain cases, Plate tectonics. As a part of the same scientific family, Joerg Hermann mostly works in the field of Zircon, focusing on Metamorphic rock and, on occasion, Biotite.

His Eclogite research incorporates themes from Oceanic crust and Ultramafic rock. The concepts of his Partial melting study are interwoven with issues in Coesite, Adakite, Phengite and Continental crust. His biological study deals with issues like Analytical chemistry, which deal with fields such as Mineralogy.

His most cited work include:

  • Zircon formation during fluid circulation in eclogites (Monviso, Western Alps): implications for Zr and Hf budget in subduction zones (491 citations)
  • Diffusion of 40Ar in muscovite (415 citations)
  • Exhumation as fast as subduction (409 citations)

What are the main themes of his work throughout his whole career to date?

Joerg Hermann mainly investigates Geochemistry, Subduction, Zircon, Metamorphism and Eclogite. His study in Metamorphic rock, Partial melting, Trace element, Continental crust and Metasomatism is carried out as part of his studies in Geochemistry. Joerg Hermann works mostly in the field of Subduction, limiting it down to topics relating to Mantle and, in certain cases, Basalt, as a part of the same area of interest.

He combines subjects such as Gneiss, Mineralogy, Igneous rock and Geochronology with his study of Zircon. His research in Metamorphism intersects with topics in Mafic and Ultramafic rock. His work on Omphacite is typically connected to Metamorphic facies as part of general Eclogite study, connecting several disciplines of science.

He most often published in these fields:

  • Geochemistry (80.00%)
  • Subduction (23.64%)
  • Zircon (25.45%)

What were the highlights of his more recent work (between 2015-2021)?

  • Geochemistry (80.00%)
  • Metamorphic rock (20.91%)
  • Zircon (25.45%)

In recent papers he was focusing on the following fields of study:

Joerg Hermann spends much of his time researching Geochemistry, Metamorphic rock, Zircon, Phengite and Eclogite. Specifically, his work in Geochemistry is concerned with the study of Massif. His Metamorphic rock research is multidisciplinary, incorporating perspectives in Metamorphism and Isochron.

His Metamorphism study incorporates themes from Primitive mantle, Perovskite, Mafic and Ultramafic rock. His Zircon study combines topics from a wide range of disciplines, such as Coesite, Anatexis, Partial melting and Gneiss. His Eclogite research is multidisciplinary, relying on both Clinozoisite, Earth science and Oceanic crust.

Between 2015 and 2021, his most popular works were:

  • Melting History of an Ultrahigh-pressure Paragneiss Revealed by Multiphase Solid Inclusions in Garnet, Kokchetav Massif, Kazakhstan (25 citations)
  • Melting History of an Ultrahigh-pressure Paragneiss Revealed by Multiphase Solid Inclusions in Garnet, Kokchetav Massif, Kazakhstan (25 citations)
  • The responses of the four main substitution mechanisms of H in olivine to H 2 O activity at 1050 °C and 3 GPa (23 citations)

In his most recent research, the most cited papers focused on:

  • Igneous rock
  • Basalt
  • Quartz

His scientific interests lie mostly in Zircon, Phengite, Geochemistry, Anatexis and Restite. His study in Zircon is interdisciplinary in nature, drawing from both Metamorphism, Coesite, Gneiss and Continental crust. His Phengite study often links to related topics such as Metamorphic rock.

His Anatexis research incorporates elements of Xenolith, Lile and Melt inclusions.

Best Publications

  • Zircon formation during fluid circulation in eclogites (Monviso, Western Alps): implications for Zr and Hf budget in subduction zones

    Daniela Rubatto;Joerg Hermann

  • Diffusion of 40Ar in muscovite

    T. Mark Harrison;T. Mark Harrison;Julien Célérier;Amos B. Aikman;Joerg Hermann

  • Exhumation as fast as subduction

    Daniela Rubatto;Joerg Hermann

  • Experimental zircon/melt and zircon/garnet trace element partitioning and implications for the geochronology of crustal rocks

    Daniela Rubatto;Joerg Hermann

  • Sediment Melts at Sub-arc Depths: an Experimental Study

    Joerg Hermann;Carl J. Spandler

  • Partial melting of lower crust at 10–15 kbar: constraints on adakite and TTG formation

    Qing Qian;Qing Qian;Joerg Hermann

  • Accessory phase control on the trace element signature of sediment melts in subduction zones

    Joerg Hermann;Daniela Rubatto

  • Allanite: thorium and light rare earth element carrier in subducted crust

    Joerg Hermann

  • Relating zircon and monazite domains to garnet growth zones: age and duration of granulite facies metamorphism in the Val Malenco lower crust

    Joerg Hermann;Daniela Rubatto

  • Redistribution of trace elements during prograde metamorphism from lawsonite blueschist to eclogite facies; implications for deep subduction-zone processes

    Carl Spandler;Joerg Hermann;Richard J Arculus;John M Mavrogenes

  • Experimental study of monazite/melt partitioning with implications for the REE, Th and U geochemistry of crustal rocks

    Aleksandr S. Stepanov;Joerg Hermann;Daniela Rubatto;Robert P. Rapp

  • Geochemistry of continental subduction-zone fluids

    Yong-Fei Zheng;Joerg Hermann

  • The importance of serpentinite mylonites for subduction and exhumation of oceanic crust

    Joerg Hermann;Othmar Muntener;Marco Scambelluri

  • Zircon Behaviour in Deeply Subducted Rocks

    Daniela Rubatto;Joerg Hermann

  • Experimental constraints on phase relations in subducted continental crust

    Joerg Hermann

  • Experimental constraints on element mobility from subducted sediments using high-P synthetic fluid/melt inclusions

    Carl Spandler;John Mavrogenes;Joerg Hermann

  • Protracted fluid-induced melting during Barrovian metamorphism in the Central Alps

    Daniela Rubatto;Joerg Hermann;Alfons Berger;Martin Engi

  • Ediacaran 2,500-km-long synchronous deep continental subduction in the West Gondwana Orogen

    Carlos Ganade de Araujo;Daniela Rubatto;Joerg Hermann;Umberto Cordani

  • Tschermak's substitution in antigorite and consequences for phase relations and water liberation in high-grade serpentinites

    José Alberto Padrón-Navarta;José Alberto Padrón-Navarta;Vicente López Sánchez-Vizcaíno;Joerg Hermann;James A.D. Connolly

  • The importance of talc and chlorite “hybrid” rocks for volatile recycling through subduction zones; evidence from the high-pressure subduction mélange of New Caledonia

    Carl Spandler;Joerg Hermann;Kevin Faure;John A. Mavrogenes

  • Experimentally determined stability of alkali amphibole in metasomatised dunite at sub-arc pressures

    Cassian Pirard;Cassian Pirard;Cassian Pirard;Joerg Hermann

Frequent Co-Authors

Carl Spandler
Carl Spandler University of Adelaide
Andrey V. Korsakov
Andrey V. Korsakov V.S. Sobolev Institute of Geology and Mineralogy
Richard J. Arculus
Richard J. Arculus Australian National University
José Alberto Padrón-Navarta
José Alberto Padrón-Navarta Spanish National Research Council
Othmar Müntener
Othmar Müntener University of Lausanne
Marco Scambelluri
Marco Scambelluri University of Genoa
Hugh St. C. O'Neill
Hugh St. C. O'Neill Monash University
Ian S. Buick
Ian S. Buick Stellenbosch University
T. Mark Harrison
T. Mark Harrison University of California, Los Angeles

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