2004•GSA TodayOpen access

Are plutons assembled over millions of years by amalgamation from small magma chambers?

Allen F. Glazner, John M. Bartley, Drew S. Coleman, Walt Gray, Ryan Z. Taylor

Open full text 710 citations

Abstract

Field and geochronologic evidence indicate that large and broadly homogeneous plutons can accumulate incrementally over millions of years.This contradicts the common assumption that plutons form from large, mobile bodies of magma.Incremental assembly is consistent with seismic results from active volcanic areas which rarely locate masses that contain more than 10% melt.At such a low melt fraction, a material is incapable of bulk flow as a liquid and perhaps should not even be termed magma.Volumes with higher melt fractions may be present in these areas if they are small, and this is consistent with geologic evidence for plutons growing in small increments.The large melt volumes required for eruption of large ignimbrites are rare and ephemeral, and links between these and emplacement of most plutons are open to doubt.We suggest that plutons may commonly form incrementally without ever existing as a large magma body.If so, then many widely accepted magma ascent and emplacement processes (e.g., diapirism and stoping) may be uncommon in nature, and many aspects of the petrochemical evolution of magmatic systems (e.g., in situ crystal fractionation and magma mixing) need to be reconsidered.

Open-access reader

About this research paper

What this paper is about

Field and geochronologic evidence indicate that large and broadly homogeneous plutons can accumulate incrementally over millions of years.This contradicts the common assumption that plutons form from large, mobile bodies of magma.Incremental assembly is consistent with seismic results from active volcanic areas which rarely locate masses that contain more than 10% melt.At such a low melt fraction, a material is incapable of bulk flow as a liquid and perhaps should not even be termed magma.Volumes with higher melt fractions may be present in these areas if they are small, and this is consistent with geologic evidence for plutons growing in small increments.The large melt volumes required for eruption of large ignimbrites are rare and ephemeral, and links between these and emplacement of most plutons are open to doubt.We suggest that plutons may commonly form incrementally without ever existing as a large magma body.If so, then many widely accepted magma ascent and emplacement processes (e.g., diapirism and stoping) may be uncommon in nature, and many aspects of the petrochemical evolution of magmatic systems (e.g., in situ crystal fractionation and magma mixing) need to be reconsidered.

Why it matters

OpenAlex reports 710 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Field and geochronologic evidence indicate that large and broadly homogeneous plutons can accumulate incrementally over millions of years.This contradicts the common assumption that plutons form from large, mobile bodies of magma.Incremental assembly is consistent with seismic results from active volcanic areas which rarely locate masses that contain more than 10% melt.At such a low melt fraction, a material is incapable of bulk flow as a liquid and perhaps should not even be termed magma.Volumes with higher melt fractions may be present in these areas if they are small, and this is consistent with geologic evidence for plutons growing in small increments.The large melt volumes required for eruption of large ignimbrites are rare and ephemeral, and links between these and emplacement of most plutons are open to doubt.We suggest that plutons may commonly form incrementally without ever existing as a large magma body.If so, then many widely accepted magma ascent and emplacement processes (e.g., diapirism and stoping) may be uncommon in nature, and many aspects of the petrochemical evolution of magmatic systems (e.g., in situ crystal fractionation and magma mixing) need to be reconsidered.

Key concepts: Pluton, Geology, Magma, Magma chamber, Caldera, Geochemistry, Volcano, Igneous differentiation

Related papers

Back to paper searchBrowse research topicsOriginal source
Are plutons assembled over millions of years by amalgamation from small magma chambers? — Research Paper | ScholarLens