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The Antler orogeny was a tectonic event that began in the early Late Devonian with widespread effects continuing into the Mississippian and early Pennsylvanian. Most of the evidence for this event is in
Nevada Nevada ( ; ) is a U.S. state, state in the Western United States, Western region of the United States. It is bordered by Oregon to the northwest, Idaho to the northeast, California to the west, Arizona to the southeast, and Utah to the east. N ...
but the limits of its reach are unknown. A great volume of conglomeratic deposits of mainly Mississippian age in Nevada and adjacent areas testifies to the existence of an important tectonic event, and implies nearby areas of uplift and erosion, but the nature and cause of that event are uncertain and in dispute. Although it is known as an orogeny (mountain building event), some of the classic features of orogeny as commonly defined such as
metamorphism Metamorphism is the transformation of existing rock (the protolith) to rock with a different mineral composition or texture. Metamorphism takes place at temperatures in excess of , and often also at elevated pressure or in the presence of ch ...
, and granitic intrusives have not been linked to it. In spite of this, the event is universally designated as an orogeny and that practice is continued here. This article outlines what is known and unknown about the Antler orogeny and describes three current theories regarding its nature and origin.


Two facies of lower Paleozoic rocks

There are two principal
facies In geology, a facies ( , ; same pronunciation and spelling in the plural) is a body of rock with specified characteristics, which can be any observable attribute of rocks (such as their overall appearance, composition, or condition of formatio ...
of lower
Paleozoic The Paleozoic (or Palaeozoic) Era is the earliest of three geologic eras of the Phanerozoic Eon. The name ''Paleozoic'' ( ;) was coined by the British geologist Adam Sedgwick in 1838 by combining the Greek words ''palaiós'' (, "old") and ...
rocks in Nevada. In the eastern part of the state, a north-trending fossil-rich carbonate shelf of Ordovician to
Devonian The Devonian ( ) is a geologic period and system of the Paleozoic era, spanning 60.3 million years from the end of the Silurian, million years ago (Mya), to the beginning of the Carboniferous, Mya. It is named after Devon, England, wh ...
age, termed the carbonate or eastern assemblage, gives way westward to a contemporaneous expanse of siliceous sedimentary deposits and minor
mafic A mafic mineral or rock is a silicate mineral or igneous rock rich in magnesium and iron. Most mafic minerals are dark in color, and common rock-forming mafic minerals include olivine, pyroxene, amphibole, and biotite. Common mafic rocks in ...
volcanic rocks termed the siliceous or western assemblage. Crafford assigned these two facies respectively to the shelf domain and the basin domain. The dark color of the western assemblage, the scarcity of carbonate rocks, and a near absence of shelly fossils, are generally interpreted to indicate a relatively deep-water depositional environment. The western assemblage also differs from the eastern assemblage in its components of bedded
chert Chert () is a hard, fine-grained sedimentary rock composed of microcrystalline or cryptocrystalline quartz, the mineral form of silicon dioxide (SiO2). Chert is characteristically of biological origin, but may also occur inorganically as a ...
,
basalt Basalt (; ) is an aphanitic (fine-grained) extrusive igneous rock formed from the rapid cooling of low-viscosity lava rich in magnesium and iron (mafic lava) exposed at or very near the surface of a rocky planet or moon. More than 90 ...
bodies,
barite Baryte, barite or barytes ( or ) is a mineral consisting of barium sulfate ( Ba S O4). Baryte is generally white or colorless, and is the main source of the element barium. The ''baryte group'' consists of baryte, celestine (strontium sulfate), ...
deposits, and sulfide deposits. The nature of the two assemblages and their relation to one another are critical for an understanding of the Antler orogeny. The western facies assemblage is generally thought to be displaced from the west and to constitute the upper plate of an extensive
thrust fault A thrust fault is a break in the Earth's crust, across which older rocks are pushed above younger rocks. Thrust geometry and nomenclature Reverse faults A thrust fault is a type of reverse fault that has a dip of 45 degrees or less. If ...
—the Roberts Mountains thrust. The eastern facies assemblage is thought to extend westward under the thrust plate. The basis for this belief is that the western facies domain is dotted with anomalous blocky exposures of contemporaneous eastern facies shelf strata, some of mountain size, surrounded by exposures of western facies rocks. These have been interpreted almost universally as exposures of the carbonate shelf facies in
windows Windows is a group of several proprietary graphical operating system families developed and marketed by Microsoft. Each family caters to a certain sector of the computing industry. For example, Windows NT for consumers, Windows Server for se ...
of the Roberts Mountains thrust sheet, and to prove the existence of that thrust sheet.


Plate tectonics

From an early date, geologists have struggled to explain the presence in Nevada and adjacent areas of the Antler orogenic deposits without achieving a consensus. The advent of
plate tectonic Plate tectonics (from the la, label=Late Latin, tectonicus, from the grc, τεκτονικός, lit=pertaining to building) is the generally accepted scientific theory that considers the Earth's lithosphere to comprise a number of large te ...
theory provided a variety of possible mechanisms by which the Roberts Mountains thrust and the orogenic deposits could be explained, but none of them has been universally accepted. As outlined in the following paragraphs, plate motion along the western margin of the North American continent in the Late Devonian has been offered as the cause of the orogeny and three varieties of it have been tried—east dipping
subduction Subduction is a geological process in which the oceanic lithosphere is recycled into the Earth's mantle at convergent boundaries. Where the oceanic lithosphere of a tectonic plate converges with the less dense lithosphere of a second plate, ...
, west-dipping subduction, and
strike-slip In geology, a fault is a planar fracture or discontinuity in a volume of rock across which there has been significant displacement as a result of rock-mass movements. Large faults within Earth's crust result from the action of plate tectonic ...
motion. None of them is without serious problems and the nature and driving force of the orogeny remain uncertain.


Present knowledge

This much is known concerning the Antler orogeny: # Great volumes of clastic rocks were deposited in Nevada and surrounding areas on both the western and eastern facies assemblages; # Almost all of the orogenic deposits range in age from Late Devonian to mid-Pennsylvanian; some may be of Middle Devonian age; # The orogenic deposits are in a generally disconformable relation to the underlying strata; # Some areas within the western facies domain were first elevated and eroded, then were depressed and received a blanket of conglomeratic sediments; # Some clasts in these deposits were derived from areas outside the western facies domain but the bulk were derived from the western facies assemblage; # Blocky exposures of eastern facies carbonate rocks, of
Cambrian The Cambrian Period ( ; sometimes symbolized Ꞓ) was the first geological period of the Paleozoic Era, and of the Phanerozoic Eon. The Cambrian lasted 53.4 million years from the end of the preceding Ediacaran Period 538.8 million years ago ...
to Devonian age are scattered across the western facies domain; # No metamorphic rocks, volcanic arcs, or granitic intrusives associated with the Antler orogeny have been reported; # The age of the earliest-known orogenic deposits coincides approximately with the age of the Alamo impact event of early Late Devonian age —a possibly significant coincidence.


Origin of terminology

Based on stratigraphic relations near Antler Peak, of the Battle Mountains, Roberts introduced the term Antler orogeny in an abstract as follows: ''The earliest orogeny, here named the Antler orogeny ... took place during Mississippian (?) and early Pennsylvanian time.'' That abstract was followed in 1951 by his geologic map of the Antler Peak quadrangle in the text of which he described the Antler orogeny in detail and somewhat refined its age span: ''During the Antler orogeny, formations in Battle Mountain ranging in age from Ordovician to Mississippian (?) were complexly folded and faulted. As these rocks are unconformably overlain by the Battle Formation of Early Pennsylvanian (Des Moines) age, the orogeny probably took place during the Late Mississippian. The orogeny may have continued into Early Pennsylvanian, however, for the coarse conglomerates of the Battle Formation indicate derivation from a rugged highland area.'' In a subsequent influential paper, Roberts and others adjusted the age of the Antler orogeny as follows: ''This belt is now known to have been the locus of intense folding and faulting during the Antler orogeny in latest Devonian or Early Mississippian time ...'' In the same paper the authors established a connection between the Antler orogeny and a major thrust fault as follows: ''A belt along the 116°-118° meridians—the Antler orogenic belt—was the locus of intense folding and faulting that culminated in the Roberts Mountains thrust fault...'' That age range and connection with the Roberts Mountains thrust were confirmed in a widely quoted paper by Silberling and Roberts: ''During the Late Devonian or Early Mississippian ... the Antler orogenic belt was intensely folded and faulted, and during Mississippian time the Roberts Mountains thrust sheet was emplaced.'' The effect of this revision in the age of the orogeny was to exclude the evidence in the Antler Peak quadrangle cited above for a Late Mississippian to mid-Pennsylvanian age, on which the concept of the Antler orogeny originally had been based, and to establish the conventional age of that orogeny as Late Devonian to Early Mississippian. The original date of the Roberts Mountains thrust fault was post-Paleozoic. However, with publication of the 1958 and 1962 papers cited above, the authors revised the age of the Roberts Mountains thrust to coincide with the Late Devonian to Mississippian Antler orogeny and to extend the name far beyond the Roberts Mountains.


Theories

Over a period of 22 years numerous reports relating the Antler orogeny and Roberts Mountains thrust to plate convergence were published in various journals, and because their basic tenets have been widely accepted, they are here termed the conventional theories. The earliest effort to relate plate tectonics specifically to the Antler orogeny was briefly outlined by E.M. Moores: ''A collision of this continental margin with a subduction zone dipping away from it in late Devonian-early Mississippian time ... resulted in deformation of the pre-existing continental marginal rocks in the Antler Orogeny.'' Two principal contrasting tectonic theories were published in greater detail between 1972 and 1992 as related below. One theory involved closure of a
back-arc basin A back-arc basin is a type of geologic basin, found at some convergent plate boundaries. Presently all back-arc basins are submarine features associated with island arcs and subduction zones, with many found in the western Pacific Ocean. Most o ...
between the western continental margin and a volcanic arc over an east-dipping subduction zone. A second theory involved collision of the continent with an island arc above a west-dipping subduction zone. Both were based on the basic understanding that the western facies assemblage is composed of oceanic deposits and that it is underlain by an extensive thrust fault.


East-dipping subduction

Burchfiel and Davis presented the first detailed paper that explained the Antler orogeny and the Roberts Mountains thrust in terms of the subduction aspect of plate tectonics, stating: ''... the paleogeography of this part of the Cordilleran geosyncline probably consisted of an offshore island complex separated from the continental slope and shelf by a small ocean basin of behind-the-arc type. Initial regional deformation within the Cordilleran geosyncline—the Mid-Paleozoic Antler orogeny—was characterized by the eastward displacement (Roberts Mountains thrust) of eugeosynclinal units from within the small ocean basin over miogeosynclinal strata deposited on the continental shelf.'' Their now-outdated terms ''eugeosynclinal'' and ''miogeosynclinal'' refer respectively to the western facies and eastern facies domains. In that paper, Burchfiel and Davis set the parameters for future discussions of the nature and origins of the Antler orogeny and associated thrusts. Their basic concept of east-dipping subduction was reflected in modified form by others, including Miller and others.


West-dipping subduction

Dickinson and others argued for an opposing theory, that west-dipping subduction and volcanic arc-continent collision were the fundamental processes. They stated in the abstract of their 1983 report that ''The Roberts Mountains
allochthon upright=1.6, Schematic overview of a thrust system. The hanging wall block is (when it has reasonable proportions) called a nappe. If an erosional hole is created in the nappe that is called a window (geology)">window. A klippe is a solitary ou ...
was probably the subduction complex or
accretionary prism An accretionary wedge or accretionary prism forms from sediments accreted onto the non-subducting tectonic plate at a convergent plate boundary. Most of the material in the accretionary wedge consists of marine sediments scraped off from the do ...
of an intra-oceanic Antler arc-trench system that faced east (west-dipping), with subduction downward to the west. Its emplacement by thrusting over the Cordilleran miogeoclinal terrane of lower Paleozoic strata occurred in earliest Mississippian time during an inferred arc-continent collision that began in latest Devonian time and is termed the Antler orogeny.'' Their term "miogeoclinal terrane" referred to the eastern facies assemblage. This was followed by papers offering modified versions of the same theory. Other papers supplied definitive reviews and confirmed the Antler orogeny as a result of plate convergence.


Strike-slip faulting

As an alternative to the two conventional theories described above, Ketner proposed that ''(1) left-lateral strike-slip faulting along the western margin of the North American continent, rather than plate convergence, was the engine of Paleozoic tectonics in the region; (2) the Roberts Mountains allochthon, as such, does not exist, and the Ordovician to Devonian western facies assemblage was deposited essentially in situ; and (3) blocks of shelf carbonate rocks earlier thought to be exposures of the shelf in windows of the Roberts Mountains allochthon are slide blocks from the carbonate shelf. The slide blocks probably were dislodged by the Alamo impact event of Late Devonian age.'' In this scheme, the deep-water aspects of the western facies assemblage are due to sea-level rise in the Cambrian rather than displacement from an ocean basin. The sedimentary effects of the Antler orogeny are well known and well described in many published reports, but the exact nature of that event and the driving force remain unsettled. Among the unanswered questions are these: what aspect of plate tectonics was involved; what effect did the Alamo impact event have; why did marine basins appear in the area of general uplift; why did the western facies assemblage, and not the eastern assemblage, include bedded chert, basaltic bodies, barite deposits, and sulfide deposits.


References

{{reflist, 33em, refs= {{Cite journal, last1=Burchfiel, first1=B.C., last2=Davis, first2=G.A., year=1972, title=Structural framework and evolution of the southern part of the Cordilleran orogen, western United States, journal=American Journal of Science, volume=272, pages=97–118, doi=10.2475/ajs.272.2.97, issue=2, bibcode=1972AmJS..272...97B {{Cite book, last1=Burchfiel, first1=B.C., last2=Cowan, first2=D.S., first3=G.A., year=1992, chapter=Tectonic overview of the Cordilleran orogen in the western United States, editor1-last=Burchfiel, editor1-first=B.C., editor2-last=Lipman, editor2-first=P.W., editor3-last=Zoback, title=The Cordilleran orogen—Conterminous U.S., location=Boulder, Colo., publisher=Geological Society of America, series=Decade of North American Geology, The Geology of North America, volume=G-3, pages=407–480, last3=Davis, editor3-first=M.L., isbn=978-0813752174 {{cite journal, last=Crafford, first=A.E.J., title=Paleozoic tectonic domains of Nevada: An interpretive discussion to accompany the geologic map of Nevada, journal=Geosphere, date=February 2008, volume=4, pages=260–291, doi=10.1130/GES00108.1, issue=1, url=http://geosphere.geoscienceworld.org/content/4/1/260.abstract, bibcode=2008Geosp...4..260J, doi-access=free {{cite book, last=Dickinson, first=W.R., title=Paleozoic plate tectonics and the evolution of the Cordilleran continental margin, editor1-first=J.H, editor2-last=Stevens, editor2-first=C.H., publisher=Pacific Section of the Society of Economic Paleontologists and Mineralogists, series=Pacific Coast Paleogeography Symposium, volume=1, date=April 22, 1977, pages=137–155, editor1-last=Stewart, work=Paleozoic paleogeography of the western United States, url=http://archives.datapages.com/data/pac_sepm/019/019001/pdfs/137.htm {{cite journal, last1=Dickinson, first1=W.R., last2=Harbaugh, first2=D.W., last3=Saller, first4=A.H., last5=Snyder, first5=P.L., last6=Snyder, first6=W.S., year=1983, title=Detrital modes of upper Paleozoic sandstones derived from Antler orogen in Nevada—Implications for nature of Antler orogeny, journal=American Journal of Science, volume=283, pages=481–509, doi=10.2475/ajs.283.6.481, first3=A. H., last4=Heller, issue=6, bibcode=1983AmJS..283..481D {{cite journal, last1=Harbaugh, first1=D.W., last2=Dickinson, first2=W.R., year=1981, title=Depositional facies of Mississippian clastics, Antler foreland basin, central Diamond Mountains, Nevada, journal=Journal of Sedimentary Petrology, volume=51, pages=1223–1234, issue=4, url=http://jsedres.geoscienceworld.org/content/51/4/1223.short {{cite journal, last1=Johnson, first1=J.G., last2=Pendergast, first2=A., year=1981, title=Timing and mode of emplacement of the Roberts Mountains allochthon, Antler orogeny, journal=Geological Society of America Bulletin, volume=92, pages=648–658, issue=1, bibcode=1981GSAB...92..648J, doi=10.1130/0016-7606(1981)92<648:TAMOEO>2.0.CO;2 {{cite book, last=Ketner, first=K.B., year=2012, title=An alternative hypothesis for the mid-Paleozoic Antler orogeny in Nevada, publisher=U.S. Geological Survey, id=Professional Paper 1790, url=http://pubs.usgs.gov/pp/1790/PP1790_508.pdf {{cite book, last=Ketner, first=K.B., year=2013, title=Stratigraphy of lower to middle Paleozoic rocks of northern Nevada and the Antler orogeny, publisher=U.S. Geological Survey, id=Professional Paper 1799, url=http://pubs.usgs.gov/pp/1799/ {{Cite book, last=Lochman-Balk, first=Christina, year=1972, chapter=Cambrian System, editor-last=Mallory, editor-first=W.W., publisher=Rocky Mountain Association of Geologists, pages=60–75, title=Geologic atlas of the Rocky Mountain region, oclc=123201439 {{cite journal, last1=Merrian, first1=C.W., last2=Anderson, first2=C.A., year=1942, title=Reconnaissance survey of the Roberts Mountains, Nevada, journal=Geological Society of America Bulletin, volume=53, issue=12_1, pages=1675–1726, doi=10.1130/gsab-53-1675 , url=http://gsabulletin.gsapubs.org/content/53/12_Part_1/1675.short, bibcode = 1942GSAB...53.1675M {{cite journal, last1=Miller, first1=E.L., last2=Holdsworth, first2=B.K., last3=Whiteford, first3=W.B., last4=Rodgers, first4=D., year=1984, title=Stratigraphy and structure of the Schoonover sequence, northeastern Nevada—Implications for Paleozoic plate-margin tectonics, journal=Geological Society of America Bulletin, volume=95, pages=1063–1076, bibcode=1984GSAB...95.1063M, doi=10.1130/0016-7606(1984)95<1063:SASOTS>2.0.CO;2, issue=9 {{cite book, last1=Miller, first1=E.L., last2=Miller, first2=M.M., last3=Stevens, first3=C.H., last4=Wfirst4=J.E., last5=Madrid, first5=Raul, year=1992, chapter=Late Paleozoic paleogeographic and tectonic evolution of the western U.S. Cordillera, editor1-last=Burchfiel, editor1-first=B.C., editor2-last=Lipman, editor2-first=P.W., editor3-last=Zoback, editor3-first=M.L., title=The Cordilaeran orogen: Conterminous U.S., publisher=Geological Society of America, series=The Geology of North America, volume=G-3pages=57-106, location=Boulder, Colorado {{cite journal, last=Moores , first=E.M. , year=1970 , title=Ultramafics and orogeny, with models of the US Cordillera and the Tethys , journal=Nature , volume=228 , pages=837–842 , bibcode=1970Natur.228..837M , doi=10.1038/228837a0 , pmid=16058720 , issue=5274 , s2cid=4243830 , url=http://www.ruf.rice.edu/~ctlee/cali/MooresOphioliteCordilleraNature.pdf , url-status=bot: unknown , archiveurl=https://web.archive.org/web/20140308215434/http://www.ruf.rice.edu/~ctlee/cali/MooresOphioliteCordilleraNature.pdf , archivedate=2014-03-08 {{Cite journal, last=Nolan, year=1928, title=A late Paleozoic positive area in Nevada, journal=American Journal of Science, series= 5th, volume=16, pages=153–161, first=T.B, doi=10.2475/ajs.s5-16.92.153, issue=92, bibcode=1928AmJS...16..153N {{cite book, last1=Neuendorf, first1=K.K.E., last2=Mehl, first2=J.P. Jr., last3=Jackson, first3=J.A., year=2005, title=Glossary of geology, publisher=American Geological Institute, page=457, edition=Fifth, url=https://books.google.com/books?id=SfnSesBc-RgC&pg=PA457, isbn=9780922152766 {{cite book, last=Poole, first=F.G., year=1974, editor-last=Dickinson, editor-first=W.R., title=Tectonics and Sedimentation, publisher=Society of Economic Paleontologists and Mineralogists, id=Special Publication 22, pages=58–82, chapter=Flysch deposits of the foreland basin, western United States, chapter-url=http://www.muststayawake.com/SDAG/library/PooleUSGS-halftones.pdf {{cite book, last1=Poole, first1=F.G., last2=Stewart, first2=J.H., last3=Palmer, first3=A.R., last4=Sandberg, first4=C.A., last5=Madrid , first5=Raul , last6=Ross , first6=R.J., Jr. , last7=Hintze , first7=L.F. , last8=Miller , first8=M.M. , last9=Wrucke , first9=C.T., year=1992, chapter=Latest Precambrian to latest Devonian time—Development of a continental margin, editor1-last=Burchfiel, editor1-first=B.C., editor2-last=Lipman, editor2-first=P.W., editor3-last=Zoback, editor3-first=M.L., title=The Cordilleran Orogen—Conterminous U.S., location=Boulder, Colo., publisher=Geological Society of America, series=The Geology of North America, Decade of North American Geology, volume=G-3, pages=9–56 {{cite journal, last=Roberts, first=R.J., year=1949, title=Structure and stratigraphy of the Antler Peak quadrangle, north-central Nevada, (abstract), journal=Geological Society of America Bulletin, volume=60, page=1917, issue=12, part 2, doi=10.1130/0016-7606(1949)60 869:AOPPAT.0.CO;2, bibcode=1949GSAB...60.1869A {{cite map, publisher=Roberts, R.J., year=1951, title=Geology of the Antler Peak quadrangle , url=http://ngmdb.usgs.gov/Prodesc/proddesc_544.htm {{cite journal, last1=Roberts, first1=R.J., last2=Hotz, first2=P.E., last3=Gilluly, first3=James, last4=Ferguson, first4=H.G., year=1958, title=Paleozoic rocks of north-central Nevada, journal=AAPG Bulletin, volume=42, pages=2813–2857, doi=10.1306/0BDA5C21-16BD-11D7-8645000102C1865D {{Cite book, last1=Silberling, first1=N.J., last2=Roberts, first2=R.J., year=1962, title=Pre-Tertiary stratigraphy and structure of northwestern Nevada, id=Geological Society of America Special Paper 72, url=https://books.google.com/books?id=8k0cujbsx44C, isbn=9780813720722 {{cite journal, last=Sloss, first=S.L., year=1963, title=Sequences in the cratonic interior of North America, journal=Geological Society of America Bulletin, volume=74, pages=93–114, doi=10.1130/0016-7606(1963)74 3:SITCIO.0.CO;2, issue=2, bibcode=1963GSAB...74...93S {{Cite book, last1=Speed, first1=R.C., last2=Elison, first2=M.W., last3=Heck, first3=F.R., year=1988, chapter=Phanerozoic tectonic evolution of the Great Basin, editor-last=Ernst, editor-first=W.G., title=Metamorphism and crustal evolution of the western United States, series=Rubey, volume=VII, location=Englewood Cliffs, N.J., publisher=Prentice-Hall, pages= 572–605 {{cite journal, last1=Speed, first1=R.C., last2=Sleep, first2=N.H, year= 1982, title=Antler orogeny and foreland basin—A model, journal=Geological Society of America Bulletin, volume=93, pages=815–828, doi=10.1130/0016-7606(1982)93<815:AOAFBA>2.0.CO;2, issue=9, bibcode=1982GSAB...93..815S {{Cite book, last=Stewart, first=J.H., year=1980, title=Geology of Nevada, location=Reno, Nev., publisher=Nevada Bureau of Mines and Geology, id=Special Publication no. 4, url=https://books.google.com/books?id=QJkwT30_P6cC Orogenies of North America Geology of Nevada Geology of Utah Devonian orogenies Carboniferous orogenies Late Devonian events Mississippian (geology) Pennsylvanian (geology) Carboniferous geology of Nevada Carboniferous geology of Utah Devonian geology of Nevada Devonian geology of Utah Mississippian United States