Experimental Determination of the Resistivity Limits for Platinum and Iron Metal Gases Using an Exploding Wire

Transport properties of metals in solid, liquid, gas or plasma phases are an open area of research, both theoretically and experimentally. Concretely, there are no measurements available for the resistivity of gas phase of metals. In the latter case, the use of exploding wire systems allows one to r...

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Main Authors: Luis Bilbao, Gonzalo Rodríguez Prieto
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/10/4/424
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author Luis Bilbao
Gonzalo Rodríguez Prieto
author_facet Luis Bilbao
Gonzalo Rodríguez Prieto
author_sort Luis Bilbao
collection DOAJ
description Transport properties of metals in solid, liquid, gas or plasma phases are an open area of research, both theoretically and experimentally. Concretely, there are no measurements available for the resistivity of gas phase of metals. In the latter case, the use of exploding wire systems allows one to reach states from solid to plasma that are not accessible with other experimental methods. In this work, following a measurement method previously used with copper, experimental resistivity limits of iron and platinum metal gases are presented based on measurements performed on the metal gas expansion phase.
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spelling doaj.art-49912a186394426e8d604be9ddf2f0532022-12-22T00:42:00ZengMDPI AGMetals2075-47012020-03-0110442410.3390/met10040424met10040424Experimental Determination of the Resistivity Limits for Platinum and Iron Metal Gases Using an Exploding WireLuis Bilbao0Gonzalo Rodríguez Prieto1Departamento de Física, Facultad de Ciencias Exactas, Universidad de Buenos Aires, 1053 Buenos Aires, Argentina, CONICET, Infip, Buenos Aires, ArgentinaUniversity of Castilla-la Mancha, INEI C. Real, 37001 SpainTransport properties of metals in solid, liquid, gas or plasma phases are an open area of research, both theoretically and experimentally. Concretely, there are no measurements available for the resistivity of gas phase of metals. In the latter case, the use of exploding wire systems allows one to reach states from solid to plasma that are not accessible with other experimental methods. In this work, following a measurement method previously used with copper, experimental resistivity limits of iron and platinum metal gases are presented based on measurements performed on the metal gas expansion phase.https://www.mdpi.com/2075-4701/10/4/424exploding wireironplatinummetal gas resistivitytransport properties
spellingShingle Luis Bilbao
Gonzalo Rodríguez Prieto
Experimental Determination of the Resistivity Limits for Platinum and Iron Metal Gases Using an Exploding Wire
Metals
exploding wire
iron
platinum
metal gas resistivity
transport properties
title Experimental Determination of the Resistivity Limits for Platinum and Iron Metal Gases Using an Exploding Wire
title_full Experimental Determination of the Resistivity Limits for Platinum and Iron Metal Gases Using an Exploding Wire
title_fullStr Experimental Determination of the Resistivity Limits for Platinum and Iron Metal Gases Using an Exploding Wire
title_full_unstemmed Experimental Determination of the Resistivity Limits for Platinum and Iron Metal Gases Using an Exploding Wire
title_short Experimental Determination of the Resistivity Limits for Platinum and Iron Metal Gases Using an Exploding Wire
title_sort experimental determination of the resistivity limits for platinum and iron metal gases using an exploding wire
topic exploding wire
iron
platinum
metal gas resistivity
transport properties
url https://www.mdpi.com/2075-4701/10/4/424
work_keys_str_mv AT luisbilbao experimentaldeterminationoftheresistivitylimitsforplatinumandironmetalgasesusinganexplodingwire
AT gonzalorodriguezprieto experimentaldeterminationoftheresistivitylimitsforplatinumandironmetalgasesusinganexplodingwire