In situ characterization of the high pressure – high temperature melting curve of platinum (original) (raw)

Image analysis of speckle patterns as a probe of melting transitions in laser-heated diamond anvil cell experiments

Ran Salem

The Review of scientific instruments, 2015

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Image analysis as an improved melting criterion in laser-heated diamond anvil cell

Ran Salem

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High-pressure melting curve of platinum from ab initio Z method

A. Rosengren

Physical Review B, 2012

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Melting of tantalum at high pressure determined by angle dispersive x-ray diffraction in a double-sided laser-heated diamond-anvil cell

Ho-kwang Mao

Journal of Physics: Condensed Matter, 2003

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Study of partial melting at high-pressure using in situ X-ray diffraction

G. Morard

High Pressure Research, 2006

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A Review of the Melting Curves of Transition Metals at High Pressures Using Static Compression Techniques

Paraskevas Parisiades

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Detection of melting by in-situ observation of spherical-drop formation in laser-heated diamond-anvil cells

Natalia Dubrovinskaia

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X-ray diffraction in the pulsed laser heated diamond anvil cell

Alexander Goncharov

Review of Scientific Instruments, 2010

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High pressure melting curve of osmium up to 35 GPa

meenakshi sunder

Journal of Applied Physics

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Laser surface-melting of metals studied by PAC

Gary S. Collins

Hyperfine Interactions, 1990

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Laser heated diamond cell system at the Advanced Photon Source for in situ x-ray measurements at high pressure and temperature

Yanbin Wang

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The resistive-heating characterization of laser heating system and LaB6 characterization of X-ray diffraction of beamline 12.2.2 at advanced light source

selva raju

Journal of Physics and Chemistry of Solids, 2010

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Laser heated diamond anvil cell facility for high temperature high pressure research: application to material synthesis and melting studies

meenakshi sunder

Indian Journal of Physics, 2018

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The resistive-heating characterization of laser heating system and LaB< sub> 6 characterization of X-ray diffraction of beamline 12.2. 2 at advanced light source

Simon Clark

2010

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A diamond anvil cell with resistive heating for high pressure and high temperature x-ray diffraction and absorption studies

Sebastien Pasternak

Review of Scientific Instruments, 2008

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Laser heating in diamond anvil cells: Developments in pulsed and continuous techniques

Javier A Montoya

Journal of synchrotron …, 2009

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Diamond: Molten under pressure

Isaac Silvera

Nature Physics, 2010

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Microstructural Morphological Changes in Laser Irradiated Platinum

Anwar Latif

Journal of Modern Physics, 2011

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Laser-heated diamond anvil cell at the advanced light source beamline 12.2. 2

Alastair MacDowell

2007

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Strength of polycrystalline coarse-grained platinum to 330 GPa and of nanocrystalline platinum to 70 GPa from high-pressure x-ray diffraction data

Hanns-peter Liermann

Journal of Applied Physics, 2008

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A diamond gasket for the laser-heated diamond anvil cell

Ho-kwang Mao

Review of Scientific Instruments, 2001

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Melting temperature of diamond at ultrahigh pressure

David Bradley

Nature Physics, 2009

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Portable laser-heating system for diamond anvil cells

Natalia Dubrovinskaia

Journal of Synchrotron Radiation, 2009

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Combined resistive and laser heating technique for in situ radial X-ray diffraction in the diamond anvil cell at high pressure and temperature

Alastair MacDowell

Review of Scientific Instruments, 2013

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Investigation of mechanical and structural characteristics of platinum and palladium at high temperatures

vesna krstic

Revista de Metalurgia, 2015

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High Pressure Melting of Lithium

shanti deemyad

Physical Review Letters, 2012

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High-pressure melting curve of helium and neon: Deviations from corresponding states theory

Goutam Dev Mukherjee

Physical Review B, 2010

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Elastic, thermal and structural properties of platinum

Shigeaki Ono

Journal of Physics and Chemistry of Solids, 2011

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