Electron Reconfiguration and Enhanced Phonon Activation in the Superconducting State of a FeSe sub( 0.3)Te sub( 0.7) Single Crystal, as Evidenced by Mossbauer Spectroscopy
The Mossbauer spectra of a ... single crystal grown by the Bridgman method were analysed across the superconducting transition by considering the interplay between the structure and electron configuration of the transition metal. The magnetically determined superconducting critical temperature is TC...
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Veröffentlicht in: | Journal of the Physical Society of Japan 2015-01, Vol.84 (1), p.1-1 |
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creator | Greculeasa, Simona Miu, Lucica Badica, Petre Nie, Jiacai Tolea, Mugurel Kuncser, Victor |
description | The Mossbauer spectra of a ... single crystal grown by the Bridgman method were analysed across the superconducting transition by considering the interplay between the structure and electron configuration of the transition metal. The magnetically determined superconducting critical temperature is TC ~ 14 K. The 57Fe Mossbauer spectra collected in the temperature range from 5 to 200 K mainly have an asymmetric doublet pattern, which was conveniently fitted by the full Hamiltonian method. No effective magnetic moment ascribed to the superconducting phase was observed down to 5 K. The unusual behaviour observed below ~17 K for the chemical isomer shift and quadrupole splitting may be associated with an electron reconfiguration process intimately related to an unusual lattice distortion accompanying the superconducting transition. The decreasing trend of the total absorption spectral area and second-order Doppler shift during cooling the sample below the critical temperature, point to enhanced phonon activation in the superconducting state. (ProQuest: ... denotes formulae/symbols omitted.) |
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The magnetically determined superconducting critical temperature is TC ~ 14 K. The 57Fe Mossbauer spectra collected in the temperature range from 5 to 200 K mainly have an asymmetric doublet pattern, which was conveniently fitted by the full Hamiltonian method. No effective magnetic moment ascribed to the superconducting phase was observed down to 5 K. The unusual behaviour observed below ~17 K for the chemical isomer shift and quadrupole splitting may be associated with an electron reconfiguration process intimately related to an unusual lattice distortion accompanying the superconducting transition. The decreasing trend of the total absorption spectral area and second-order Doppler shift during cooling the sample below the critical temperature, point to enhanced phonon activation in the superconducting state. 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The magnetically determined superconducting critical temperature is TC ~ 14 K. The 57Fe Mossbauer spectra collected in the temperature range from 5 to 200 K mainly have an asymmetric doublet pattern, which was conveniently fitted by the full Hamiltonian method. No effective magnetic moment ascribed to the superconducting phase was observed down to 5 K. The unusual behaviour observed below ~17 K for the chemical isomer shift and quadrupole splitting may be associated with an electron reconfiguration process intimately related to an unusual lattice distortion accompanying the superconducting transition. The decreasing trend of the total absorption spectral area and second-order Doppler shift during cooling the sample below the critical temperature, point to enhanced phonon activation in the superconducting state. (ProQuest: ... denotes formulae/symbols omitted.)</description><subject>Activation</subject><subject>Critical temperature</subject><subject>Mossbauer effect</subject><subject>Mossbauer spectroscopy</subject><subject>Phonons</subject><subject>Single crystals</subject><subject>Spectra</subject><subject>Superconductivity</subject><issn>0031-9015</issn><issn>1347-4073</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2015</creationdate><recordtype>article</recordtype><recordid>eNqVjkFLxDAQhYO4YNX9D3PcBSvptiXsUZYuXgQxe1_SdLqNxKRmkoX-Jv-kZRXvnmbe-97w5oplRVmJvOKivGYZ52WRb3lR37BbonfON3WxqTL21VjUMXgHb6i9680pBRXNrJXroHGDcho7eB28m70nHc35BxsHcUCQacQwH3ZpRu4EMqqI4HtQsEeJQKldAX8s14e_XaxBzlGLsAsTRWUfQBE0Z9Phpaud4MUTtSphADle3iPtx-meLXplCZe_846t9s1h95yPwX8mpHj8MKTRWuXQJzoWgm9FJWrBy39EvwH47GNT</recordid><startdate>20150101</startdate><enddate>20150101</enddate><creator>Greculeasa, Simona</creator><creator>Miu, Lucica</creator><creator>Badica, Petre</creator><creator>Nie, Jiacai</creator><creator>Tolea, Mugurel</creator><creator>Kuncser, Victor</creator><scope>7U5</scope><scope>8FD</scope><scope>H8D</scope><scope>L7M</scope></search><sort><creationdate>20150101</creationdate><title>Electron Reconfiguration and Enhanced Phonon Activation in the Superconducting State of a FeSe sub( 0.3)Te sub( 0.7) Single Crystal, as Evidenced by Mossbauer Spectroscopy</title><author>Greculeasa, Simona ; Miu, Lucica ; Badica, Petre ; Nie, Jiacai ; Tolea, Mugurel ; Kuncser, Victor</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-proquest_miscellaneous_17097475703</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2015</creationdate><topic>Activation</topic><topic>Critical temperature</topic><topic>Mossbauer effect</topic><topic>Mossbauer spectroscopy</topic><topic>Phonons</topic><topic>Single crystals</topic><topic>Spectra</topic><topic>Superconductivity</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Greculeasa, Simona</creatorcontrib><creatorcontrib>Miu, Lucica</creatorcontrib><creatorcontrib>Badica, Petre</creatorcontrib><creatorcontrib>Nie, Jiacai</creatorcontrib><creatorcontrib>Tolea, Mugurel</creatorcontrib><creatorcontrib>Kuncser, Victor</creatorcontrib><collection>Solid State and Superconductivity Abstracts</collection><collection>Technology Research Database</collection><collection>Aerospace Database</collection><collection>Advanced Technologies Database with Aerospace</collection><jtitle>Journal of the Physical Society of Japan</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Greculeasa, Simona</au><au>Miu, Lucica</au><au>Badica, Petre</au><au>Nie, Jiacai</au><au>Tolea, Mugurel</au><au>Kuncser, Victor</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Electron Reconfiguration and Enhanced Phonon Activation in the Superconducting State of a FeSe sub( 0.3)Te sub( 0.7) Single Crystal, as Evidenced by Mossbauer Spectroscopy</atitle><jtitle>Journal of the Physical Society of Japan</jtitle><date>2015-01-01</date><risdate>2015</risdate><volume>84</volume><issue>1</issue><spage>1</spage><epage>1</epage><pages>1-1</pages><issn>0031-9015</issn><eissn>1347-4073</eissn><abstract>The Mossbauer spectra of a ... single crystal grown by the Bridgman method were analysed across the superconducting transition by considering the interplay between the structure and electron configuration of the transition metal. The magnetically determined superconducting critical temperature is TC ~ 14 K. The 57Fe Mossbauer spectra collected in the temperature range from 5 to 200 K mainly have an asymmetric doublet pattern, which was conveniently fitted by the full Hamiltonian method. No effective magnetic moment ascribed to the superconducting phase was observed down to 5 K. The unusual behaviour observed below ~17 K for the chemical isomer shift and quadrupole splitting may be associated with an electron reconfiguration process intimately related to an unusual lattice distortion accompanying the superconducting transition. The decreasing trend of the total absorption spectral area and second-order Doppler shift during cooling the sample below the critical temperature, point to enhanced phonon activation in the superconducting state. (ProQuest: ... denotes formulae/symbols omitted.)</abstract></addata></record> |
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subjects | Activation Critical temperature Mossbauer effect Mossbauer spectroscopy Phonons Single crystals Spectra Superconductivity |
title | Electron Reconfiguration and Enhanced Phonon Activation in the Superconducting State of a FeSe sub( 0.3)Te sub( 0.7) Single Crystal, as Evidenced by Mossbauer Spectroscopy |
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