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        <identifier>oai:www.ideals.illinois.edu:2142/19936</identifier>
        <datestamp>2023-07-10</datestamp>
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        <thesis xmlns="http://www.ndltd.org/standards/metadata/etdms/1.1/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:dc="http://purl.org/dc/elements/1.1/" xsi:schemaLocation="http://www.ndltd.org/standards/metadata/etdms/1.1/ http://www.ndltd.org/standards/metadata/etdms/1.1/etdms11.xsd http://purl.org/dc/elements/1.1/ http://www.ndltd.org/standards/metadata/etdms/1.1/etdmsdc.xsd">
          <dc:contributor>Slichter, C.P.</dc:contributor>
          <dc:creator>DeSoto, Stewart Martin</dc:creator>
          <dc:date>2011-05-07T12:23:27Z</dc:date>
          <dc:date>2011-05-07T12:23:27Z</dc:date>
          <dc:date>10000-01-01</dc:date>
          <dc:date>1995</dc:date>
          <dc:description>In this thesis we report $\sp1$H and $\sp{13}$C NMR measurements in the normal and superconducting states of the organic superconductor $\kappa$-(ET)$\sb2$Cu (N(CN)$\sb2$) Br (T$\sb{\rm c}$ = 11.6 K). These measurements include the temperature and magnetic field dependent lineshapes, Knight shifts, spin-spin relaxation rates and spin-lattice relaxation rates for the $\sp{-1}$H and $\sp{13}$C sites located in the organic ET molecules of $\kappa$-(ET)$\sb2$CU (N(CN)$\sb2$) Br for temperatures 2 K $$ 4.3 T). We studied the orientation dependence of this rapid relaxation and found that the extra relaxation disappeared when the magnetic field was oriented very close ($\le3\sp\circ$) to the superconducting layers. This was taken to be strong evidence that fluxoid motion caused the rapid relaxation and that intrinsic pinning of the fluxoids occurred for parallel magnetic fields.</dc:description>
          <dc:description>We have also studied samples in which the central two carbon sites of the ET molecule were enriched with $\sp{13}$C (I = 1/2). Due to the pairing of the ET molecules into dimers, there is a breakdown of the molecular inversion symmetry, and we observe two $\sp{13}$C resonance lines, labeled Inner and Outer, with different Knight shifts tensors but the same chemical shift tensor.</dc:description>
          <dc:description>There are several key, transition temperatures in which the $\sp{13}$C NMR properties show abrupt changes as the sample is cooled. The first occurs at T = 150 K, where the linewidths suddenly broaden, and the relaxation rates $(\rm 1/T\sb1T, 1/T\sb2)$ increase. There is another transition at T = 50 K, evident in the relaxation rates and Knight shifts. There is another transition near T = 25K before the superconducting transition at T = 11.6K.</dc:description>
          <dc:description>In the superconducting state, there is a strong field dependence for the $\sp{13}$C 1/T$\sb1$, with the relaxation rate increasing as the field is increased (opposite to the $\sp1$H field dependence). The relaxation rate below T$\sb{\rm c}$ does not follow the BCS model; there is no increase in the relaxation rate (i.e. coherence peak) just below T$\sb{\rm c}$; nor is there an exponential T dependence at low temperature. Finally, the Knight shift below T$\sb{\rm c}$ does not follow the BCS weak coupling form, but shows an indication of strong coupling in $\kappa$-(ET)$\sb2$Cu (N(CN)$\sb2$) Br.</dc:description>
          <dc:description>Made available in DSpace on 2011-05-07T12:23:27Z (GMT). No. of bitstreams: 2
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  Previous issue date: 1995</dc:description>
          <dc:description>Item marked as restricted to the 'UIUC Users [automated]' Group (id=2) by Howard Ding (hding2@illinois.edu) on 2011-05-07T14:40:26Z
Item is restricted indefinitely.</dc:description>
          <dc:description>Restriction data tranferred 2014-07-01T11:17:18-05:00
Original Data
Group with Access UIUC Users [automated]
Release Date: none
Reason: ETDs are only available to UIUC Users without author permission</dc:description>
          <dc:description>ETDs are only available to UIUC Users without author permission</dc:description>
          <dc:description>U of I Only</dc:description>
          <dc:identifier>AAI9543567</dc:identifier>
          <dc:identifier>(UMI)AAI9543567</dc:identifier>
          <dc:identifier>http://hdl.handle.net/2142/19936</dc:identifier>
          <dc:language>eng</dc:language>
          <dc:rights>Copyright 1995 DeSoto, Stewart Martin</dc:rights>
          <dc:subject>Physics, Condensed Matter</dc:subject>
          <dc:title>Nuclear magnetic resonance studies of the organic superconductor kappa-(bisethylenedithiotetrathiafulvalene)(2) copper(nitrogen(cyanide)(2))bromine</dc:title>
          <dc:type>text</dc:type>
          <degree>
            <department>Physics, Condensed Matter</department>
            <discipline>Physics, Condensed Matter</discipline>
            <grantor>University of Illinois at Urbana-Champaign</grantor>
            <level>Dissertation</level>
            <name>Ph.D.</name>
          </degree>
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