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Pregled bibliografske jedinice broj: 210614

Collective Electronic States of the New Quasi-One-Dimensional Materials


Vuletić, Tomislav
Collective Electronic States of the New Quasi-One-Dimensional Materials, 2004., doktorska disertacija, Prirodoslovno-matematički fakultet, Zagreb


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Naslov
Collective Electronic States of the New Quasi-One-Dimensional Materials

Autori
Vuletić, Tomislav

Vrsta, podvrsta i kategorija rada
Ocjenski radovi, doktorska disertacija

Fakultet
Prirodoslovno-matematički fakultet

Mjesto
Zagreb

Datum
15.10

Godina
2004

Stranica
202

Mentor
Tomić, Silvia

Ključne riječi
spin-density wave; charge-density wave; superconductivity; organic superconductors; quasi-one-dimensional cuprates

Sažetak
The spin/charge density-wave (SDW/CDW) phases in relation with super- conductivity (SC) were studied by linear and non-linear dc resistivity and low-frequency dielectric spectroscopy. Quasi-one-dimensional (q1D) mate- rials from two di&reg ; ; ; erent families were studied: single chain (TMTSF)2PF6, an organic Bechgaard-Fabre charge-transfer salt and (La, Sr, Ca)14Cu24O41, composite chain/ladder cuprates. Using an improved control of the applied pressure, in the phase diagram of (TMTSF)2PF6 a 0.8 kbar wide pressure range, featuring an SDW/SC coexistence, was found. The inhomogeneous character is supported by the analysis of the resistivity between TSDW and TSC and the superconducting critical current. TSC = 1:2K is practically con- stant here and only the SC domain proportion is increasing under pressure. Experimental results are correlated with a model comparing the free energy of a SDW/SC segregated phase and of homogeneous phases. Nonisovalently substituted q1D cuprates LaySr14&iexcl ; ; ; y&iexcl ; ; ; xCaxCu24O41 are insulators with hop- ping transport along the chains, a 1D disordered system. Disorder is due to random structural distortions of chains induced by irregular coordination of the La/Sr/Ca ions. The transport switches from the chains to ladders in iso- valently substituted Sr14&iexcl ; ; ; xCaxCu24O41, due to mobile holes transferred into the ladders. A phase transition is identi&macr ; ; ; ed below which a 2D long-range CDW order develops in the ladders. That is, in addition to the mode along the ladders, the collective CDW screened mode is observed in the direction of the ladder rungs. The transport perpendicular to the ladder planes is dominated by hopping. Ca-substitution suppresses CDW phase with TCDW decreasing from 210 K (x=0) to 7 K (x=9), and the CDW gap from 1300 K to 30 K, respectively. The suppression is due to the changes in coupling parameters in this strongly coupled system, as well as to disorder introduced at the Sr sites. This ground state falls between the CDW order of itinerant charges and the charge order of localized charges. Its non-standard nature might also be characterized by non-s-wave like pairing. SC is reported to be established in x > 10 when CDW is completely removed under pressure. CDW properties speak in favor of also non-s-wave 2D nature of SC.

Izvorni jezik
Engleski

Znanstvena područja
Fizika



POVEZANOST RADA


Projekti:
0035015

Ustanove:
Institut za fiziku, Zagreb

Profili:

Avatar Url Tomislav Vuletić (autor)

Avatar Url Silvia Tomić (mentor)

Poveznice na cjeloviti tekst rada:

Pristup cjelovitom tekstu rada

Citiraj ovu publikaciju:

Vuletić, Tomislav
Collective Electronic States of the New Quasi-One-Dimensional Materials, 2004., doktorska disertacija, Prirodoslovno-matematički fakultet, Zagreb
Vuletić, T. (2004) 'Collective Electronic States of the New Quasi-One-Dimensional Materials', doktorska disertacija, Prirodoslovno-matematički fakultet, Zagreb.
@phdthesis{phdthesis, author = {Vuleti\'{c}, Tomislav}, year = {2004}, pages = {202}, keywords = {spin-density wave, charge-density wave, superconductivity, organic superconductors, quasi-one-dimensional cuprates}, title = {Collective Electronic States of the New Quasi-One-Dimensional Materials}, keyword = {spin-density wave, charge-density wave, superconductivity, organic superconductors, quasi-one-dimensional cuprates}, publisherplace = {Zagreb} }
@phdthesis{phdthesis, author = {Vuleti\'{c}, Tomislav}, year = {2004}, pages = {202}, keywords = {spin-density wave, charge-density wave, superconductivity, organic superconductors, quasi-one-dimensional cuprates}, title = {Collective Electronic States of the New Quasi-One-Dimensional Materials}, keyword = {spin-density wave, charge-density wave, superconductivity, organic superconductors, quasi-one-dimensional cuprates}, publisherplace = {Zagreb} }




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