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Anisotropic magnetic, electrical and thermal transport properties of Y-Al-Ni-Co decagonal approximant


Smontara, Ana; Smiljanić, Igor; Ivkov, Jovica; Stanić, Denis; Barišić, Osor-Slaven; Jagličić, Z.; Gille, P.; Komelj, M.; Jeglič, P.; Dolinšek, J.
Anisotropic magnetic, electrical and thermal transport properties of Y-Al-Ni-Co decagonal approximant // Physical Review B, 78 (2008), 10; 104204-1 doi:10.1103/PhysRevB.78.104204 (međunarodna recenzija, članak, znanstveni)


Naslov
Anisotropic magnetic, electrical and thermal transport properties of Y-Al-Ni-Co decagonal approximant

Autori
Smontara, Ana ; Smiljanić, Igor ; Ivkov, Jovica ; Stanić, Denis ; Barišić, Osor-Slaven ; Jagličić, Z. ; Gille, P. ; Komelj, M. ; Jeglič, P. ; Dolinšek, J.

Izvornik
Physical Review B (1098-0121) 78 (2008), 10; 104204-1

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
Quasicrystals

Sažetak
We have investigated anisotropic physical properties (magnetic susceptibility, electrical resistivity, thermoelectric power, Hall coefficient and thermal conductivity) of Y-Al-Ni-Co decagonal approximant with composition Al76Co22Ni2. The crystalline-direction-dependent measurements were performed along three orthogonal directions a*, b and c of the Y-Al-Ni-Co unit cell, where (a, c) monoclinic atomic planes are stacked along the perpendicular b direction. Anisotropic magnetic susceptibility of conduction electrons is paramagnetic for the field lying within the (a, c) atomic planes and diamagnetic for the field along the b direction. Anisotropic electrical resistivity is low in all crystalline directions, appearing in the order . Thermopower shows electron-phonon enhancement effect. Anisotropic bare thermopower (in the absence of electron-phonon interactions) was extracted, appearing in the same order as the resistivity, . Anisotropic thermal conductivity appears in the order , so that b is the most conducting direction for both electricity and heat. Hall coefficient exhibits pronounced anisotropy, where the magnetic field in a given direction yields the same irrespectively of the direction of the current in the perpendicular plane. These anisotropies are analyzed in terms of the anisotropic structure of the Y-Al-Ni-Co phase and the ab initio calculated anisotropic Fermi surface. The results are compared to the literature-reported anisotropy of the physical properties of the d-Al-Ni-Co decagonal quasicrystal.

Izvorni jezik
Engleski

Znanstvena područja
Fizika



POVEZANOST RADA


Projekt / tema
035-0000000-3187 - Kriticne pojave i sustavi izvan ravnoteze (Katarina Uzelac, )
035-0352826-2848 - Transport topline i naboja u jako frustriranim magnetima i srodnim materijalima (Ana Smontara, )
286-0000000-3212 - Radioaktivnost u okolišu, detekcija i primjena (Josip Planinić, )

Ustanove
Institut za fiziku, Zagreb

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


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