Starten Sie Ihre Suche...


Durch die Nutzung unserer Webseite erklären Sie sich damit einverstanden, dass wir Cookies verwenden. Weitere Informationen

Direct observation of Drude behavior in the heavy-fermion UPd2Al3 by broadband microwave spectroscopy

Physica B. Bd. 359/361. 2005 S. 1150 - 1152

Erscheinungsjahr: 2005

ISBN/ISSN: 0921-4526

Publikationstyp: Zeitschriftenaufsatz

Sprache: Englisch

Doi/URN: 10.1016/j.physb.2005.01.308

Volltext über DOI/URN

GeprüftBibliothek

Inhaltszusammenfassung


Previous optical studies on the heavy-fermion system UPd2Al3 down to frequencies of about revealed a well-pronounced pseudogap at low frequencies (below ) that was attributed to magnetic correlations. Thus, the optical conductivity at even lower frequencies is of notable interest because the Drude roll-off (the high-frequency characteristic of a metal which will give information on the quasiparticle dynamics) remained hidden at extremely low frequencies. Using a novel cryogenic broadband ...Previous optical studies on the heavy-fermion system UPd2Al3 down to frequencies of about revealed a well-pronounced pseudogap at low frequencies (below ) that was attributed to magnetic correlations. Thus, the optical conductivity at even lower frequencies is of notable interest because the Drude roll-off (the high-frequency characteristic of a metal which will give information on the quasiparticle dynamics) remained hidden at extremely low frequencies. Using a novel cryogenic broadband microwave spectrometer employing the Corbino geometry we have studied the complex optical conductivity of UPd2Al3 thin films in the frequency range from to at temperatures from 1.65 to . Our spectra reveal the emergence of a strong Drude-like conductivity roll-off at frequencies of only a few GHz as the temperature is decreased (in agreement with the increase of the DC conductivity). » weiterlesen» einklappen

Autoren


Scheffler, Marc (Autor)
Dressel, Martin (Autor)
Jourdan, Martin (Autor)

Klassifikation


DFG Fachgebiet:
Physik der kondensierten Materie

DDC Sachgruppe:
Physik

Verknüpfte Personen