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Charge density waves in nanocrystalline thin films of blue bronze K0.3MoO3 (CROSBI ID 179494)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Starešinić, Damir ; Dominko, Damir ; Salamon, Krešimir ; Biljaković, Katica ; Tomeljak, Andrej ; Schäfer, Hanjo ; Huber, Thomas ; Demsar, Jure ; Socol, Gabriel ; Ristoscu, Carmen et al. Charge density waves in nanocrystalline thin films of blue bronze K0.3MoO3 // Physica. B, Condensed matter, 407 (2012), 11; 1889-1893. doi: 10.1016/j.physb.2012.01.056

Podaci o odgovornosti

Starešinić, Damir ; Dominko, Damir ; Salamon, Krešimir ; Biljaković, Katica ; Tomeljak, Andrej ; Schäfer, Hanjo ; Huber, Thomas ; Demsar, Jure ; Socol, Gabriel ; Ristoscu, Carmen ; Mihailescu, Ion ; Siketić, Zdravko ; Bogdanović- Radović, Ivančica ; Pletikapić, Galja ; Svetličić, Vesna ; Đekić, Maja ; Šamić, Hasnija ; Marcus, Jacques

engleski

Charge density waves in nanocrystalline thin films of blue bronze K0.3MoO3

Thin granular films of charge density wave (CDW) system K0.3MoO3 were prepared by pulsed laser deposition and investigated by various standard characterization methods such as GI-XRD, electric transport, TOF-ERDA, AFM and UV-vis spectroscopy. While all these methods indicate that the thin films consist of nanometer grains of K0.3MoO3, it is only the non-destructive femtosecond time-resolved spectroscopy (fsTRS) that demonstrates the charge density wave nature of the ground state and therefore proves directly the presence of K0.3MoO3. Furthermore, the comparison of the fsTRS data obtained in thin films and in single crystals shows the reduction of the charge density wave transition temperature and of the photoinduced signal strength in granular thin films with respect to single crystals, which is attributed to the granularity and crystal growth morphology. Our results establish fsTRS technique as the indispensible tool for the detection and characterization of complex ground states in nano-sized systems.

thin films ; charge density waves ; blue bronze

Rad je prezentiran na skupu International Workshop on Electronic Crystals (ECRYS-2011), održanom od 15.–27.08.2011., Cargèse, Francuska ; Serguei Brazovskii, Natasha Kirova i Pierre Monceau (ur.).

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Podaci o izdanju

407 (11)

2012.

1889-1893

objavljeno

0921-4526

1873-2135

10.1016/j.physb.2012.01.056

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Fizika

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