We report the first study on the thermal behavior of the stiffness of individual carbon nanotubes, which is achieved by measuring the resonance frequency of their fundamental mechanical bending modes. We observe a reduction of the Young's modulus over a large temperature range with a slope -(173±65) ppm/K in its relative shift. These findings are reproduced by two different theoretical models based on the thermal dynamics of the lattice. These results reveal how the measured fundamental bending modes depend on the phonons in the nanotube via the Young's modulus. An alternative description based on the coupling between the measured mechanical modes and the phonon thermal bath in the Akhiezer limit is discussed. © 2021 American Physical Society. uk.
Interrelation of Elasticity and Thermal Bath in Nanotube Cantilevers / Tepsic, S.; Gruber, G.; Møller, C. B.; Magén, C.; Belardinelli, P.; Hernández, E. R.; Alijani, F; Verlot, P; Bachtold, A. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - ELETTRONICO. - 126:17(2021). [10.1103/PhysRevLett.126.175502]
Interrelation of Elasticity and Thermal Bath in Nanotube Cantilevers
Belardinelli P.;
2021-01-01
Abstract
We report the first study on the thermal behavior of the stiffness of individual carbon nanotubes, which is achieved by measuring the resonance frequency of their fundamental mechanical bending modes. We observe a reduction of the Young's modulus over a large temperature range with a slope -(173±65) ppm/K in its relative shift. These findings are reproduced by two different theoretical models based on the thermal dynamics of the lattice. These results reveal how the measured fundamental bending modes depend on the phonons in the nanotube via the Young's modulus. An alternative description based on the coupling between the measured mechanical modes and the phonon thermal bath in the Akhiezer limit is discussed. © 2021 American Physical Society. uk.File | Dimensione | Formato | |
---|---|---|---|
20 Interrelation of Elasticity and Thermal Bath in Nanotube Cantilevers - Arxiv.pdf
accesso aperto
Tipologia:
Documento in pre-print (manoscritto inviato all’editore precedente alla peer review)
Licenza d'uso:
Creative commons
Dimensione
8.38 MB
Formato
Adobe PDF
|
8.38 MB | Adobe PDF | Visualizza/Apri |
20 1620202125PhysRevLett.pdf
Solo gestori archivio
Tipologia:
Versione editoriale (versione pubblicata con il layout dell'editore)
Licenza d'uso:
Tutti i diritti riservati
Dimensione
617.38 kB
Formato
Adobe PDF
|
617.38 kB | Adobe PDF | Visualizza/Apri Richiedi una copia |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.