Weak localization was observed in a black phosphorus field-effect transistor 65 nm thick. The weak localization behavior was found to be in excellent agreement with the Hikami-Larkin-Nagaoka model for fields up to 1 T, from which characteristic scattering lengths could be inferred. The temperature dependence of the phase coherence length Lφ was investigated, and above 1 K, it was found to decrease weaker than the LφT-1/2 dependence characteristic of electron-electron scattering in the presence of elastic scattering in two dimensions. Rather, the observed power law was found to be close to that observed previously in quasi-one-dimensional systems such as metallic nanowires and carbon nanotubes.

Dephasing in strongly anisotropic black phosphorus

RODDARO, STEFANO;
2016-01-01

Abstract

Weak localization was observed in a black phosphorus field-effect transistor 65 nm thick. The weak localization behavior was found to be in excellent agreement with the Hikami-Larkin-Nagaoka model for fields up to 1 T, from which characteristic scattering lengths could be inferred. The temperature dependence of the phase coherence length Lφ was investigated, and above 1 K, it was found to decrease weaker than the LφT-1/2 dependence characteristic of electron-electron scattering in the presence of elastic scattering in two dimensions. Rather, the observed power law was found to be close to that observed previously in quasi-one-dimensional systems such as metallic nanowires and carbon nanotubes.
2016
Hemsworth, N.; Tayari, V.; Telesio, F.; Xiang, S.; Roddaro, Stefano; Caporali, M.; Ienco, A.; Serrano Ruiz, M.; Peruzzini, M.; Gervais, G.; Szkopek, T.; Heun, S.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/836937
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