From Fabry-P\'erot interference to Coulomb blockade at fixed hole number
2020
We present a complex set of transport spectroscopy data on a clean single-wall carbon nanotube device in high magnetic fields. At zero axial field, the device displays in hole conduction a fast transition to Fabry-P\'erot interference of conductance at high contact transparency. When increasing the axial field component up to B=17T, the contact transparency and the overall conductance are reduced all the way to Coulomb blockade. The continuous transition between the two transport regimes is dominated by a rich spectrum of Kondo-like resonances, with distinct features in the stability diagrams.
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