Measuring Luttinger Liquid Correlations from Charge Fluctuations in a Nanoscale Structure
Journal article, 2003

We suggest an experiment to study Luttinger liquid behavior in a one-dimensional nanostructure, avoiding the usual complications associated with transport measurements. The proposed setup consists of a quantum box, biased by a gate voltage, and side coupled to a quantum wire by a point contact. Close to the degeneracy points of the Coulomb blockaded box, and in the presence of a magnetic field sufficiently strong to spin polarize the electrons, the setup can be described as a Luttinger liquid interacting with an effective Kondo impurity. Using exact nonperturbative techniques, we predict that the differential capacitance of the box will exhibit distinctive Luttinger liquid scaling with temperature and gate voltage.

Author

Paata Kakashvili

Chalmers, Department of Theoretical Physics and Mechanics, Solid State Theory

Henrik Johannesson

Chalmers, Department of Theoretical Physics and Mechanics, Solid State Theory

Physical Review Letters

Vol. 91 186403 -

Subject Categories

Condensed Matter Physics

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Created

10/6/2017