Scattering theory of chiral Majorana fermion interferometry
Jian Li, Geneviève Fleury, Μ. Büttiker
Abstract
Open-access reader
Jian Li, Geneviève Fleury, Μ. Büttiker
Abstract
Open-access reader
Using scattering theory, we investigate interferometers composed of chiral Majorana fermion modes coupled to normal metal leads. We advance an approach in which also the basis states in the normal leads are written in terms of Majorana modes. Thus, each pair of electron-hole states is associated with a pair of Majorana modes. Only one lead Majorana mode couples to the intrinsic Majorana mode, whereas its partner is completely reflected. Similarly, the remaining Majorana modes are completely reflected, but in general mix pairwise. We demonstrate that the charge current can also be expressed in terms of interference between pairs of Majorana modes. These two basic facts permit a treatment and understanding of current and noise signatures of chiral Majorana fermion interferometry in an especially elegant way. As a particular example of applications, in Fabry-Perot--type interferometers where chiral Majorana modes form loops, resonances (antiresonances) from such loops always lead to peaked (suppressed) Andreev differential conductances, and negative (positive) cross correlations that originate purely from two-Majorana-fermion exchange. These investigations are intimately related to current and noise signatures of Majorana bound states.
OpenAlex reports 44 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Using scattering theory, we investigate interferometers composed of chiral Majorana fermion modes coupled to normal metal leads. We advance an approach in which also the basis states in the normal leads are written in terms of Majorana modes. Thus, each pair of electron-hole states is associated with a pair of Majorana modes. Only one lead Majorana mode couples to the intrinsic Majorana mode, whereas its partner is completely reflected. Similarly, the remaining Majorana modes are completely reflected, but in general mix pairwise. We demonstrate that the charge current can also be expressed in terms of interference between pairs of Majorana modes. These two basic facts permit a treatment and understanding of current and noise signatures of chiral Majorana fermion interferometry in an especially elegant way. As a particular example of applications, in Fabry-Perot--type interferometers where chiral Majorana modes form loops, resonances (antiresonances) from such loops always lead to peaked (suppressed) Andreev differential conductances, and negative (positive) cross correlations that originate purely from two-Majorana-fermion exchange. These investigations are intimately related to current and noise signatures of Majorana bound states.
Key concepts: MAJORANA, Physics, Majorana equation, Fermion, Majorana fermion, Scattering, Quantum mechanics, Theoretical physics