2017Frontiers of PhysicsRequires access

Majorana modes in solid state systems and its dynamics

Qi Zhang, Biao Wu

Open publisher page 1 citations

Abstract

We review the properties of Majorana fermions in particle physics and point out that Majorana modes in solid state systems are significantly different. The key reason is the concept of anti-particle in solid state systems is different from its counterpart in particle physics. We define Majorana modes as the eigenstates of Majorana operators and find that they can exist both at edges and in the bulk. According to our definition, only one single Majorana mode can exist in a system no matter at edges or in the bulk. Kitaev’s spinless p -wave superconductor is used to illustrate our results and the dynamical behavior of the Majorana modes.

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What this paper is about

We review the properties of Majorana fermions in particle physics and point out that Majorana modes in solid state systems are significantly different. The key reason is the concept of anti-particle in solid state systems is different from its counterpart in particle physics. We define Majorana modes as the eigenstates of Majorana operators and find that they can exist both at edges and in the bulk. According to our definition, only one single Majorana mode can exist in a system no matter at edges or in the bulk. Kitaev’s spinless p -wave superconductor is used to illustrate our results and the dynamical behavior of the Majorana modes.

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Available abstract

We review the properties of Majorana fermions in particle physics and point out that Majorana modes in solid state systems are significantly different. The key reason is the concept of anti-particle in solid state systems is different from its counterpart in particle physics. We define Majorana modes as the eigenstates of Majorana operators and find that they can exist both at edges and in the bulk. According to our definition, only one single Majorana mode can exist in a system no matter at edges or in the bulk. Kitaev’s spinless p -wave superconductor is used to illustrate our results and the dynamical behavior of the Majorana modes.

Key concepts: MAJORANA, Majorana equation, Physics, Fermion, Superconductivity, Eigenvalues and eigenvectors, Particle physics, Theoretical physics

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