Majorana fermions are particles identical to their antiparticles proposed theoretically in 1937 by Ettore Majorana as real solutions of the Dirac equation. Alexei Kitaev suggested that Majorana particles should emerge in condensed matter systems as zero mode excitations in one-dimensional p-wave superconductors, with possible applications in quantum computation due to their non-abelian statistics. The search for Majorana zero modes in condensed matter systems led to one of the first realistic models based in a semiconductor nanowire with high spin-orbit coupling, induced superconducting s-wave pairing and Zeeman splitting. Soon, it was realized that size-quantization effects should generate subbands in these systems that could even allow th...
After a century from the quantum description of nature, the scientific community has laid the basis ...
Majorana zero modes (MZMs) are exotic excitations (in condensed matter systems) that have potential ...
Majorana zero modes are quasiparticles that hold promise as building blocks for topological quantum ...
Realizing Majorana modes in topological superconductors, i.e., the condensed-matter counterpart of M...
Majorana bound states (MBS) at the end of nanowires have been proposed as one of the most important ...
A tunneling junction between normal electrode and a topological superconducting wire, mediated by a ...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...
Data sets belong to the paper "Signatures of Majorana fermions in hybrid superconductor-semiconducto...
Starting from the Bogolubov-de Gennes theory describing the induced p-wave superconductivity in the ...
Majorana zero-energy modes (MZMs), which comprise an equal superposition of electrons and holes, are...
Majorana zero modes are emergent zero-energy quasiparticle excitations in certain superconducting s...
In condensed matter systems, zero-dimensional or one-dimensional Majorana modes can be realized resp...
We show that networks of superconducting topological nanowires can realize the physics of exactly so...
Semiconducting nanowires in proximity to superconductors are promising experimental systems for real...
Majorana fermions were first proposed in the context of high energy physics by Ettore Majorana in 193...
After a century from the quantum description of nature, the scientific community has laid the basis ...
Majorana zero modes (MZMs) are exotic excitations (in condensed matter systems) that have potential ...
Majorana zero modes are quasiparticles that hold promise as building blocks for topological quantum ...
Realizing Majorana modes in topological superconductors, i.e., the condensed-matter counterpart of M...
Majorana bound states (MBS) at the end of nanowires have been proposed as one of the most important ...
A tunneling junction between normal electrode and a topological superconducting wire, mediated by a ...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...
Data sets belong to the paper "Signatures of Majorana fermions in hybrid superconductor-semiconducto...
Starting from the Bogolubov-de Gennes theory describing the induced p-wave superconductivity in the ...
Majorana zero-energy modes (MZMs), which comprise an equal superposition of electrons and holes, are...
Majorana zero modes are emergent zero-energy quasiparticle excitations in certain superconducting s...
In condensed matter systems, zero-dimensional or one-dimensional Majorana modes can be realized resp...
We show that networks of superconducting topological nanowires can realize the physics of exactly so...
Semiconducting nanowires in proximity to superconductors are promising experimental systems for real...
Majorana fermions were first proposed in the context of high energy physics by Ettore Majorana in 193...
After a century from the quantum description of nature, the scientific community has laid the basis ...
Majorana zero modes (MZMs) are exotic excitations (in condensed matter systems) that have potential ...
Majorana zero modes are quasiparticles that hold promise as building blocks for topological quantum ...