In this work, we find that Majorana fermions induce selective equal spin Andreev reflections (SESARs), in which incoming electrons with certain spin polarization in the lead are reflected as counterpropagating holes with the same spin. The spin polarization direction of the electrons of this Andreev reflected channel is selected by the Majorana fermions. Moreover, electrons with opposite spin polarization are always reflected as electrons with unchanged spin. As a result, the charge current in the lead is spin polarized. Therefore, a topological superconductor which supports Majorana fermions can be used as a novel device to create fully spin-polarized currents in paramagnetic leads. We point out that SESARs can also be used to detect Major...
Andreev reflection spectroscopy of ferromagnet-superconductor (FS) junctions is an important probe o...
Andreev reflection spectroscopy of ferromagnet-superconductor (FS) junctions is an important probe o...
A fundamental obstacle for achieving quantum computation is local decoherence. One way to circumvent...
Topological superconductors, which support Majorana fermion excitations, have been the subject of in...
We demonstrate that the selective equal-spin Andreev reflection (SESAR) spectroscopy can be used in ...
Andreev reflection (AR) in ferromagnet/superconductor junctions is an indispensable spectroscopic to...
We describe experimental signatures of Majorana fermion edge states, which form at the interface bet...
We propose a systematic magnetic-flux-free approach to detect, manipulate, and braid Majorana fermio...
This dissertation is devoted to a study of detecting the Majorana fermion induced crossed Andreev re...
This dissertation is devoted to a study of detecting the Majorana fermion induced crossed Andreev re...
The physics and operating principles of hybrid superconductor–semiconductor devices rest ultimately ...
Andreev reflection (AR) in ferromagnet/superconductor junctions is an indispensable spectroscopic to...
Andreev reflection (AR) in ferromagnet/superconductor junctions is an indispensable spectroscopic to...
Andreev reflection (AR) in ferromagnet/superconductor junctions is an indispensable spectroscopic to...
Andreev reflection spectroscopy of ferromagnet-superconductor (FS) junctions is an important probe o...
Andreev reflection spectroscopy of ferromagnet-superconductor (FS) junctions is an important probe o...
Andreev reflection spectroscopy of ferromagnet-superconductor (FS) junctions is an important probe o...
A fundamental obstacle for achieving quantum computation is local decoherence. One way to circumvent...
Topological superconductors, which support Majorana fermion excitations, have been the subject of in...
We demonstrate that the selective equal-spin Andreev reflection (SESAR) spectroscopy can be used in ...
Andreev reflection (AR) in ferromagnet/superconductor junctions is an indispensable spectroscopic to...
We describe experimental signatures of Majorana fermion edge states, which form at the interface bet...
We propose a systematic magnetic-flux-free approach to detect, manipulate, and braid Majorana fermio...
This dissertation is devoted to a study of detecting the Majorana fermion induced crossed Andreev re...
This dissertation is devoted to a study of detecting the Majorana fermion induced crossed Andreev re...
The physics and operating principles of hybrid superconductor–semiconductor devices rest ultimately ...
Andreev reflection (AR) in ferromagnet/superconductor junctions is an indispensable spectroscopic to...
Andreev reflection (AR) in ferromagnet/superconductor junctions is an indispensable spectroscopic to...
Andreev reflection (AR) in ferromagnet/superconductor junctions is an indispensable spectroscopic to...
Andreev reflection spectroscopy of ferromagnet-superconductor (FS) junctions is an important probe o...
Andreev reflection spectroscopy of ferromagnet-superconductor (FS) junctions is an important probe o...
Andreev reflection spectroscopy of ferromagnet-superconductor (FS) junctions is an important probe o...
A fundamental obstacle for achieving quantum computation is local decoherence. One way to circumvent...