Topological quantum computing is based on the notion of braiding non-Abelian anyons, such as Majorana zero modes (MZMs), to perform gate operations. A crucial building block of these protocols is the adiabatic shuttling of MZMs through topological superconductors. Here, we consider the "piano key" approach, where MZMs are transported using local electric gates to tune sections ("keys") of a wire between topologically trivial and non-trivial phases. We numerically simulate this transport on a single wire and calculate the diabatic error corresponding to exciting the system. We find that this error is typically reduced when transport is facilitated by using multiple keys as one may expect from modelling each piano key press as an effective La...
Majorana zero modes are emergent zero-energy quasiparticle excitations in certain superconducting s...
Originally proposed in high energy physics as particles, which are their own anti-particles, Majoran...
One-dimensional topological superconductors are known to host Majorana zero modes at domain walls t...
We study the dynamics of Majorana zero modes that are shuttled via local tuning of the electrochemic...
Majorana-based topological qubits are expected to exploit the nonabelian braiding statistics of Majo...
Braiding of Majorana zero modes provides a promising platform for quantum information processing, wh...
Majorana bound states (MBS) at the end of nanowires have been proposed as one of the most important ...
Majorana zero modes are quasiparticles that hold promise as building blocks for topological quantum ...
Qubits built out of Majorana zero modes (MZMs) constitute the primary path towards topologically pro...
We propose a transport probe scheme to detect the nonadiabatic transition caused by Majornana moving...
We study coherent electronic transport through a Coulomb blockaded superconducting Rashba wire in th...
Realizing Majorana modes in topological superconductors, i.e., the condensed-matter counterpart of M...
Majorana zero modes are a promising platform for topologically protected quantum information process...
We construct a semiclassical theory for the transport of topological junctions starting from a micro...
Majorana zero modes are non-Abelian quasiparticles that emerge on the edges of topological phases of...
Majorana zero modes are emergent zero-energy quasiparticle excitations in certain superconducting s...
Originally proposed in high energy physics as particles, which are their own anti-particles, Majoran...
One-dimensional topological superconductors are known to host Majorana zero modes at domain walls t...
We study the dynamics of Majorana zero modes that are shuttled via local tuning of the electrochemic...
Majorana-based topological qubits are expected to exploit the nonabelian braiding statistics of Majo...
Braiding of Majorana zero modes provides a promising platform for quantum information processing, wh...
Majorana bound states (MBS) at the end of nanowires have been proposed as one of the most important ...
Majorana zero modes are quasiparticles that hold promise as building blocks for topological quantum ...
Qubits built out of Majorana zero modes (MZMs) constitute the primary path towards topologically pro...
We propose a transport probe scheme to detect the nonadiabatic transition caused by Majornana moving...
We study coherent electronic transport through a Coulomb blockaded superconducting Rashba wire in th...
Realizing Majorana modes in topological superconductors, i.e., the condensed-matter counterpart of M...
Majorana zero modes are a promising platform for topologically protected quantum information process...
We construct a semiclassical theory for the transport of topological junctions starting from a micro...
Majorana zero modes are non-Abelian quasiparticles that emerge on the edges of topological phases of...
Majorana zero modes are emergent zero-energy quasiparticle excitations in certain superconducting s...
Originally proposed in high energy physics as particles, which are their own anti-particles, Majoran...
One-dimensional topological superconductors are known to host Majorana zero modes at domain walls t...