Part of the interest in topological phases of matter stems from their potentially revolutionary technological applications. One of the most exciting possibilities would be the ability to store and manipulate quantum information in topological degrees of freedom. This information would be intrinsically protected from some local error processes and there are now significant efforts being made to harness this property in scalable quantum devices. In this context, we numerically investigate the dynamical evolution of a topological memory that consists of two p-wave superconducting wires separated by a non-topological junction. We consider a closed system and do not consider general types of errors that may arise from the interaction of ...
In this work we address the problem of realizing a reliable quantum memory based on zero-energy Majo...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...
Part of the interest in topological phases of matter stems from their potentially revolutionary tec...
Part of the interest in topological phases of matter stems from their potentially revolutionary tec...
We prove that quantum information encoded in some topological excitations, including certain Majoran...
A fully functional quantum computer as a device that is capable of enhancing certain important class...
We investigate dynamical evolution of a topological memory that consists of two p-wave superconducti...
Topological quantum computing seeks to store and manipulate information in a protected manner using ...
We study phase slips in one-dimensional topological superconducting wires. These wires have been pro...
We study phase slips in one-dimensional topological superconducting wires. These wires have been pro...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...
We investigate dynamical evolution of a topological memory that consists of two p-wave superconducti...
In this work we address the problem of realizing a reliable quantum memory based on zero-energy Majo...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...
Part of the interest in topological phases of matter stems from their potentially revolutionary tec...
Part of the interest in topological phases of matter stems from their potentially revolutionary tec...
We prove that quantum information encoded in some topological excitations, including certain Majoran...
A fully functional quantum computer as a device that is capable of enhancing certain important class...
We investigate dynamical evolution of a topological memory that consists of two p-wave superconducti...
Topological quantum computing seeks to store and manipulate information in a protected manner using ...
We study phase slips in one-dimensional topological superconducting wires. These wires have been pro...
We study phase slips in one-dimensional topological superconducting wires. These wires have been pro...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...
We investigate dynamical evolution of a topological memory that consists of two p-wave superconducti...
In this work we address the problem of realizing a reliable quantum memory based on zero-energy Majo...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...