In this contribution we consider an advantageous building block with potential for various quantum applications: a device based on coupled spins capable of generating and sharing out an entangled pair of qubits. Our model device is a dimerised spin chain with three weakly coupled embedded sites (defects). Three different entangling protocols were proposed for this chain in [1] and [2], one producing a Cluster state and two generating a Bell state, depending on the initial state injection. Here we compare the robustness of such protocols as quantum entangling gates against different types of fabrication (static energy fluctuations) and operation (timing injection delays) errors
Developments in quantum information science rely critically on entanglement, as its distribution bet...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
In this thesis, we discuss the natural dynamics of spin chains with regards to their potential role ...
Reliable quantum communication and/or processing links between modules are a necessary building bloc...
Entanglement is a crucial resource for quantum information processing, and so protocols to generate ...
We propose protocols for the creation of useful entangled states in a system of spins collectively c...
This work was supported by the National Research Foundation, the Ministry of Education, Singapore. B...
This thesis aims to investigate the entanglement properties of the one-dimensional Heisenberg spin ...
Spin chains can be used to describe a wide range of platforms for quantum computation and quantum in...
One of the most essential processes in classical computation is that related to the information mani...
We investigate different geometries of spin-1/2 nitrogen impurity channels for distributing entangle...
This article explores the concurrence, including entanglement, in a two-qubit Heisenberg XXX chain w...
Two different models are presented that allow for efficiently performing routing of a quantum state....
Adiabatic methods are potentially important for quantum information protocols because of their robus...
We study the dynamics of entanglement in the XY spin chain subject to a staggered magnetic field and...
Developments in quantum information science rely critically on entanglement, as its distribution bet...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
In this thesis, we discuss the natural dynamics of spin chains with regards to their potential role ...
Reliable quantum communication and/or processing links between modules are a necessary building bloc...
Entanglement is a crucial resource for quantum information processing, and so protocols to generate ...
We propose protocols for the creation of useful entangled states in a system of spins collectively c...
This work was supported by the National Research Foundation, the Ministry of Education, Singapore. B...
This thesis aims to investigate the entanglement properties of the one-dimensional Heisenberg spin ...
Spin chains can be used to describe a wide range of platforms for quantum computation and quantum in...
One of the most essential processes in classical computation is that related to the information mani...
We investigate different geometries of spin-1/2 nitrogen impurity channels for distributing entangle...
This article explores the concurrence, including entanglement, in a two-qubit Heisenberg XXX chain w...
Two different models are presented that allow for efficiently performing routing of a quantum state....
Adiabatic methods are potentially important for quantum information protocols because of their robus...
We study the dynamics of entanglement in the XY spin chain subject to a staggered magnetic field and...
Developments in quantum information science rely critically on entanglement, as its distribution bet...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
In this thesis, we discuss the natural dynamics of spin chains with regards to their potential role ...