Entanglement is a crucial resource for quantum information processing, and so protocols to generate high-fidelity entangled states on various hardware platforms are in demand. While spin chains have been extensively studied to generate entanglement, graph structures also have such potential; however, only a few classes of graphs have been explored for this specific task. In this paper, we apply a particular coupling scheme involving two different coupling strengths to a graph of two interconnected 3 × 3 square graphs such that it effectively contains three defects. We show how this structure allows generation of a Bell state whose fidelity depends on the chosen coupling ratio. We apply partitioned graph theory in order to reduce the dimensi...
We investigate different geometries of spin-1/2 nitrogen impurity channels for distributing entangle...
Graph states are versatile resources for quantum computation and quantum-enhanced measurement. Their...
Spin chains can be used to describe a wide range of platforms for quantum computation and quantum in...
Reliable quantum communication and/or processing links between modules are a necessary building bloc...
In this contribution we consider an advantageous building block with potential for various quantum a...
We investigate the influence of noise on a graph state generation scheme which exploits a mirror inv...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
Spin network (SN) systems can be used to achieve quantum state transfer with high fidelity and to ge...
Given a suitably large and well connected (complex) graph state, any quantum algorithm can be implem...
Quantum entanglement plays an important role in quantum information processes, such as quantum compu...
We propose a protocol that allows both the creation and distribution of entanglement, resulting in t...
We develop a protocol for entanglement generation in the quantum internet that allows a repeater nod...
Entanglement is at the heart of quantum information science in the fundamental and practical aspects...
We develop a protocol for entanglement generation in the quantum internet that allows a repeater nod...
We investigate different geometries of spin-1/2 nitrogen impurity channels for distributing entangle...
Graph states are versatile resources for quantum computation and quantum-enhanced measurement. Their...
Spin chains can be used to describe a wide range of platforms for quantum computation and quantum in...
Reliable quantum communication and/or processing links between modules are a necessary building bloc...
In this contribution we consider an advantageous building block with potential for various quantum a...
We investigate the influence of noise on a graph state generation scheme which exploits a mirror inv...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
Spin network (SN) systems can be used to achieve quantum state transfer with high fidelity and to ge...
Given a suitably large and well connected (complex) graph state, any quantum algorithm can be implem...
Quantum entanglement plays an important role in quantum information processes, such as quantum compu...
We propose a protocol that allows both the creation and distribution of entanglement, resulting in t...
We develop a protocol for entanglement generation in the quantum internet that allows a repeater nod...
Entanglement is at the heart of quantum information science in the fundamental and practical aspects...
We develop a protocol for entanglement generation in the quantum internet that allows a repeater nod...
We investigate different geometries of spin-1/2 nitrogen impurity channels for distributing entangle...
Graph states are versatile resources for quantum computation and quantum-enhanced measurement. Their...
Spin chains can be used to describe a wide range of platforms for quantum computation and quantum in...