Entanglement distillation is an essential building block in quantum communication protocols. Here, we study the class of near-term implementable distillation protocols that use bilocal Clifford operations followed by a single round of communication. We introduce tools to enumerate and optimise over all protocols for up to n = 5 (not necessarily equal) Bell-diagonal states using a commodity desktop computer. Furthermore, by exploiting the symmetries of the input states, we find all protocols for up to n = 8 copies of a Werner state. For the latter case, we present circuits that achieve the highest fidelity with perfect operations and no decoherence. These circuits have modest depth and number of two-qubit gates. Our results are based on a co...
We study the task of entanglement distillation in the one-shot setting under different classes of qu...
We introduce a new scheme for continuous-variable entanglement distillation that requires only linea...
We propose families of protocols for magic-state distillation—important components of fault-toleranc...
Entanglement distillation is an essential building block in quantum communication protocols. Here, w...
Entanglement distillation is an essential building block in quantum communication protocols. Here, w...
This thesis deals with n-to-1 entanglement distillation protocols for bipartite quantum systems in a...
We show that the analysis of entanglement distillation protocols for qudits of arbitrary dimension $...
Quantum entanglement is a physical resource that is essential for many quantum information processin...
The goal of entanglement distillation is to turn a large number of weakly entangled states into a sm...
We construct interesting entanglement distillation protocols by interpolating between the recurrence...
The research presented in this thesis focused on the problem of entanglement distribution. Simply pu...
The distribution of high quality Greenberger-Horne-Zeilinger (GHZ) states is at the heart of many qu...
The standard approach to fault-tolerant quantum computation is to store information in a quantum err...
We show the equivalence of two approaches to the design of entanglement distillation protocols. The ...
Fourier states are multi-qubit registers that facilitate phase rotations in fault-tolerant quantum c...
We study the task of entanglement distillation in the one-shot setting under different classes of qu...
We introduce a new scheme for continuous-variable entanglement distillation that requires only linea...
We propose families of protocols for magic-state distillation—important components of fault-toleranc...
Entanglement distillation is an essential building block in quantum communication protocols. Here, w...
Entanglement distillation is an essential building block in quantum communication protocols. Here, w...
This thesis deals with n-to-1 entanglement distillation protocols for bipartite quantum systems in a...
We show that the analysis of entanglement distillation protocols for qudits of arbitrary dimension $...
Quantum entanglement is a physical resource that is essential for many quantum information processin...
The goal of entanglement distillation is to turn a large number of weakly entangled states into a sm...
We construct interesting entanglement distillation protocols by interpolating between the recurrence...
The research presented in this thesis focused on the problem of entanglement distribution. Simply pu...
The distribution of high quality Greenberger-Horne-Zeilinger (GHZ) states is at the heart of many qu...
The standard approach to fault-tolerant quantum computation is to store information in a quantum err...
We show the equivalence of two approaches to the design of entanglement distillation protocols. The ...
Fourier states are multi-qubit registers that facilitate phase rotations in fault-tolerant quantum c...
We study the task of entanglement distillation in the one-shot setting under different classes of qu...
We introduce a new scheme for continuous-variable entanglement distillation that requires only linea...
We propose families of protocols for magic-state distillation—important components of fault-toleranc...