most citedPercolation, renormalization, and quantum computing with non-deterministic gates

122 citations · 253 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph20075 cited

Percolation in quantum computation and communication

K. Kieling, J. Eisert

This article is a draft of a book chapter of the book entitled "Quantum Percolation and Breakdown", to appear 2008.

quant-ph200721 cited

Cluster state preparation using gates operating at arbitrary success probabilities

K. Kieling, D. Gross, J. Eisert

Several physical architectures allow for measurement-based quantum computing using sequential preparation of cluster states by means of probabilistic quantum gates. In such an appr…

quant-ph200642 cited

General linear-optical quantum state generation scheme: Applications to maximally path-entangled states

N. M. VanMeter, P. Lougovski, D. B. Uskov +3

We introduce schemes for linear-optical quantum state generation. A quantum state generator is a device that prepares a desired quantum state using product inputs from photon sourc…

quant-ph2006122 cited

Percolation, renormalization, and quantum computing with non-deterministic gates

K. Kieling, T. Rudolph, J. Eisert

We apply a notion of static renormalization to the preparation of entangled states for quantum computing, exploiting ideas from percolation theory. Such a strategy yields a novel w…

quant-ph200663 cited

Potential and limits to cluster state quantum computing using probabilistic gates

D. Gross, K. Kieling, J. Eisert

We establish bounds to the necessary resource consumption when building up cluster states for one-way computing using probabilistic gates. Emphasis is put on state preparation with…