activity
20032008
most citedQuantum computing with trapped ions

1.2k citations · 2.3k across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph20081.2k cited

Quantum computing with trapped ions

H. Haeffner, C. F. Roos, R. Blatt

Quantum computers hold the promise to solve certain computational task much more efficiently than classical computers. We review the recent experimental advancements towards a quan…

physics.atom-ph200858 cited

Precision measurement of the branching fractions of the 4P3/2 decay of Ca II

R. Gerritsma, G. Kirchmair, F. Zaehringer +3

We perform precision measurements of the branching ratios of the 4P3/2 level decay of a single 40Ca+ ion suspended in a linear Paul trap. High precision is achieved by a novel tech…

quant-ph200890 cited

Experimental quantum information processing with 43Ca+ ions

J. Benhelm, G. Kirchmair, C. F. Roos +1

For quantum information processing (QIP) with trapped ions, the isotope 43Ca+ offers the combined advantages of a quantum memory with long coherence time, a high fidelity read out…

quant-ph2008533 cited

Towards fault-tolerant quantum computing with trapped ions

J. Benhelm, G. Kirchmair, C. F. Roos +1

Today ion traps are among the most promising physical systems for constructing a quantum device harnessing the computing power inherent in the laws of quantum physics. The standard…

quant-ph2007342 cited

'Designer atoms' for quantum metrology

C. F. Roos, M. Chwalla, K. Kim +2

Entanglement is recognized as a key resource for quantum computation and quantum cryptography. For quantum metrology, the use of entangled states has been discussed and demonstrate…

quant-ph200367 cited

Forces between a single atom and its distant mirror image

Pavel Bushev, Alex Wilson, Juergen Eschner +4

An excited-state atom whose emitted light is back-reflected by a distant mirror can experience trapping forces, because the presence of the mirror modifies both the electromagnetic…