Author | Mikelsons, Gatis | dc.contributor.author |
Author | Cohen, Itsik | dc.contributor.author |
Author | Retzker, Alex | dc.contributor.author |
Author | Plenio, Martin B. | dc.contributor.author |
Date of accession | 2022-12-06T09:58:50Z | dc.date.accessioned |
Available in OPARU since | 2022-12-06T09:58:50Z | dc.date.available |
Date of first publication | 2015-05-22 | dc.date.issued |
Abstract | Abstract
We propose a set of techniques that enable universal quantum computing to be carried out using dressed states. This applies in particular to the effort of realizing quantum computation in trapped ions using long-wavelength radiation, where coupling enhancement is achieved by means of static magnetic-field gradient. We show how the presence of dressing fields enables the construction of robust single and multi-qubit gates despite the unavoidable presence of magnetic noise, an approach that can be generalized to provide shielding in any analogous quantum system that relies on the coupling of electronic degrees of freedom via bosonic modes. | dc.description.abstract |
Language | en | dc.language.iso |
Publisher | Universität Ulm | dc.publisher |
License | CC BY 3.0 | dc.rights |
Link to license text | https://creativecommons.org/licenses/by/3.0/ | dc.rights.uri |
Keyword | quantum gates | dc.subject |
Keyword | microwave QIP | dc.subject |
Keyword | dressed states | dc.subject |
Dewey Decimal Group | DDC 530 / Physics | dc.subject.ddc |
LCSH | Quality Industrial Product (Firm) | dc.subject.lcsh |
Title | Universal set of gates for microwave dressed-state quantum computing | dc.title |
Resource type | Wissenschaftlicher Artikel | dc.type |
SWORD Date | 2022-02-10T21:06:43Z | dc.date.updated |
Version | publishedVersion | dc.description.version |
DOI | http://dx.doi.org/10.18725/OPARU-46259 | dc.identifier.doi |
URN | http://nbn-resolving.de/urn:nbn:de:bsz:289-oparu-46335-6 | dc.identifier.urn |
GND | Mikrowellenherd | dc.subject.gnd |
Faculty | Fakultät für Naturwissenschaften | uulm.affiliationGeneral |
Institution | Institut für Theoretische Physik | uulm.affiliationSpecific |
Peer review | ja | uulm.peerReview |
DCMI Type | Text | uulm.typeDCMI |
Category | Publikationen | uulm.category |
DOI of original publication | 10.1088/1367-2630/17/5/053032 | dc.relation1.doi |
Source - Title of source | New Journal of Physics | source.title |
Source - Place of publication | IOP Publishing | source.publisher |
Source - Volume | 17 | source.volume |
Source - Issue | 5 | source.issue |
Source - Year | 2015 | source.year |
Source - Article number | 053032 | source.articleNumber |
Source - eISSN | 1367-2630 | source.identifier.eissn |
EU project uulm | EQUAM / Emulators of Quantum Frustrated Magnetism / EC / FP7 / 323714 | uulm.projectEU |
EU project uulm | SIQS / Simulators and Interfaces with Quantum Systems / EC / FP7 / 600645 | uulm.projectEU |
WoS | 000355281400001 | uulm.identifier.wos |
Bibliography | uulm | uulm.bibliographie |