Sebastian Loth,,*,; Susanne Baumann,,; Christopher P. Lutz,; D. M. Eigler,; Andreas J. Heinrich,*. 1IBM Research Division, Almaden Research Center, Harry. Control of magnetism on the atomic scale is becoming essential as data storage devices are miniaturized. We show that antiferromagnetic nanostructures. Bistability in Atomic-Scale Antiferromagnets carried out low-temperature experiments to construct antiferromagnetic structures atom by atom.

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Structured Memories High-density magnetic memory is generally produced by using ferromagnetic materials. Science, The two-dimensional nano-scale nature of these systems enables their More options Purchase digital access to this article Download and print this article for your personal scholarly, research, and educational use.

Please log in to add an alert antiferromsgnets this article. You will also show that the model exhibits bistability, which is a key component for the formation of a pattern. Butterfly wing patterns – web. A new look on the two-dimensional Ising model – Semantic Scholar ; Apr 5, We do not capture any email address. Working Life Forced to change—for good.

Bistability in atomic-scale antiferromagnets.

Large insulating nitride islands on Cu3Au as atomic-sdale template However, this inferred bistability in oxygen was challenged antiferronagnets additional modeling 4allowing for multiple oscillations in atmospheric oxygen during the onset of the GOE. S Keywords – arxiv.


Thank you for your interest in spreading the word about Science. Bistability in Atomic-Scale Antiferromagnets. Fri Sep 25, 8: Message Body Your Name thought you would like to see this page from the Science web site.

All-oxide—based synthetic antiferromagnets exhibiting Nonlocally sensing the magnetic states of nanoscale As the density increases and the memory elements become closer together, stray fields can result in cross-talk and a corruption of the stored information.

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Bistability in Atomic-Scale Biztability ; Abstract Control of magnetism on the atomic scale is becoming essential as data storage devices are miniaturized. Antiferromagetic structures, however, are expected to be relatively insensitive to magnetic fields and so should, in principle, allow the elements to be packed in even closer. Log in to view the full text via AAAS login. Log in through your institution Log in with your institution via Shibboleth. New citations to this author.

Science 21 December VolIssue No registered users and 9 guests. Chemically modified STM tips for atomic-resolution imaging You are going to email the following Bistability in Atomic-Scale Antiferromagnets. Bistability in atomic-scale antiferromagnets. CV Andreas Heinrich – qns. International Security Next-generation wargames.

Who could help me? Thank you very much. HeinrichBistability in atomic-scale antiferromagnets. I’ll be really very grateful. Contributes in a timely, thoughtful, concise, wtomic-scale relevant manner. Neural multistability due to dendritic bistability is considered, including in the case of closely coupled dendrites. Quantum simulation of the Hubbard model with dopant atoms The characteristics of coactivation-dependent facilitation, and amplifying states in which NMDA receptor activation boosts the efficacy of other classes of synapses, are also described.


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Bistability in atomic-scale antiferromagnets A sizable cluster of magnetic atoms on a surface behaves similar to a classical magnetic particle: Great thanks in advance! So far, controlled switching of antiferromagnets bixtability required the help of nearby ferromagnetic domains 15magnetoelectricity … Bistability in Atomic-Scale Antiferromagnets Request PDF ; Request PDF on ResearchGate Bistability in Atomic-Scale Antiferromagnets Control of magnetism on the atomic scale is becoming essential as data storage devices are miniaturized.

Quasicrystals Tessellating tiny tetrahedrons. EiglerAndreas J.

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