Accessibility Tools

2023-02-20
Research highlights

Intrinsic Magnetic (EuIn)As Nanowire Shells with a Unique Crystal Structure

Nano Letters 22, 8925 (2022)

InAs and InAs1−xSbx nanowires
InAs and InAs1−xSbx nanowires

Inducing magnetism into topological electronic matter is a long-sought goal. It bears the promise to realize novel time-reversal symmetry broken topological electronic states such as the anomalous quantum Hall insulator, axion insulator, and antiferromagnetic topological insulator, each hosting unique boundary modes. In this paper we report such attempt, i.e., the growth of (EuIn)As shells over InAs and InAs1−xSbx core nanowires. The experimental results are supported by molecular dynamics simulations performed at the Institute of Physics Polish Academy of Sciences, which predict how the coverage of nanowires with Eu and As atoms depends on their crystal structure. The shells have unique crystal structure comprised of a dense net of Eu planes situated in-between As atomic layers, like in the EuIn2As2 crystal, and causing insertion of InAs atomic layers stacking. This is imaged with atomic and elemental resolution which reveal a prismatic configuration of the Eu planes.

Bulk EuIn2As2 orders antiferromagnetically below a Néel temperature of 16 K. It is a type A antiferromagnet with As-Eu-As ferromagnetic layers that order antiferromagnetically among themselves. It was predicted to become an axion insulator within the antiferromagnetic phase. In all nanowires with (EuIn)As shells local magnetic and susceptibility mappings show magnetic response, while in a subset a DC signal points to ferromagnetic order. These provide a mechanism for enhancing Zeeman responses, operational at zero applied magnetic field. Such properties suggest that the obtained structures can serve as a preferred platform for time-reversal symmetry broken one-dimensional states including intrinsic topological superconductivity.


Publications

Hadas Shtrikman, Man Suk Song, Magdalena A. Załuska-Kotur, Ryszard Buczko, Xi Wang, Beena Kalisky, Perla Kacman, Lothar Houben, Haim Beidenkopf

Contact with IF PAN scientists



See more

Interaction of SARS-CoV-2 with host cells and antibodies: experiment and simulation

Chem. Soc. Rev. 2023, 52 (18), 6497-6553

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the primary etiological agent responsible for the catastrophic global COVID-19 pandemic, as officially declared by the World Health Organization (WHO) in March 2020. This pandemic has infected more than 700 million people and claim...

How soluble misfolded proteins bypass chaperones at the molecular level

Nat. Commun. 2023, 14 (1), 3689

Subpopulations of soluble, misfolded proteins can bypass chaperones within cells. The extent of this phenomenon and how it happens at the molecular level are unknown. Through a meta-analysis of the experimental literature we find that in all quantitative protein refolding studies there is always...

Excited-state singlet–triplet inversion in hexagonal aromatic and heteroaromatic compounds

 Phys. Chem. Chem. Phys., 2023, 25, 21875-21882

https://pubs.rsc.org/en/content/articlelanding/2023/cp/d3cp01666h

Publication selected by Editors as a 2023 HOT PCCP article.

Ab initio computations performed by physicists from IF PAS and Technical University of Munich indicate on existence of a wide class of organic molecules with inverted sequence of the lowest singlet and triplet states. This discovery may have important consequences for construction of a new genera...
Save
Cookies user preferences
We use cookies to ensure you to get the best experience on our website. If you decline the use of cookies, this website may not function as expected.
Accept all
Decline all
Read more
Essential
Essential cookies
These cookies are necessary for the correct operation of the website and therefore cannot be disabled on this level; the use of these cookies does not involve the processing of personal data. While you can disable them via your browser settings, doing so may prevent the website from working normally.
Accept
Analytical cookies
These cookies are particularly intended to enable the website administrator to monitor the website traffic statistics, as well as the sources of traffic. Such data is typically collected anonymously.
Google Analytics
Accept
Decline