---
title: "Ultrathin kagome metal hosts robust 3D flat electronic band state"
url: https://daily.dev/posts/ultrathin-kagome-metal-hosts-robust-3d-flat-electronic-band-state-1hd1fs1w8
source_url: https://phys.org/news/2026-01-ultrathin-kagome-metal-hosts-robust.html
type: article
source: "Phys.org"
published: 2026-01-28T15:13:56.238Z
updated: 2026-03-15T05:17:27.393Z
tags: ["nanotechnology", "quantum-computing", "science"]
reading_time: 3
upvotes: 0
comments: 0
language: en
---

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# Ultrathin kagome metal hosts robust 3D flat electronic band state

**[Phys.org](https://daily.dev/sources/phys)** · 3 min read · 0 upvotes · 0 comments

## Summary

Researchers at Monash University discovered a robust 3D flat electronic band in ultrathin kagome metal films (Mn₃Sn) just three nanometers thick. This achievement, previously thought nearly impossible, combines precision thin-film growth with quantum confinement effects to lock electrons in place across all three dimensions. The breakthrough offers a scalable pathway for engineering exotic quantum states without complex artificial structures, potentially enabling future low-energy electronic technologies and unconventional superconductivity applications.

## Full article

daily.dev links to this article rather than hosting it. Read it at the original source: <https://phys.org/news/2026-01-ultrathin-kagome-metal-hosts-robust.html>

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---

Tags: [#nanotechnology](https://daily.dev/tags/nanotechnology), [#quantum-computing](https://daily.dev/tags/quantum-computing), [#science](https://daily.dev/tags/science)

[View this post on daily.dev](https://daily.dev/posts/ultrathin-kagome-metal-hosts-robust-3d-flat-electronic-band-state-1hd1fs1w8)
