Abstract Graphene nanoribbons (GNRs) are narrow strips of graphene with widths ranging from a few nanometers to a few tens of nanometers. GNRs possess most of the excellent properties of graphene, while also exhibiting unique physical characteristics not found in graphene, such as an adjustable band gap and spin-polarized edge states. These properties make GNRs…
Quantum Frontiers Template
Write in a clean editor, then format for Quantum Frontiers in one click — DocuGuru applies the official Springer Nature template with superscript references and exports a submission-ready PDF plus the editable LaTeX source. Free to start.
About the Quantum Frontiers format
Quantum Frontiers is a peer-reviewed journal published by Springer Nature, covering Topological Materials and Phenomena, Advanced Condensed Matter Physics, Graphene research and applications.
| Publisher | Springer Nature |
|---|---|
| Reference style | Superscript numbered (Nature) Superscript — small raised numerals in the text 1. Smith, A., Jones, B. & Lee, C. A representative article title. Quantum Frontiers 12, 45–58 (2023).
Formats any DOI in Quantum Frontiers style. No sign-up. |
| Publishes research in | Topological Materials and Phenomena Advanced Condensed Matter Physics Graphene research and applications 2D Materials and Applications Quantum Information and Cryptography |
| ISSN | 2731-6106 |
| Citation impact (2-yr) | 4.9 |
| h-index | 14 |
| i10-index | 22 |
| Total citations | 722 |
| Open access | Yes |
| Top institutions publishing here | Shanghai Jiao Tong University |
| You get | A submission-ready PDF and the editable LaTeX source — ready to submit. |
Papers published in Quantum Frontiers per year
Citation impact of Quantum Frontiers by publication year
Citations each year’s papers have accumulated so far — the most recent years are still building up.
Most-cited papers in Quantum Frontiers
Abstract Quantum key distribution (QKD) holds the potential to establish secure keys over long distances. The distance of point-to-point QKD secure key distribution is primarily impeded by the transmission loss inherent to the channel. In the quest to realize a large-scale quantum network, increasing the QKD distance under current technology is of great research interest.…
Abstract With significant advances in classifying and cataloguing topological matter, the focus of topological physics has shifted towards quantum control, particularly the creation and manipulation of topological phases of matter. Floquet engineering, the concept of tailoring a system by periodic fields, offers a powerful tool to manipulate electronic properties of condensed systems, and even to…
Abstract The band structure in a kagome lattice can naturally exhibit flat band, Dirac cones, and van Hove singularity, enabling rich interplays between correlation and topology. However, the flat band is rarely detected just at the Fermi level in kagome materials, which would be crucial to realize emergent flat band physics. Here, combining angle-resolved photoemission…
Abstract Spin-orbit coupling is an important ingredient to regulate the many-body physics, especially for many spin liquid candidate materials such as rare-earth magnets and Kitaev materials. The rare-earth chalcogenides "Equation missing" (Ch = O, S, Se) is a congenital frustrating system to exhibit the intrinsic landmark of spin liquid by eliminating both the site disorders…