Wiley

Advanced Physics Research Template

Write in a clean editor, then format for Advanced Physics Research in one click — DocuGuru applies the official Wiley template with author–year references and exports a submission-ready PDF plus the editable LaTeX source. Free to start.

About the Advanced Physics Research format

Advanced Physics Research is a peer-reviewed journal published by Wiley, covering 2D Materials and Applications, Topological Materials and Phenomena, Magnetic properties of thin films.

PublisherWiley
Reference styleAuthor–year (Chicago)
Author–year — (Smith, 2023) in the text
Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." Advanced Physics Research 12 (3): 45–58.

Formats any DOI in Advanced Physics Research style. No sign-up.

Publishes research in2D Materials and Applications Topological Materials and Phenomena Magnetic properties of thin films Quantum and electron transport phenomena Graphene research and applications
ISSN2751-1200
Citation impact (2-yr)2.86
h-index22
i10-index85
Total citations2,535
Open accessYes
Top institutions publishing hereChinese Academy of Sciences
You getA submission-ready PDF and the editable LaTeX source — ready to submit.

Papers published in Advanced Physics Research per year

27
2022
151
2023
161
2024
149
2025

Citation impact of Advanced Physics Research by publication year

233
2022
1.1K
2023
818
2024
267
2025

Citations each year’s papers have accumulated so far — the most recent years are still building up.

Most-cited papers in Advanced Physics Research

Optical Analogs of Rabi Splitting in Integrated Waveguide‐Coupled Resonators

Hamed Arianfard, Jiayang Wu, Saulius Juodkazis et al. · 24 Mar 2023

Abstract Realizing optical analogs of quantum phenomena in atomic, molecular, or condensed matter physics has underpinned a range of photonic technologies. Rabi splitting is a quantum phenomenon induced by a strong interaction between two quantum states, and its optical analogs are of fundamental importance for the manipulation of light–matter interactions with wide applications in optoelectronics…

Demonstration and STEM Analysis of Ferroelectric Switching in MOCVD‐Grown Single Crystalline Al<sub>0.85</sub>Sc<sub>0.15</sub>N

Niklas Wolff, Georg Schönweger, Isabel Streicher et al. · 2 Feb 2024

Abstract Wurtzite‐type Al 1− x Sc x N solid solutions grown by metal organic chemical vapor deposition are for the first time confirmed to be ferroelectric. The film with 230 nm thickness and x = 0.15 exhibits a coercive field of 5.5 MV cm −1 at a measurement frequency of 1.5 kHz. The single crystal…

Topological Phases in Magnonics

Fengjun Zhuo, Jian Kang, Aurélien Manchon et al. · 16 Aug 2023

Abstract Magnonics or magnon spintronics is an emerging field focusing on generating, detecting, and manipulating magnons. As charge‐neutral quasi‐particles, magnons are promising information carriers because of their low energy dissipation and long coherence length. In the past decade, topological phases in magnonics have attracted intensive attention due to their fundamental importance in condensed‐matter physics and…

Overcoming Size Effects in Ferroelectric Thin Films

Sung Hyuk Park, Jae Young Kim, Jae Yong Song et al. · 7 May 2023

Abstract Ferroelectric thin films have recently received unprecedented attention due to the need to miniaturize electronic circuit devices. Synthesis and deposition processes along with theoretical calculations are improved remarkably to realize stable ferroelectric thin films up to nanometer thickness. However, even with technological advances, it is still difficult to overcome the size effect of ferroelectrics,…

Ferroelectric [HfO<sub>2</sub>/ZrO<sub>2</sub>] Superlattices with Enhanced Polarization, Tailored Coercive Field, and Improved High Temperature Reliability

David Lehninger, Aditya Prabhu, Ayse Sünbül et al. · 20 Feb 2023

Abstract Modern microelectronic systems and applications demand an every increasing amount of non‐volatile memories that are fast, reliable, and consume little power. Memory concepts based on ferroelectric HfO 2 like the ferroelectric field effect transistor (FeFET) and the ferroelectric random access memory (FeRAM) are promising to satisfy these requirements. As a consequence, continuing high attention…

Advanced Physics Research template — frequently asked questions

How do I write a paper in the Advanced Physics Research format?
In DocuGuru you write your manuscript in a normal editor — no LaTeX setup required — and select the Advanced Physics Research template. When you export, DocuGuru compiles the paper into the official Wiley format and hands you a submission-ready PDF along with the editable LaTeX source.
What reference style does Advanced Physics Research use?
Advanced Physics Research uses Author–year (Chicago) references, shown as author–year markers such as (Smith, 2023) in the text. DocuGuru formats every in-text citation and the reference list in this exact style automatically. A reference appears like this: Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." Advanced Physics Research 12 (3): 45–58.
Do I need to know LaTeX to submit to Advanced Physics Research?
No. DocuGuru generates the USG LaTeX class and compiles the PDF for you in the background, so you get a Wiley-ready Advanced Physics Research document without writing any LaTeX. If you do want it, the LaTeX source is included in the export.
Can I import an existing draft into the Advanced Physics Research template?
Yes. Paste or upload your current manuscript — Word, LaTeX, Markdown, or plain text — and DocuGuru reflows it into the Advanced Physics Research format with correct headings, figures, tables, and author–year citations.
Who publishes Advanced Physics Research?
Advanced Physics Research is a multidisciplinary journal published by Wiley. DocuGuru's Advanced Physics Research template matches Wiley's official submission format.
Can I export a submission-ready Advanced Physics Research PDF?
Yes — DocuGuru produces a PDF built with the official Advanced Physics Research template (the USG class) that is ready to submit to Wiley, together with the matching LaTeX source files.
How much does the Advanced Physics Research template cost?
You can start writing in the Advanced Physics Research template for free. Exporting the final submission-ready Advanced Physics Research PDF and LaTeX source is part of DocuGuru's paid plans — see the app for current pricing.
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