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PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES


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*Average Peer Review
About 1.3 month(s)
*Competitiveness
66%
CiteScore
7.3

CiteScore Rank
Subject Area Rank Percentile
Category: Physics and Astronomy
Subcategory: Condensed Matter Physics
71 / 434
Category: Physics and Astronomy
Subcategory: Electronic, Optical and Magnetic Materials
57 / 284
Category: Physics and Astronomy
Subcategory: Atomic and Molecular Physics, and Optics
47 / 224



Country/Area of Publication
NETHERLANDS
Publication Frequency
Monthly
Publisher
Elsevier

ISSN
1386-9477
E-ISSN
Year Publication Started
1997

Self-citation (2023-2024)
3.40%
Annual Article Volume
168
Gold OA Percentage
1.85%


Open Access Info
APC APC Waiver Other Charges
N/A N/A N/A

Journal Aim & Scope
Physica E: Low-dimensional systems and nanostructures contains papers and invited review articles on the fundamental and applied aspects of physics in low-dimensional electron systems, in semiconductor heterostructures, oxide interfaces, quantum wells and superlattices, quantum wires and dots, novel quantum states of matter such as topological insulators, and Weyl semimetals.

Both theoretical and experimental contributions are invited. Topics suitable for publication in this journal include spin related phenomena, optical and transport properties, many-body effects, integer and fractional quantum Hall effects, quantum spin Hall effect, single electron effects and devices, Majorana fermions, and other novel phenomena.

Keywords:
• topological insulators/superconductors, majorana fermions, Wyel semimetals;
• quantum and neuromorphic computing/quantum information physics and devices based on low dimensional systems;
• layered superconductivity, low dimensional systems with superconducting proximity effect;
• 2D materials such as transition metal dichalcogenides;
• oxide heterostructures including ZnO, SrTiO3 etc;
• carbon nanostructures (graphene, carbon nanotubes, diamond NV center, etc.)
• quantum wells and superlattices;
• quantum Hall effect, quantum spin Hall effect, quantum anomalous Hall effect;
• optical- and phonons-related phenomena;
• magnetic-semiconductor structures;
• charge/spin-, magnon-, skyrmion-, Cooper pair- and majorana fermion- transport and tunneling;
• ultra-fast nonlinear optical phenomena;
• novel devices and applications (such as high performance sensor, solar cell, etc);
• novel growth and fabrication techniques for nanostructures


Web of Science Quartiles
WOS Quartile: Q2

Quartiles By JIFCollectionQuartileRankPercentage
Category: NANOSCIENCE & NANOTECHNOLOGYSCIEQ387/141
Category: PHYSICS, CONDENSED MATTERSCIEQ234/79
Quartiles By JCICollectionQuartileRankPercentage
Category: NANOSCIENCE & NANOTECHNOLOGYSCIEQ379/141
Category: PHYSICS, CONDENSED MATTERSCIEQ235/79
*Crowdsourced data
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  • PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES
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