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Cites per document Year Value Cites / Doc. (4 years) 2011 0.000 Cites / Doc. (4 years) 2012 1.504 Cites / Doc. (4 years) 2013 1.707 Cites / Doc. (4 years) 2014 1.820 Cites / Doc. (4 years) 2015 1.649 Cites / Doc. (4 years) 2016 1.703 Cites / Doc. (4 years) 2017 1.766 Cites / Doc. (4 years) 2018 1.774 Cites / Doc. (3 years) 2011 0.000 Cites / Doc. (3 years) 2012 1.504 Total Cites Self-Cites
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2011 2012 2013 2014 2015 2016 2017 2018 0
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2011 2012 2013 2014 2015 2016 2017 2018 0
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Deputy Editors:
Javier E. Garay
University of California San Diego, San Diego, CA, USA
Javier E. Garay is a professor in the department of Mechanical and Aerospace Engineering and the Materials Science and Engineering Program at the Jacobs School of Engineering at University of California, San Diego (UCSD). He received his B.S. in Mechanical Engineering, his M.S. and Ph.D in Materials Science and
Engineering all from the University of California, Davis. During his PhD studies, he also worked at the Lawrence Livermore National Laboratory where he studied
4/20/2020 AIP Advances
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material defects using positron annihilation spectroscopy. Prior to his position at UCSD, he was a professor at UC Riverside where he also served as Chair of the Materials Science & Engineering Program.
As the director of the Advanced Material Processing and Synthesis (AMPS) Lab at UCSD, Professor Garay focuses his research on materials property measurements, the integration of materials in devices with application in optical devices, magnetic devices, thermal energy storage/ management, and materials synthesis and
processing with an emphasis on designing the micro/nanostructure of bulk
materials/thin films for property optimization. He is also particularly interested in understanding the role of the length scale of nano-/ micro-structural features on light, heat and magnetism.
A. T. Charlie Johnson Jr.
University of Pennsylvania, Philadelphia, PA, USA
A.T. Charlie Johnson is a professor of physics in the Department of Physics and Astronomy at the University of Pennsylvania. He received his B.S. in physics from Stanford University and his Ph.D. in physics from Harvard University. He did
postdoctoral fellowships at the Delft University of Technology (Applied Physics) and NIST (Cryoelectronic Metrology). His honors include the Christian R. and Mary F.
Lindback Foundation Award for distinguished teaching at Penn, the Jack Raper Outstanding Technology Directions Paper Award of the International Solid State Circuit Conference, an Alfred P. Sloan Research Fellowship, and a Packard Fellowship for Science and Engineering.
Dr. Johnson’s research is focused on the nano-scale transport properties (charge, energy, spin, etc.) of nanostructures and single molecules, including carbon nanotubes, graphene, DNA, synthetic proteins, and other biomolecules. He is particularly interested in the physical properties of hybrid nanostructures and their use in molecular sensing. Other research interests include the development of scanning probe techniques for electronic property measurement of nanomaterials and nanodevices, molecular electronics and nanogaps, local probes of nanoscale systems, and nanotube and nanowire electronics.
Ben Slater
University College London (UCL), London, United Kingdom
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Ben Slater is a reader at UCL Chemistry. He received his BSc in chemistry from the University of Nottingham and was awarded his PhD at the University of Reading. He did postdoctoral work at the Royal Institution of Great Britain (Ri) and became an assistant director of the Davy Faraday Research Laboratory at the Ri in 1999. He joined UCL Chemistry in 2007 and was awarded the Royal Society of Chemistry Barrer prize in 2008.
Dr. Slater’s research is focused on using atomistic computer simulation to
understand and predict the structure and properties of materials. He has published extensively in the area of porous materials (including zeolites and metal-organic frameworks) and water ices. He has a particular interest in defects in materials and surface mediated processes, such as crystal growth.
Masaaki Tanaka
The University of Tokyo, Tokyo, Japan
Masaaki Tanaka is a professor at the Department of Electrical Engineering &
Information Systems Graduate School of Engineering, University of Tokyo. He received his Ph.D. in electronic engineering from the University of Tokyo in 1989. In 1992, he joined Bell Communications Research (Bellcore) at Red Bank, New Jersey, as a visiting research scientist. Since 1994, he has been at the University of Tokyo as an associate professor and professor.
Dr. Tanaka's main research field is spin electronics (“spintronics"), in which the spin degrees of freedom are used in artificially synthesized materials. Among the areas of his specific research are epitaxial growth, structural characterizations,
electronic/optical/magnetic/spin-related properties (in particular, spin-dependent transport and mageto-optical properties), and device applications of various new structures. His research on structures and devices includes ferromagnetic metal / semiconductor hybrid structures, III-V-based magnetic semiconductors and their heterostructures, group-IV-based magnetic semiconductors, ferromagnetic
nanoparticles and semiconductor hybrid heterostructures, delta doping of magnetic impurities in semiconductor heterostructures, and new spin transistors (e.g., spin- MOSFET) and reconfigurable logic devices.
Enge G. Wang Peking University, Beijing, P. R. China
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Professor Enge G. Wang is a professor of physics at Peking University and an academician at the Chinese Academy of Sciences.
Dr. Wang’s research focuses on surface physics; the approach is a combination of atomistic simulation of nonequilibrium growth, chemical vapor deposition of light- element nanomaterials, and water behaviors in confinement system. He and his coworkers also predicted a three-dimensional Ehrlich-Schwoebel barrier, which attracted News and Views in Nature (June 2002). Another contribution is the model proposal and experimental validation of a true upward atomic diffusion. This was reported in Physics News Update in June 2003 and News and Views in Nature as well as Science Week in June 2004.
His work on water-surface coupling and the strength of hydrogen bonds at the interfaces provides a fundamental understanding of water on surface at the molecular level.
Associate Editors:
Saman Alavi
University of Ottawa, Ottawa, Ontario, Canada Dario Arena
University of South Florida, Tampa, FL, USA Renkun Chen
University of California San Diego, San Diego, CA, USA Christophe Detavernier
Universiteit Gent, Gent, Belgium Mingdong Dong
Aarhus University, Aarhus, Denmark Shridhar R. Gadre
Indian Institute of Technology Kanpur, Kanpur, India Fei Gao
University of Michigan, Ann Arbor, MI, USA Wei-Xi Huang
Tsinghua University, Beijing, China Michael Keidar
George Washington University, Washington D. C., USA Jyotsana Lal
Argonne National Laboratory, Argonne, IL
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Dattatray Late
AUM, Centre for Nanoscience and Nanotechnology, Mumbai, India Davide Massarotti
Universita' degli studi di Napoli Federico II, Napoli, Italy Marian Paluch
University of Silesia, Katowice, Poland Ras B. Pandey
University of Southern Mississippi, Hattiesburg, MS Wilfrid Prellier
Laboratoire CRISMAT, Caen, France Alfons Schulte
University of Central Florida, Orlando, FL Takasumi Tanabe
Keio University, Yokohama, Japan
Editors of Applied Physics Letters, Journal of Applied Physics, The Journal of Chemical Physics, APL Bioengineering, APL Materials, APL Photonics,
Biomicrofluidics, Chaos, Journal of Mathematical Physics, Journal of Renewable and Sustainable Energy, Physics of Fluids, Physics of Plasmas, and Review of Scientific Instruments may act as Guest Editors for manuscripts transferred to AIP Advances.
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