基本信息
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个人简介
The research of our group has spanned many areas of heteroepitaxy of complex oxides and nanostructure fabrication, from thin film synthesis to characterization and device application of various novel materials.Many new electronic, magnetic and optical devices require sophisticated thin film structures or multilayers, which demand that the thickness be controlled down to one unit cell; other devices may need lateral dimensions to be patterned down to nanometer sizes. Complex oxide materials possess an enormous range of electrical, optical, and magnetic properties. For instance, insulators, high quality metals, dielectrics, ferroelectrics, piezoelectrics, semiconductors, ferromagnetics, transparent conductors, colossal magnetoresistance materials, superconductors, and nonlinear optic materials have all been produced using oxide materials. Therefore, thin films and heterostructures of oxide materials have great potential for novel device applications. A major challenge is to prepare these materials with epitaxial thin film form with atomic layer control and integrate them so that these properties can be fully utilized in electronic devices.Our interest includes the synthesis and characterization of epitaxial oxide heterostructures and heterointerfaces uniquely suited for oxide nanoelectronics piezoelectric heterostructures for hyper-active MEMS/NEMS, ferroelectric and multiferroics for magnetoelectric and photovoltaic devices.Our interest also includes the epitaxial growth of ferronictide superconducting thin films and 2-dimensional electron gas at oxide hetero-interfaces.
研究兴趣
论文共 885 篇作者统计合作学者相似作者
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Xinyuan Zhang, Owen Ericksen,Sangho Lee, Marx Akl,Min-Kyu Song,Haihui Lan, Pratap Pal,Jun Min Suh, Shane Lindemann, Jung-El Ryu, Yanjie Shao, Xudong Zheng,Ne Myo Han,Bikram Bhatia, Hyunseok Kim, Hyun S Kum,Celesta S Chang,Yunfeng Shi,Chang-Beom Eom,Jeehwan Kim
Natureno. 8061 (2025): 98-105
Shashank Kumar Ojha,Pratap Pal,Sergei Prokhorenko,Sajid Husain,Maya Ramesh, Xinyan Li, Deokyoung Kang,Peter Meisenheimer,Darrell G Schlom,Paul Stevenson,Lucas Caretta,Yousra Nahas,Yimo Han,Lane W Martin,Laurent Bellaiche, Chang-Beom Eom,Ramamoorthy Ramesh
Proceedings of the National Academy of Sciences of the United States of Americano. 17 (2025): e2423298122-e2423298122
Megan Briggeman,Elliott Mansfield, Johannes Kombe,François Damanet,Hyungwoo Lee, Yuhe Tang,Muqing Yu, Sayanwita Biswas, Jianan Li, Mengchen Huang,Chang-Beom Eom,Patrick Irvin, Andrew J Daley,Jeremy Levy
Science advancesno. 24 (2025): eadx4761-eadx4761
Michael Patton, Daniel A. Pharis,Gautam Gurung,Xiaoxi Huang,Gahee Noh,Evgeny Y. Tsymbal,Si-Young Choi,Daniel C. Ralph,Mark S. Rzchowski,Chang-Beom Eom
ADVANCED MATERIALS (2025)
Min-Su Kim,Kyoungjun Lee,Ryo Ishikawa,Kyung Song, Naafis Ahnaf Shahed, Ki-Tae Eom, Mark S. Rzchowski,Evgeny Y. Tsymbal,Naoya Shibata,Teruyasu Mizoguchi,Chang-Beom Eom,Si-Young Choi
arxiv(2025)
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NATURE COMMUNICATIONSno. 1 (2024)
NATURE PHYSICS (2024)
Hom Kandel,Nathan Arndt, Zhongrui Li,Jungwoo Lee, Yuchuan Yao,Susmita Roy, Hillary Cunliffe-Owen,Dmitry Reznik,Chang-Beom Eom
JOURNAL OF APPLIED PHYSICSno. 13 (2024)
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作者统计
#Papers: 886
#Citation: 48995
H-Index: 106
G-Index: 198
Sociability: 8
Diversity: 3
Activity: 97
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