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个人简介
McCartney's research primarily involves using electron holography for the observation and measurement of electrostatic and electromagnetic fields associated with nanostructured materials. Off-axis electron holography is an electron-microscope-based interference technique that provides unique access to the phase of a scattered electron wave. The technique has been shown by McCartney and others to enable visualization and quantification of electrostatic and magnetic fields with very high spatial resolution and sensitivity, enabling unique insights into nanoscale physical phenomena to be obtained.
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论文共 301 篇作者统计合作学者相似作者
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Advait Gilankar, Ahmad Islam,Martha R McCartney, Abishek Katta, Nabasindhu Das,David J. Smith, Nidhin Kalarickal
Applied Physics Express (2024)
Carina Büchner, Niels Kubitza, Ali M Malik, John Jamboretz, Aysha A Riaz, Yujiang Zhu, Christoph Schlueter,Martha R McCartney,David J Smith,Anna Regoutz,Jochen Rohrer,Christina S Birkel
Inorganic chemistry (2024)
Microscopy and microanalysis : the official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canadano. Supplement_1 (2023): 1309-1310
Dinusha Herath Mudiyanselage, Ramandeep Mandia,Dawei Wang, Jayashree Adivarahan,Ziyi He,Kai Fu,Yuji Zhao,Martha R. McCartney,David J. Smith,Houqiang Fu
Applied Physics Expressno. 9 (2023): 094002-094002
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Dinusha Herath Mudiyanselage, Ramandeep Mandia,Dawei Wang, Jayashree Adivarahan,Ziyi He,Kai Fu,Yuji Zhao,Martha R. Mccartney,David J. Smith,Houqiang Fu
APPLIED PHYSICS EXPRESSno. 9 (2023)
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Saurabh Vishwakarma, Jesse M. Brown, Avani Patel,Martha R. McCartney,Robert J. Nemanich,David J. Smith
Microscopy and Microanalysisno. S1 (2022): 2830-2831
arxiv(2022)
Microscopy and Microanalysisno. S1 (2022): 1906-1907
Microscopy and Microanalysisno. S1 (2022): 1906-1907
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