基本信息
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Career Trajectory
Bio
His work on microwave dielectric materials has resulted in the development of ultra low loss alumina resonators and an understanding of the defect chemistry of TiO2 which has allowed the production of very high Q and high dielectric constant materials. This technology has been patented and transferred to industry.
Technology transfer is a key focus and Neil’s discoveries have been applied widely in industry, including cellular communications. His research on low loss microwave dielectrics and functional materials led to the development of the first room temperature, earth’s field MASER (a Microwave laser).
Technology transfer is a key focus and Neil’s discoveries have been applied widely in industry, including cellular communications. His research on low loss microwave dielectrics and functional materials led to the development of the first room temperature, earth’s field MASER (a Microwave laser).
Research Interests
Papers共 428 篇Author StatisticsCo-AuthorSimilar Experts
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arxiv(2024)
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Applied physics lettersno. 4 (2024)
ACS applied nano materialsno. 13 (2023): 11115-11123
Tianyi Yin,Sami Ramadan, Xipeng Xu, Zhiping Huang,Bruno Gil Rosa,David Gaboriau,Nabeel Merali,Meysam Keshavarz,Ahmad Nizamuddin Muhammad Mustafa, Junfeng Song,Sarah Alodan,Michael Chen, Matthew A. Hammer,Peter K. Petrov,Adam E. Frampton, Stephen J. Skinner,Neil McN. Alford, N. Klein
Research Square (Research Square) (2023)
CRYSTALSno. 6 (2023)
JOURNAL OF APPLIED PHYSICSno. 19 (2023)
ACS applied electronic materialsno. 6 (2023): 3261-3267
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Author Statistics
#Papers: 426
#Citation: 14326
H-Index: 57
G-Index: 103
Sociability: 7
Diversity: 1
Activity: 0
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